USRE34847E - Metered aerosol fragrance dispensing mechanism - Google Patents

Metered aerosol fragrance dispensing mechanism Download PDF

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Publication number
USRE34847E
USRE34847E US08/105,862 US10586293A USRE34847E US RE34847 E USRE34847 E US RE34847E US 10586293 A US10586293 A US 10586293A US RE34847 E USRE34847 E US RE34847E
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iaddend
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aerosol
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ambient light
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US08/105,862
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Kenneth J. Muderlak
Patrick D. Maloney
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Technical Concepts LLC
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Technical Concepts Inc
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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D83/00Containers or packages with special means for dispensing contents
    • B65D83/14Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant
    • B65D83/16Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant characterised by the actuating means
    • B65D83/26Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant characterised by the actuating means operating automatically, e.g. periodically
    • B65D83/262Containers or packages with special means for dispensing contents for delivery of liquid or semi-liquid contents by internal gaseous pressure, i.e. aerosol containers comprising propellant for a product delivered by a propellant characterised by the actuating means operating automatically, e.g. periodically by clockwork, motor, electric or magnetic means operating without repeated human input
    • GPHYSICS
    • G04HOROLOGY
    • G04GELECTRONIC TIME-PIECES
    • G04G15/00Time-pieces comprising means to be operated at preselected times or after preselected time intervals
    • G04G15/006Time-pieces comprising means to be operated at preselected times or after preselected time intervals for operating at a number of different times

Definitions

  • This invention relates to devices utilized in public facilities for dissipation of malodoriferous aromas due to any of several conditions.
  • various solid materials were utilized which sublimated and thereby dispersed the normally overpowering substitute odor for that found in the public place.
  • many suppliers developed and began supplying powered fan devices which assisted in the wide flow of odor covering material.
  • the chemists worked on odor suppressing materials which directly worked on the destruction of the odor causing materials dispersed in the atmosphere, particularly where pets were encountered.
  • the present invention is a unique and economically constructed apparatus for the periodic actuation of an aerosol container under a controlled environment.
  • Another object of this invention is to provide an independently contained power source in the form of batteries to power the actuation thereof and to provide means for measuring such batteries and advising when they are low or totally dissipated.
  • Still another object of the present invention is to provide a light sensing means which will control operation under varying modes of operation, including both a day and a night mode along with a continuous mode.
  • a further object is to provide means to advise when the aerosol container is nearing an empty condition, to provide means for giving an adjustable time parameter for the intervals of disbursement, as well as being able to adjust the termination point, and to provide means to reset the device when a full aerosol .Iadd.container .Iaddend.replaces a dissipated aerosol .Iadd.container.Iaddend..
  • FIG. 1 is a front elevational view of the housing containing the device contemplated by the present invention
  • FIG. 2 is a top view of the housing taken along viewing line 2--2 of FIG. 1;
  • FIG. 3 is a right side elevational view of the housing taken along viewing line 3--3 of FIG. 1;
  • FIG. 4 is a right side elevational view, similar to FIG. 3, but shown schematically in partial section, presenting the disposition of the aerosol container within the housing and showing a partial phantom side view of the lower front cover of the housing in its downward hinged position;
  • FIG. 5 is a partial side .[.elevation.]. .Iadd.elevational .Iaddend.view, presented schematically in partial section, showing the snap fastening means whereby the hinged lower front cover is retained in closed relation to the rigid portion of the housing;
  • FIG. 6 is a partial side elevational view, presented schematically in partial section, showing the disposition of the warning and sensing means within the front upper cover means of .[.said.]. .Iadd.the .Iaddend.housing;
  • FIG. 7 is a front elevational view of the upper cover means showing the disposition of the upper battery warning LED, the middle light sensing means, the lower empty can warning LED and the items normally hidden by the lower hinged cover, i.e., the interval time adjustment means, the reset switch means, and the day-on-nite switch means;
  • FIGS. 8 and 9 are the left and right elevational views, respectively, of the upper housing or cover means of the device as shown in FIG. 7;
  • FIGS. 10 and 11 are the schematic front and top views, respectively, of one embodiment of .Iadd.the .Iaddend.actuating means for operation of the .[.contemplated.]. invention
  • FIGS. 12, 13, and 14 are respectively a schematic partial front .[.elevation.]. .Iadd.elevational view .Iaddend.of the housing of this device, a schematic top plan view thereof, and a schematic right side elevational view thereof, showing the disposition of the printed circuit, the light emitting diodes (LEDs), the motor, the switches and one of the batteries used for the circuit; and
  • LEDs light emitting diodes
  • FIG. 15 is a .Iadd.schematic .Iaddend.diagram of one embodiment of a circuit that can be utilized .[.to operate.]. .Iadd.with .Iaddend.the present invention.
  • the improved fragrance dispensing mechanism 20 includes a substantially rigid body portion 22, a hinged lower front cover 24, and an upper front cover 26.
  • the rigid body portion 22 includes a bottom 30, a shelf 32 spaced from bottom 30 and forming a lower chamber 34, and an upper barrier means 36 spaced from shelf 32 forming the major central chamber 38, as well as forming the upper chamber 40 formed between the barrier means 36 and the top 42.
  • Rib means 44 and 45 along with shelf 32 serve to support and locate the pressurized aerosol can 50, containing the frangrance to be dispensed.
  • the can 50 includes the normal pressure retaining top 52 including the dispensing valve (not shown) and the axially extending spring loaded stem tube 54 communicating with the valve and having a spray forming actuating button 56 positioned on the free end of the stem tube 54.
  • Button 56 preferably includes right angularly arranged exhaust tube means 58 for directing the spray outwardly through aperture 25 in the cover 24.
  • the lower chamber 34 is arranged to accomodate a pair of D-Cells 35A and 35B.
  • the bottom 30 tapers upwardly in its rear extremity, as at 31, and terminates in a shoulder means 31a.
  • the lower front cover 24 is basically an open rectangularly shaped cover having front, side and bottom walls, with the side walls provided with complimentary means 60 for cooperation with mating means in the sidewall of body 22, not shown, to act as pivot or hinge means to permit the front lower cover 24 to assume the opened position shown in phantom in FIG. 4.
  • the lower rear edge 62 of cover 24 is adapted to engage the shoulder means 31a to form a stop and thereby restrict the further lowering of the cover 24, which lowering provides access to the central and lower chambers .[.34 and 38,.]. .Iadd.38 and 34, .Iaddend.respectively.
  • the left portion of upper chamber 40 is adapted to house the motor 64 and power transmission means 66 ending in actuating means 68, such as a segment gear or the like and appropriate cam means 70 for engaging and activating the spring loaded spray button 56.
  • the balance of the chamber is utilized in housing an LED/PC drawer.
  • This latter includes printed circuit board 80 cooperating with three receptacles 82, 84 and 86 to accomodate and mount two light emitting diodes 88 and 92 in the lower and upper positions, respectively, and a light sensor 90 intermediate the LEDs, as best seen in FIG. 6.
  • Each of these three items, the LEDs and the sensor communicate with the ambient through appropriate apertures 94, 96 and 98, respectively, in the upper body cover 26, as shown in FIGS. 6 and 7.
  • the circuitry on the printed circuit board will be discussed hereinafter.
  • the upper front cover 26 includes a depending portion 100 adapted to carry a plurality of control devices, such as a reset button 102 mounted on a set back flange 104; a time interval switch 106; and an operating mode switch 108, the latter providing three settings for continuously on, intermittently on (day) and .[.continuously.]. .Iadd.intermittently .Iaddend.off .[.(nite).].0 (.Iadd.night).Iaddend.. Suitable lead means extend outwardly from the back of each switch for appropriate engagement with one of the PC boards.
  • a reset button 102 mounted on a set back flange 104
  • a time interval switch 106 a time interval switch 106
  • an operating mode switch 108 the latter providing three settings for continuously on, intermittently on (day) and .[.continuously.]. .Iadd.intermittently .Iaddend.off .[.(nite).].0 (.Iadd.night).Iaddend.. Suitable lead means extend out
  • a master on-off switch 110 is mounted on an appropriate PC board 112 (FIGS. 12-14), and the operating button of switch 110 extends outwardly through the side wall of the body 22 so-as to be available to the outside.
  • a 9 volt battery 114 Positioned below the motor 64 and transmission means 66; and behind the aerosol can 50 is a 9 volt battery 114 for purposes best set forth hereinafter.
  • the sensor and motor control circuit 122 controls fragrance pump operation to optimize the life of both the fragrance material in the aerosol fragrance container and the batteries 35A and 35B while the pump generation counting circuit 124 provides a visual indication that the aerosol fragrance container 50 has probably been exhausted.
  • Operating circuit 122 is located above the dashed line “C" in FIG. 15, while counting circuit 124 is located below that line.
  • the circuit 122 contains timing devices which limit each actuation of the fragrance pump motor 64 to a short period (approximately 0.6 seconds), and which provide a 15-minute (.Iadd.adjustable) .Iaddend.waiting interval between each pump actuation.
  • the circuit provides a visual indication that the circuit 122 is switched "ON" and battery voltage is adequate for operation.
  • an on-off switch 110 controls power to the circuit from two 11/2 volt D-cells 35A, 35B.
  • a separate mode switch 108 selects one of three available modes of operation: “on", "night,” or “day".
  • “on” mode the fragrance pump operates for a brief period .[.on.]. .Iadd.between .Iaddend.15-minute intervals regardless of room light conditions. The fifteen (15) minute interval is adjustable within the parameters of approximately five (5) minutes to twenty-five (25) minutes. .[.In "night” mode, the fragrance pump is disabled regardless of room light conditions..].
  • cadmium-sulfide photocell 90 is used to sense room light conditions.
  • the fragrance pump When room light exceeds a predetermined threshold, the fragrance pump operates according to the above-described timing. When room light is less than the predetermined threshold, the fragrance pump is disabled. .Iadd.The “night” mode operation is the reverse of the "day” mode operation, i.e., the pump operates only when the room light is below a predetermined threshold. .Iaddend.IC 138 contains an oscillator and divider chain and it produces a 1/900 Hz signal (i.e. one cycle every 15 minutes) which is .[.).]. used to control the interval between actuations of the fragrance pump. IC 119 is a timer device which produces a 0.6 sec pulse used to control the length of each actuation of the fragrance pump.
  • Transistors 142 and 145 form a voltage sensor which determines whether the D-cells 35A, 35B have sufficient energy to power the unit.
  • IC 146 is controlled by transistor 145 and causes a visual indicator 92 to flash when switch 110 is "ON" and the D cells have sufficient energy. Conversely, the visual indicator 92 is not energized when the D cells have insufficient energy and must be replaced.
  • a separate 9 volt battery 114 supplies power for the operation of IC 138 and a fragrance container empty indicator circuit 124.
  • D-cells 35A and 35B wired in series provide one power supply for the circuit 122.
  • the cathode of D-cell 35A is connected to primary ground 160.
  • the anode of D-cell 35B is connected to a positive 3 V supply lead 162.
  • the anode of D-cell 35A is connected to the cathode of D-cell 35B.
  • Each D-cell has a nominal output voltage when "fresh" of 1.5 V, so that this series wiring provides +3.0 V to the +3 V supply conductor 162.
  • Power switch 110 is a single-pole, double-throw switch which connects or disconnects the secondary ground lead 164 to primary ground 160. In the ON position, switch 110 connects the secondary ground lead 164 directly to primary ground 160. In the OFF position switch 110 interposes capacitor 166, a 0.1 uF disc capacitor, between primary and secondary grounds 160, 164 to minimize transient pulses which may occur when power is switched off.
  • a separate 9 volt battery 114 supplies for IC 328 and the fragrance container empty indicator 88.
  • the cathode of battery 114 is connected to ground 160.
  • the anode of this battery is connected to the anode of a rectifier diode 142 (preferably type 1N4001) to prevent damage from an incorrectly inserted battery.
  • the cathode of diode 142 is connected to the +9 V supply lead 144.
  • Mode switch 108 is a double-pole, triple-throw switch used to select one of the three available operating modes: ON, DAY, or NIGHT.
  • the operating mode determines the conditions under which the fragrance pump may operate.
  • the three modes provide a continuous intermittent operation (ON), a controlled daytime operation (DAY), and a controlled night operation (NIGHT).
  • ON the continuous intermittent operation
  • DAY controlled daytime operation
  • NIGHT controlled night operation
  • the pump In the ON position, the pump operates for a 0.6 sec period every 15 minutes. As was previously mentioned above, the interval between such operating periods can be adjusted to various parameters, i.e. between approximately 5 minutes and 25 minutes, to meet the needs of the locale.
  • the DAY position room light is sensed, and if it exceeds a predetermined threshold, the pump operates according to the previously discussed timing.
  • the night position the pump .[.is disabled..]. .Iadd.operates only if room light is below the predetermined threshold. .Iaddend.
  • the circuitry associated with mode switch 108 is used to control the bias on the base of PNP transistor 168 which, in turn, is used to control a timer IC 119 that drives the fragrance pump.
  • timer IC119 When transistor 168 is on (conducting), timer IC119 is disabled, when transistor 168 is off (non-conducting), timer IC 119 is enabled. Therefore, the mode switch circuitry will be described from the perspective of its effect on this transistor 168.
  • mode switch pole 108A connects the base of transistor 168 to the +3 V supply 162 through a 2.2K resistor 171. .[.Mode.]. .Iadd.Since mode .Iaddend.switch pole 108B .[.connects.]. .Iadd.is open, .Iaddend.the base of transistor 168 .Iadd.is also connected .Iaddend.to secondary ground 164 through 100K resistor 172. Resistors 171 and 172 thus form a voltage divider between +3 V supply 162 and secondary ground 164, which establishes the bias voltage on the base of transistor 168. The emitter of transistor 168 is connected to +3 V supply 162.
  • the bias voltage is close to +3 V, and transistor 168 is biased off. As will be explained later, when transistor 168 is non-conducting, timer IC 119 is enabled, and the fragrance pump operates normally.
  • mode switch pole 108A In the DAY position, mode switch pole 108A is open. Mode switch pole 108B connects the base of transistor 168 to the +3 V supply 162 through a CdS photocell 90. The base of transistor 168 is also connected to secondary ground 164 through 100K resistor 172. Photocell 90 and 100K resistor 172 thus form a voltage divider between +3 V supply 162 and secondary ground 164, which establishes the bias voltage on the base of transistor 168. Photocell 90 responds to light. In the absence of light, its resistance is relatively high, but when exposed to light, the photocell resistance decreases substantially. The emitter of transistor 168 is connected to +3 V supply 162.
  • mode switch pole 108A connects the base of transistor 168 to +3 V supply 162 through 2.2K resistor 171.
  • Mode switch pole 108B connects the base of transistor 168 to secondary ground 164 through .[.100K resistor 172 an.].
  • the voltage applied to the base of transistor 168 is sufficiently low to bias the transistor on, thereby disabling timer IC 119 and inhibiting the fragrance pump. .Iaddend.
  • PNP transistors 168 and 169 form a pair of cascaded inverting switches which couple the previously described mode switch and light sensing circuitry to the active-low reset signal 173 for timer IC 119.
  • 10K resistor 174 connects the collector of transistor 168 to secondary ground 164 and acts as a collector load.
  • 4.7K resistor 176 couples the collector of transistor 168 to the base of transistor 169.
  • the emitter of transistor 169 is connected to +3 V supply 162.
  • 2.2K resistor 170 connects the collector of transistor 169 to secondary ground 164 and acts as a collector load.
  • the reset signal 173 for timer IC 119 is connected to the collector of transistor 169.
  • transistor 168 When transistor 168 is biased off, the base of transistor 169 is essentially coupled to ground via resistors 174 and 176 for a total resistance of 14.7K. Current flows out of the base of transistor 169 causing it to conduct. Transistor 169 collector current causes a voltage drop across resistor 170, and reset signal 173 for timer IC 119 assumes a high level, its inactive state. Thus, when transistor 168 is biased off, timer IC 119, and the fragrance pump it controls, operate normally.
  • Reset signal 173 for timer IC 119 is pulled down to secondary ground 164 by resistor 170 and is thus at a low level, its active state.
  • reset signal 173 is active, the output of timer IC 119, and the fragrance pump it controls, is inhibited.
  • Timer IC 119 is a commercially available 7555 CMOS timer IC used in its monostable or "one-shot" mode. Timer 119 is connected to +3 V supply 162 and secondary ground 164. A 10 .[.IF.]. .Iadd.uF .Iaddend.electrolytic capacitor 141 is connected between +3 V supply 162 and secondary ground 164 near IC 119 to bypass switching transients.
  • timer 119 receives a trigger pulse on its active-low trigger input 184, it produces a brief active-high output pulse on its output line 186 (provided reset signal 173 is inactive).
  • the length of the output pulse is approximately 0.6 sec. and is a function of an R C time constant determined by 680K resistor 180 and 1 uF capacitor 182. This output pulse is amplified and used to drive fragrance pump motor 64.
  • Timer IC 119 receives trigger pulses generated by oscillator-divider IC 138 on approximately 15-minute intervals
  • IC 138 is a commercially available MC 14541 CMOS oscillator-divider device.
  • IC 138 receives power from the +9 V supply lead 144.
  • a 0.1 uF disk capacitor 199 is used to bypass switching transients generated in IC 138 to ground.
  • the oscillator portion of IC 138 uses a 150K resistor 200, a 0.1 uF disk capacitor 202, a 100K variable resistor 204 and a 47K resistor 206 to determine the oscillator frequency.
  • the oscillator output is available at pin 3 of IC 138.
  • Variable resistor 204 should be adjusted to produce an oscillator frequency of 31.2 Hz, in order to produce an output frequency of 1/900 Hz (i.e. one cycle per 15-minute interval).
  • oscillator-divider IC 138 appears on pin 8 as a 1/900 Hz square-wave.
  • a characteristic of timer IC 119 is that once triggered, the trigger input must be negated before the output will be negated. Used directly, the output of oscillator-divider IC 138 would provide a 450 sec trigger pulse, which would interfere with the proper operation of timer IC 119.
  • a 0.1 uF disk capacitor 210 couples the output of IC 138 to the trigger input 184 of timer IC 119, to narrow the trigger pulse to a period much shorter than IC 119's time constant of 0.6 sec. 22K resistor 222 is used as a pull-up resistor between trigger input 184 and +3 V supply 162.
  • timer IC 119 receives a trigger pulse from IC 138 once every 15 minutes, and when not disabled by the mode switch and light sensing circuitry, it produces in response to 0.6 sec. output pulse used to drive fragrance pump motor 64.
  • This output pulse is available on pin 3 of IC 119 (lead 186).
  • NPN transistor 230 type 2N3904
  • PNP transistor 232 type 2N4403
  • a 200 Ohm resistor 234 couples timer IC 138 output 186 to the base of transistor 230.
  • a 10K resistor 236 couples the collector of transistor 230 to +3 V supply 162 and serves as a load resistor.
  • a 100 ohm resistor 238 couples the collector of transistor 230 to the base of transistor 232.
  • Fragrance pump motor 64 is connected as a load between the collector of transistor 232 and secondary ground 164.
  • LED driver IC 146 operates an LED indicator 92 to show that power switch 110 is ON and D-cells 35A, 35B are sufficiently fresh to operate the fragrance pump motor 64 and associated circuitry 122.
  • IC 146 is a commercially available type LM3909 flasher-driver circuit which alternately supplies power to and removes power from LED 92, causing it to flash.
  • Capacitor 240 47 uF, electrolytic determines the rate at which LED 92 flashes, Flasher IC 146 obtains its positive power supply from the +3 V supply 162.
  • Flasher 146 obtains its negative power supply from secondary .[.round.]. .Iadd.ground .Iaddend.164 through transistor 145. This permits transistors 142 and 145, arranged to sense the voltage on the +3 V supply 162, to enable flasher 146 only when this voltage exceeds a predetermined threshold.
  • a 39K resistor 242, a 1K resistor 244, and a 1K variable resistor 246 form a voltage divider that sets the bias on the base of NPN transistor 142 to determine the switching threshold.
  • the charge-voltage relationships of commercial D-cells vary according to the chemical system and construction used. Variable resistor 246 permits adjustment of the threshold according to the type of D-cell in use.
  • a 1K resistor 248 couples the emitter of transistor 142 to secondary ground 164.
  • a 100K resistor 250 couples the collector of transistor 142 to the +3 V supply 162. The collector of transistor 142 directly drives the base of transistor .[.144.]. .Iadd.145.Iaddend..
  • the Pump Operation Counting Circuit 124 provides a visual indication that the fragrance container probably has been exhausted. This circuit counts operations of the fragrance pump, and operates a visual indicator 88 after 3072 such operations.
  • IC 322 is a multi-stage binary counter which counts each fragrance pump operation pulse from timer IC 119 and supplies a binary value representing the number of received pulses on its output terminals.
  • Devices 324 and 326 are D-type flip-flops which recognize when counter 324 has received 3072 pulses. If the mode switch 108 is set for continuous operation, assuming an interval of 15 minutes per pulse, 3072 pulses represent a period of 32 days. When this event occurs, flip-flop 326 turns on flasher IC 328.
  • IC 328 is a commercially available circuit which alternately supplies power to and removes power from the light emitting diode (LED) indicator 88, causing it to flash.
  • LED light emitting diode
  • counter IC 322 receives output pulses from timer IC 119 through NPN transistor 330.
  • Timer IC 119 operates from the +3 V supply 162 .[.(a 0.1 ⁇ F disk capacitor 323 eliminates switching transients).]., but counter IC 322 operates from the +9 supply 144 (.Iadd.a 0.1 ⁇ F disk capacitor 323 eliminates switching transients).Iaddend..
  • Transistor 330 shifts output pulses from IC 119 to a level compatible with the clock input of IC 322.
  • a 2.2K resistor 312 and a 22K resistor 332 form a voltage divider to couple the output signal 186 from IC 119 to the base of transistor 330.
  • a 100K resistor 336 couples the collector of transistor 330 to the +9 V supply and serves as a load. The collector of transistor 330 is connected to the clock input of counter IC 322.
  • IC 322 is a commercially available type MC14040 .Iadd.12-.Iaddend.stage binary counter circuit.
  • Counter 322 presents a binary value equal to the number of pulses received from timer 119 on its output terminals. In this circuit, only output bits 11 (signal 340) and 12 (signal 342) are needed; the other available outputs are unused.
  • Devices 324 and 326 are each half of a commercially available type MC14013 dual D-type flip-flop IC, used to recognize that counter 322 has reached 3072 counts.
  • Switch 102 a momentary contact switch, is actuated by the user to reset the 3072-count interval. When actuated, this switch asserts signal 346, resetting counter 322 and flip-flops 324 and 326. Diodes 350 and 352 provide isolated reset signal 347 to counter 322 to prevent damage to output transistors in counter 322 when switch .[.324.]. .Iadd.102 .Iaddend.is actuated. Resistors 349 and 348 are pull-down resistors which negate signals 346 and 347 respectively when the switch .[.324.]. .Iadd.102 .Iaddend.is not actuated. Starting from its initialized state, counter 322 counts pulses from timer 119.
  • counter 322 When counter 322 has received 2048 pulses, it asserts output bit 12 (signal 342), causing flip-flop 324 to propagate data from its wired-high D input to the output. This asserts signal 354, the D input of flip-flop 326.
  • counter 322 When counter 322 has received .[.3072.]. .Iadd.1024 more .Iaddend.pulses, it asserts output bit 11 (signal 340), causing flip-flop 326 to clock the "high” on its D input to the output, asserting signal 356 .Iadd.after a total of 3072 pulses.Iaddend..
  • IC 328 a commercially available type LM3909 flasher circuit, obtains its negative power supply from secondary ground 164 through transistor 360.
  • Asserted signal 356 from flip-flop 326 provides drive current through resistor 362 to the base of transistor 360, causing it to conduct and enabling flasher 328.
  • Flasher circuit 328 alternately supplies power to and removes power from LED 88, causing it to flash.
  • Capacitor 364 determines the rate at which LED 88 flashes. Flasher 328 obtains its positive power supply from the +3 V supply 162.

Abstract

An apparatus and controlling circuitry for periodically operating an aerosol container in discrete dispensing intervals to disperse a discrete quantity of the contents thereof. The apparatus includes a powered mechanism for actuating the aerosol, with the circuitry controlling the powered mechanism for a predetermined number of actuations. An energizing means activates a warning mechanism when the actuation count reaches the predetermined number to thereby indicate the probable total evacuation of the aerosol container and the necessity for termination of the operation. The apparatus also includes means for setting the circuitry into a plurality of different operating modes, including a continuous intermittent operation, a controlled daytime operation, and a controlled night operation. The apparatus may be battery operated, and it then includes a second warning mechanism for indicating whether the battery power is sufficient to operate the powered mechanism.

Description

BACKGROUND OF INVENTION
This invention relates to devices utilized in public facilities for dissipation of malodoriferous aromas due to any of several conditions. In the past, various solid materials were utilized which sublimated and thereby dispersed the normally overpowering substitute odor for that found in the public place. In order to enhance the dispersion of such sublimating materials, many suppliers developed and began supplying powered fan devices which assisted in the wide flow of odor covering material. Similarly, the chemists worked on odor suppressing materials which directly worked on the destruction of the odor causing materials dispersed in the atmosphere, particularly where pets were encountered.
Such devices can be found readily in the prior art. For example, the common assignee of the present invention has a pending patent application, Ser. No. 07/162,021, Filed Feb. 19, 1988, .Iadd.now U.S. Pat. No. 4,830,791, .Iaddend.entitled "IMPROVED ODOR CONTROL DEVICE". Other such solid dispersing devices are found in the patents to: Corris U.S. Pat. No. 3,990,848; Sullivan et al U.S. Pat. No. 4,271,092; Tringali U.S. Pat. No. 4,035,451; and Sullivan et al U.S. Pat. No. 4,276,236.
In the field of odor control devices where a pressurized aerosol container is utilized, the patents include Corris U.S. Pat. No. 4,006,844; Rogerson U.S. Pat. No. 3,739,944; Meetze U.S. Pat. No. 4,063,664; Cairelli U.S. Pat. No. 3,139,218; Wiley U.S. Pat. No. 3,165,238; Cielaszyk U.S. Pat. No. 3,318,159; Montgomery U.S. Pat. No. .[.3,01,056.]. .Iadd.3,018,056.Iaddend.; Bell U.S. Pat. No. 3,587,332; Phillips U.S. Pat. No. 3,952,916 and Guitierrez U.S. Pat. No. 4,483,466.
SUMMARY OF THE INVENTION
The present invention is a unique and economically constructed apparatus for the periodic actuation of an aerosol container under a controlled environment.
It is an object of the present invention to provide an apparatus and circuitry that will accurately count the number of times that a spray is actuated and .[.to.]. initiate a signal when a predetermined number is reached to indicate that the spray is nearing the end of its useful life.
Another object of this invention is to provide an independently contained power source in the form of batteries to power the actuation thereof and to provide means for measuring such batteries and advising when they are low or totally dissipated.
Still another object of the present invention is to provide a light sensing means which will control operation under varying modes of operation, including both a day and a night mode along with a continuous mode.
A further object is to provide means to advise when the aerosol container is nearing an empty condition, to provide means for giving an adjustable time parameter for the intervals of disbursement, as well as being able to adjust the termination point, and to provide means to reset the device when a full aerosol .Iadd.container .Iaddend.replaces a dissipated aerosol .Iadd.container.Iaddend..
Other objects will become apparent when the specification is read in the light of the attached drawings where an illustrative example is disclosed.
BRIEF DESCRIPTION OF THE DRAWINGS
FIG. 1 is a front elevational view of the housing containing the device contemplated by the present invention;
FIG. 2 is a top view of the housing taken along viewing line 2--2 of FIG. 1;
FIG. 3 is a right side elevational view of the housing taken along viewing line 3--3 of FIG. 1;
FIG. 4 is a right side elevational view, similar to FIG. 3, but shown schematically in partial section, presenting the disposition of the aerosol container within the housing and showing a partial phantom side view of the lower front cover of the housing in its downward hinged position;
FIG. 5 is a partial side .[.elevation.]. .Iadd.elevational .Iaddend.view, presented schematically in partial section, showing the snap fastening means whereby the hinged lower front cover is retained in closed relation to the rigid portion of the housing;
FIG. 6 is a partial side elevational view, presented schematically in partial section, showing the disposition of the warning and sensing means within the front upper cover means of .[.said.]. .Iadd.the .Iaddend.housing;
FIG. 7 is a front elevational view of the upper cover means showing the disposition of the upper battery warning LED, the middle light sensing means, the lower empty can warning LED and the items normally hidden by the lower hinged cover, i.e., the interval time adjustment means, the reset switch means, and the day-on-nite switch means;
FIGS. 8 and 9 are the left and right elevational views, respectively, of the upper housing or cover means of the device as shown in FIG. 7;
FIGS. 10 and 11 are the schematic front and top views, respectively, of one embodiment of .Iadd.the .Iaddend.actuating means for operation of the .[.contemplated.]. invention;
FIGS. 12, 13, and 14 are respectively a schematic partial front .[.elevation.]. .Iadd.elevational view .Iaddend.of the housing of this device, a schematic top plan view thereof, and a schematic right side elevational view thereof, showing the disposition of the printed circuit, the light emitting diodes (LEDs), the motor, the switches and one of the batteries used for the circuit; and
FIG. 15 is a .Iadd.schematic .Iaddend.diagram of one embodiment of a circuit that can be utilized .[.to operate.]. .Iadd.with .Iaddend.the present invention.
DETAILED DESCRIPTION OF THE INVENTION
Referring now to the drawings, and particularly to FIGS. .[.1-4,.]. .Iadd.1-5, .Iaddend.wherein similar parts are designated by similar numerals, the improved fragrance dispensing mechanism 20 includes a substantially rigid body portion 22, a hinged lower front cover 24, and an upper front cover 26. The rigid body portion 22 includes a bottom 30, a shelf 32 spaced from bottom 30 and forming a lower chamber 34, and an upper barrier means 36 spaced from shelf 32 forming the major central chamber 38, as well as forming the upper chamber 40 formed between the barrier means 36 and the top 42. Rib means 44 and 45 along with shelf 32 serve to support and locate the pressurized aerosol can 50, containing the frangrance to be dispensed. The can 50 includes the normal pressure retaining top 52 including the dispensing valve (not shown) and the axially extending spring loaded stem tube 54 communicating with the valve and having a spray forming actuating button 56 positioned on the free end of the stem tube 54. Button 56 preferably includes right angularly arranged exhaust tube means 58 for directing the spray outwardly through aperture 25 in the cover 24.
The lower chamber 34 is arranged to accomodate a pair of D- Cells 35A and 35B. The bottom 30 tapers upwardly in its rear extremity, as at 31, and terminates in a shoulder means 31a. The lower front cover 24 is basically an open rectangularly shaped cover having front, side and bottom walls, with the side walls provided with complimentary means 60 for cooperation with mating means in the sidewall of body 22, not shown, to act as pivot or hinge means to permit the front lower cover 24 to assume the opened position shown in phantom in FIG. 4. The lower rear edge 62 of cover 24 is adapted to engage the shoulder means 31a to form a stop and thereby restrict the further lowering of the cover 24, which lowering provides access to the central and lower chambers .[.34 and 38,.]. .Iadd.38 and 34, .Iaddend.respectively.
The left portion of upper chamber 40, as viewed in FIGS. 10 and 11, is adapted to house the motor 64 and power transmission means 66 ending in actuating means 68, such as a segment gear or the like and appropriate cam means 70 for engaging and activating the spring loaded spray button 56. The balance of the chamber is utilized in housing an LED/PC drawer. This latter includes printed circuit board 80 cooperating with three receptacles 82, 84 and 86 to accomodate and mount two light emitting diodes 88 and 92 in the lower and upper positions, respectively, and a light sensor 90 intermediate the LEDs, as best seen in FIG. 6. Each of these three items, the LEDs and the sensor, communicate with the ambient through appropriate apertures 94, 96 and 98, respectively, in the upper body cover 26, as shown in FIGS. 6 and 7. The circuitry on the printed circuit board will be discussed hereinafter.
Referring now to FIGS. 6-9, the upper front cover 26 includes a depending portion 100 adapted to carry a plurality of control devices, such as a reset button 102 mounted on a set back flange 104; a time interval switch 106; and an operating mode switch 108, the latter providing three settings for continuously on, intermittently on (day) and .[.continuously.]. .Iadd.intermittently .Iaddend.off .[.(nite).].0 (.Iadd.night).Iaddend.. Suitable lead means extend outwardly from the back of each switch for appropriate engagement with one of the PC boards.
A master on-off switch 110 is mounted on an appropriate PC board 112 (FIGS. 12-14), and the operating button of switch 110 extends outwardly through the side wall of the body 22 so-as to be available to the outside. Positioned below the motor 64 and transmission means 66; and behind the aerosol can 50 is a 9 volt battery 114 for purposes best set forth hereinafter.
Referring now to FIG. 15, the sensor and motor control circuit 122 controls fragrance pump operation to optimize the life of both the fragrance material in the aerosol fragrance container and the batteries 35A and 35B while the pump generation counting circuit 124 provides a visual indication that the aerosol fragrance container 50 has probably been exhausted. Operating circuit 122 is located above the dashed line "C" in FIG. 15, while counting circuit 124 is located below that line. The circuit 122 contains timing devices which limit each actuation of the fragrance pump motor 64 to a short period (approximately 0.6 seconds), and which provide a 15-minute (.Iadd.adjustable) .Iaddend.waiting interval between each pump actuation. In addition, the circuit provides a visual indication that the circuit 122 is switched "ON" and battery voltage is adequate for operation.
In brief, an on-off switch 110 controls power to the circuit from two 11/2 volt D- cells 35A, 35B. A separate mode switch 108 selects one of three available modes of operation: "on", "night," or "day". In "on" mode, the fragrance pump operates for a brief period .[.on.]. .Iadd.between .Iaddend.15-minute intervals regardless of room light conditions. The fifteen (15) minute interval is adjustable within the parameters of approximately five (5) minutes to twenty-five (25) minutes. .[.In "night" mode, the fragrance pump is disabled regardless of room light conditions..]. In "day" mode, cadmium-sulfide photocell 90 is used to sense room light conditions. When room light exceeds a predetermined threshold, the fragrance pump operates according to the above-described timing. When room light is less than the predetermined threshold, the fragrance pump is disabled. .Iadd.The "night" mode operation is the reverse of the "day" mode operation, i.e., the pump operates only when the room light is below a predetermined threshold. .Iaddend.IC 138 contains an oscillator and divider chain and it produces a 1/900 Hz signal (i.e. one cycle every 15 minutes) which is .[.).]. used to control the interval between actuations of the fragrance pump. IC 119 is a timer device which produces a 0.6 sec pulse used to control the length of each actuation of the fragrance pump. Transistors 142 and 145 form a voltage sensor which determines whether the D- cells 35A, 35B have sufficient energy to power the unit. IC 146 is controlled by transistor 145 and causes a visual indicator 92 to flash when switch 110 is "ON" and the D cells have sufficient energy. Conversely, the visual indicator 92 is not energized when the D cells have insufficient energy and must be replaced. A separate 9 volt battery 114 supplies power for the operation of IC 138 and a fragrance container empty indicator circuit 124.
In greater detail, two D- cells 35A and 35B wired in series provide one power supply for the circuit 122. The cathode of D-cell 35A is connected to primary ground 160. The anode of D-cell 35B is connected to a positive 3 V supply lead 162. The anode of D-cell 35A is connected to the cathode of D-cell 35B. Each D-cell has a nominal output voltage when "fresh" of 1.5 V, so that this series wiring provides +3.0 V to the +3 V supply conductor 162.
All circuit devices which use the +3 V supply lead 162 also use a secondary ground lead 164 as a return path. Power switch 110 is a single-pole, double-throw switch which connects or disconnects the secondary ground lead 164 to primary ground 160. In the ON position, switch 110 connects the secondary ground lead 164 directly to primary ground 160. In the OFF position switch 110 interposes capacitor 166, a 0.1 uF disc capacitor, between primary and secondary grounds 160, 164 to minimize transient pulses which may occur when power is switched off.
A separate 9 volt battery 114 supplies for IC 328 and the fragrance container empty indicator 88. The cathode of battery 114 is connected to ground 160. The anode of this battery is connected to the anode of a rectifier diode 142 (preferably type 1N4001) to prevent damage from an incorrectly inserted battery. The cathode of diode 142 is connected to the +9 V supply lead 144.
Mode switch 108 is a double-pole, triple-throw switch used to select one of the three available operating modes: ON, DAY, or NIGHT. The operating mode determines the conditions under which the fragrance pump may operate. The three modes provide a continuous intermittent operation (ON), a controlled daytime operation (DAY), and a controlled night operation (NIGHT). In the ON position, the pump operates for a 0.6 sec period every 15 minutes. As was previously mentioned above, the interval between such operating periods can be adjusted to various parameters, i.e. between approximately 5 minutes and 25 minutes, to meet the needs of the locale. In the DAY position, room light is sensed, and if it exceeds a predetermined threshold, the pump operates according to the previously discussed timing. In the night position, the pump .[.is disabled..]. .Iadd.operates only if room light is below the predetermined threshold. .Iaddend.
The circuitry associated with mode switch 108 is used to control the bias on the base of PNP transistor 168 which, in turn, is used to control a timer IC 119 that drives the fragrance pump. When transistor 168 is on (conducting), timer IC119 is disabled, when transistor 168 is off (non-conducting), timer IC 119 is enabled. Therefore, the mode switch circuitry will be described from the perspective of its effect on this transistor 168.
In the ON position, mode switch pole 108A connects the base of transistor 168 to the +3 V supply 162 through a 2.2K resistor 171. .[.Mode.]. .Iadd.Since mode .Iaddend.switch pole 108B .[.connects.]. .Iadd.is open, .Iaddend.the base of transistor 168 .Iadd.is also connected .Iaddend.to secondary ground 164 through 100K resistor 172. Resistors 171 and 172 thus form a voltage divider between +3 V supply 162 and secondary ground 164, which establishes the bias voltage on the base of transistor 168. The emitter of transistor 168 is connected to +3 V supply 162. Because the resistance of 2.2K resistor 171 is much less than 100K resistor 172, the bias voltage is close to +3 V, and transistor 168 is biased off. As will be explained later, when transistor 168 is non-conducting, timer IC 119 is enabled, and the fragrance pump operates normally.
In the DAY position, mode switch pole 108A is open. Mode switch pole 108B connects the base of transistor 168 to the +3 V supply 162 through a CdS photocell 90. The base of transistor 168 is also connected to secondary ground 164 through 100K resistor 172. Photocell 90 and 100K resistor 172 thus form a voltage divider between +3 V supply 162 and secondary ground 164, which establishes the bias voltage on the base of transistor 168. Photocell 90 responds to light. In the absence of light, its resistance is relatively high, but when exposed to light, the photocell resistance decreases substantially. The emitter of transistor 168 is connected to +3 V supply 162.
When the photocell 90 is deprived of light, as in a dark room, its resistance is high. The voltage applied to the base of transistor 168 is sufficiently lower than the +3 V supply 162 to which the emitter of that transistor is connected, so the transistor is biased on. When transistor 168 is conducting, timer IC 119 is disabled, and the fragrance pump is inhibited. When the photocell 90 is exposed to light, as in a lighted room, its resistance is low. The voltage applied to the base of transistor 168 is then sufficiently close to +3 V so that the transistor is biased off. When transistor 168 is non-conducting, timer IC 119 is enabled, and the fragrance pump operates normally.
In the NIGHT position, mode switch pole 108A connects the base of transistor 168 to +3 V supply 162 through 2.2K resistor 171. Mode switch pole 108B connects the base of transistor 168 to secondary ground 164 through .[.100K resistor 172 an.]. cadmium sulfide (CdS) photocell 90 .[.in parallel..]. .Iadd.which is then in parallel with 100K resistor 172. In a lighted room, the voltage applied to the base of transistor 168 is sufficiently low to bias the transistor on, thereby disabling timer IC 119 and inhibiting the fragrance pump. .Iaddend.
PNP transistors 168 and 169 form a pair of cascaded inverting switches which couple the previously described mode switch and light sensing circuitry to the active-low reset signal 173 for timer IC 119. (When reset signal 173 is active, the output of timer IC 119 is inhibited, and the fragrance pump cannot operate.) 10K resistor 174 connects the collector of transistor 168 to secondary ground 164 and acts as a collector load. 4.7K resistor 176 couples the collector of transistor 168 to the base of transistor 169. The emitter of transistor 169 is connected to +3 V supply 162. 2.2K resistor 170 connects the collector of transistor 169 to secondary ground 164 and acts as a collector load. The reset signal 173 for timer IC 119 is connected to the collector of transistor 169.
When transistor 168 is biased off, the base of transistor 169 is essentially coupled to ground via resistors 174 and 176 for a total resistance of 14.7K. Current flows out of the base of transistor 169 causing it to conduct. Transistor 169 collector current causes a voltage drop across resistor 170, and reset signal 173 for timer IC 119 assumes a high level, its inactive state. Thus, when transistor 168 is biased off, timer IC 119, and the fragrance pump it controls, operate normally.
When transistor 168 is biased on, the base of transistor 169 is essentially coupled to the +3 V supply 162, causing it to switch off. Reset signal 173 for timer IC 119 is pulled down to secondary ground 164 by resistor 170 and is thus at a low level, its active state. When reset signal 173 is active, the output of timer IC 119, and the fragrance pump it controls, is inhibited.
Timer IC 119 is a commercially available 7555 CMOS timer IC used in its monostable or "one-shot" mode. Timer 119 is connected to +3 V supply 162 and secondary ground 164. A 10 .[.IF.]. .Iadd.uF .Iaddend.electrolytic capacitor 141 is connected between +3 V supply 162 and secondary ground 164 near IC 119 to bypass switching transients. When timer 119 receives a trigger pulse on its active-low trigger input 184, it produces a brief active-high output pulse on its output line 186 (provided reset signal 173 is inactive). The length of the output pulse is approximately 0.6 sec. and is a function of an R C time constant determined by 680K resistor 180 and 1 uF capacitor 182. This output pulse is amplified and used to drive fragrance pump motor 64.
Timer IC 119 receives trigger pulses generated by oscillator-divider IC 138 on approximately 15-minute intervals IC 138 is a commercially available MC 14541 CMOS oscillator-divider device. IC 138 receives power from the +9 V supply lead 144. A 0.1 uF disk capacitor 199 is used to bypass switching transients generated in IC 138 to ground. The oscillator portion of IC 138 uses a 150K resistor 200, a 0.1 uF disk capacitor 202, a 100K variable resistor 204 and a 47K resistor 206 to determine the oscillator frequency. The oscillator output is available at pin 3 of IC 138. An internal connection is provided in IC 138 to a divider chain which divides the oscillator frequency. Variable resistor 204 should be adjusted to produce an oscillator frequency of 31.2 Hz, in order to produce an output frequency of 1/900 Hz (i.e. one cycle per 15-minute interval).
The output of oscillator-divider IC 138 appears on pin 8 as a 1/900 Hz square-wave. A characteristic of timer IC 119 is that once triggered, the trigger input must be negated before the output will be negated. Used directly, the output of oscillator-divider IC 138 would provide a 450 sec trigger pulse, which would interfere with the proper operation of timer IC 119. A 0.1 uF disk capacitor 210 couples the output of IC 138 to the trigger input 184 of timer IC 119, to narrow the trigger pulse to a period much shorter than IC 119's time constant of 0.6 sec. 22K resistor 222 is used as a pull-up resistor between trigger input 184 and +3 V supply 162.
Thus timer IC 119 receives a trigger pulse from IC 138 once every 15 minutes, and when not disabled by the mode switch and light sensing circuitry, it produces in response to 0.6 sec. output pulse used to drive fragrance pump motor 64. This output pulse is available on pin 3 of IC 119 (lead 186). NPN transistor 230 (type 2N3904) and PNP transistor 232 (type 2N4403) are cascaded to amplify timer IC 138 output 186 to provide sufficient current to operate fragrance pump motor 64. A 200 Ohm resistor 234 couples timer IC 138 output 186 to the base of transistor 230. A 10K resistor 236 couples the collector of transistor 230 to +3 V supply 162 and serves as a load resistor. A 100 ohm resistor 238 couples the collector of transistor 230 to the base of transistor 232. Fragrance pump motor 64 is connected as a load between the collector of transistor 232 and secondary ground 164.
Light emitting diode (LED) driver IC 146 operates an LED indicator 92 to show that power switch 110 is ON and D- cells 35A, 35B are sufficiently fresh to operate the fragrance pump motor 64 and associated circuitry 122. IC 146 is a commercially available type LM3909 flasher-driver circuit which alternately supplies power to and removes power from LED 92, causing it to flash. Capacitor 240 (47 uF, electrolytic) determines the rate at which LED 92 flashes, Flasher IC 146 obtains its positive power supply from the +3 V supply 162.
Flasher 146 obtains its negative power supply from secondary .[.round.]. .Iadd.ground .Iaddend.164 through transistor 145. This permits transistors 142 and 145, arranged to sense the voltage on the +3 V supply 162, to enable flasher 146 only when this voltage exceeds a predetermined threshold. A 39K resistor 242, a 1K resistor 244, and a 1K variable resistor 246 form a voltage divider that sets the bias on the base of NPN transistor 142 to determine the switching threshold. The charge-voltage relationships of commercial D-cells vary according to the chemical system and construction used. Variable resistor 246 permits adjustment of the threshold according to the type of D-cell in use. A 1K resistor 248 couples the emitter of transistor 142 to secondary ground 164. A 100K resistor 250 couples the collector of transistor 142 to the +3 V supply 162. The collector of transistor 142 directly drives the base of transistor .[.144.]. .Iadd.145.Iaddend..
The Pump Operation Counting Circuit 124 provides a visual indication that the fragrance container probably has been exhausted. This circuit counts operations of the fragrance pump, and operates a visual indicator 88 after 3072 such operations.
In brief, IC 322 is a multi-stage binary counter which counts each fragrance pump operation pulse from timer IC 119 and supplies a binary value representing the number of received pulses on its output terminals. Devices 324 and 326 are D-type flip-flops which recognize when counter 324 has received 3072 pulses. If the mode switch 108 is set for continuous operation, assuming an interval of 15 minutes per pulse, 3072 pulses represent a period of 32 days. When this event occurs, flip-flop 326 turns on flasher IC 328. IC 328 is a commercially available circuit which alternately supplies power to and removes power from the light emitting diode (LED) indicator 88, causing it to flash.
In more detail, counter IC 322 receives output pulses from timer IC 119 through NPN transistor 330. Timer IC 119 operates from the +3 V supply 162 .[.(a 0.1 μF disk capacitor 323 eliminates switching transients).]., but counter IC 322 operates from the +9 supply 144 (.Iadd.a 0.1 μF disk capacitor 323 eliminates switching transients).Iaddend.. Transistor 330 shifts output pulses from IC 119 to a level compatible with the clock input of IC 322. A 2.2K resistor 312 and a 22K resistor 332 form a voltage divider to couple the output signal 186 from IC 119 to the base of transistor 330. A 100K resistor 336 couples the collector of transistor 330 to the +9 V supply and serves as a load. The collector of transistor 330 is connected to the clock input of counter IC 322.
IC 322 is a commercially available type MC14040 .Iadd.12-.Iaddend.stage binary counter circuit. Counter 322 presents a binary value equal to the number of pulses received from timer 119 on its output terminals. In this circuit, only output bits 11 (signal 340) and 12 (signal 342) are needed; the other available outputs are unused. Devices 324 and 326 are each half of a commercially available type MC14013 dual D-type flip-flop IC, used to recognize that counter 322 has reached 3072 counts.
Switch 102, a momentary contact switch, is actuated by the user to reset the 3072-count interval. When actuated, this switch asserts signal 346, resetting counter 322 and flip- flops 324 and 326. Diodes 350 and 352 provide isolated reset signal 347 to counter 322 to prevent damage to output transistors in counter 322 when switch .[.324.]. .Iadd.102 .Iaddend.is actuated. Resistors 349 and 348 are pull-down resistors which negate signals 346 and 347 respectively when the switch .[.324.]. .Iadd.102 .Iaddend.is not actuated. Starting from its initialized state, counter 322 counts pulses from timer 119. When counter 322 has received 2048 pulses, it asserts output bit 12 (signal 342), causing flip-flop 324 to propagate data from its wired-high D input to the output. This asserts signal 354, the D input of flip-flop 326. When counter 322 has received .[.3072.]. .Iadd.1024 more .Iaddend.pulses, it asserts output bit 11 (signal 340), causing flip-flop 326 to clock the "high" on its D input to the output, asserting signal 356 .Iadd.after a total of 3072 pulses.Iaddend..
IC 328, a commercially available type LM3909 flasher circuit, obtains its negative power supply from secondary ground 164 through transistor 360. Asserted signal 356 from flip-flop 326 provides drive current through resistor 362 to the base of transistor 360, causing it to conduct and enabling flasher 328. Flasher circuit 328 alternately supplies power to and removes power from LED 88, causing it to flash. Capacitor 364 determines the rate at which LED 88 flashes. Flasher 328 obtains its positive power supply from the +3 V supply 162.
While other embodiments will become apparent to those skilled in the art, it is the intent that this application be limited solely by the appended claims.

Claims (27)

We claim:
1. An apparatus and controlling circuitry for periodically operating an aerosol container at discrete dispensing intervals to disperse a discrete quantity of the aerosol contents thereof .Iadd.into the atmosphere as a spray.Iaddend., including powered means for periodically actuating an aerosol dispensing means of said container, said circuitry controlling said powered means .Iadd., .Iaddend..[.for a predetermined number of actuations, and first warning means for indicating the probable total evacuation of container contents and the necessity for termination of said dispensing operation when the actuation count reaches said predetermined number.]., and further including mode switching means for setting said circuitry into a plurality of different operating modes, said plurality of different operating modes comprising at least three modes, including a continuous intermittent operation, a controlled daytime operation .Iadd.responsive to the relative presence of ambient light.Iaddend., and a controlled night operation .Iadd.responsive to the relative absence of ambient light.Iaddend..
2. Apparatus of the type claimed in claim 1 wherein said apparatus includes internal power source means for activating said powered means periodically to dispense said aerosol, means for measuring the power of said internal power source means, and .[.second.]. warning means for indicating whether said measured power is sufficient to activate said powered means.
3. Apparatus of the type claimed in claim 1 wherein said continuous intermittent operation provides an unbroken series of intermittent disbursements of aerosol spray material from said aerosol dispensing means regardless of the presence or absence of ambient light surrounding said apparatus .[.until total evacuation of said container contents is reached.]..
4. Apparatus of the type claimed in claim 1 wherein said apparatus includes means for measuring the intensity of ambient light, and said controlled daytime operation mode .[.includes circuitry which.]. provides said periodic actuation of said aerosol dispensing means .Iadd.only .Iaddend.in the presence of ambient light having an intensity exceeding a predetermined threshold.
5. Apparatus of the type claimed in claim 1 wherein said apparatus includes an ambient light sensing means for measuring the intensity of ambient light, and said controlled night operation mode .[.includes circuitry which.]. provides .[.inactivation.]. .Iadd.said periodic actuation .Iaddend.of said aerosol dispensing means .Iadd.only .Iaddend.in the presence of ambient light having an intensity less than a predetermined threshold.
6. Apparatus of the type claimed in claim 1 wherein said powered means includes a motor operatively coupled to a power transmission unit for sending periodic power to a cam unit, .[.and a.]. .Iadd.said .Iaddend.cam unit operatively coupled to said power transmission unit for periodically engaging said dispensing means on said aerosol container for releasing the contents .[.in.]. .Iadd.of .Iaddend.said container at said discrete dispensing .[.internals.]. .Iadd.intervals.Iaddend..
7. Apparatus of the type claimed in claim 1 wherein said apparatus and controlling circuitry are contained within a rigid housing openable at the front, said housing having a front cover openably fastened in assembled relation to the lower end of said housing, said housing further including an upper cover containing a plurality of apertures for exposing light sensing means .[.and said warning means.]..
8. Apparatus of the type claimed in claim .[.1.]. .Iadd.26 .Iaddend.wherein said circuitry includes a reset switch for reactivating said first warning means when a dissipated aerosol container is replaced with a full container.
9. Apparatus of the type claimed in claim .[.1.]. .Iadd.26 .Iaddend.wherein said first warning means comprises a light emitting diode.
10. Apparatus of the type claimed in claim .[.1.]. .Iadd.26 .Iaddend.wherein said circuitry includes means for establishing a new predetermined number of actuations and termination of dispensing operation.
11. Apparatus of the type claimed in claim 7 wherein said housing further includes a platform spaced from the top and bottom of said housing for supporting an aerosol container, and rib means integral within said housing for embracing and rigidly locating said aerosol container.
12. Apparatus for the type claimed in claim 11 wherein the upper interior of said housing includes said circuitry, a motor operatively coupled to a power transmission unit for sending periodic power to a cam unit, .[.and a.]. .Iadd.said .Iaddend.cam unit operatively coupled to said power transmission unit for periodically engaging said dispensing means on said aerosol container, and cavities within said housing containing battery devices for actuating said motor and said circuitry.
13. Apparatus of the type claimed in claim 1 wherein said circuitry includes means for adjusting the time interval between periodic actuations of said aerosol dispensing means.
14. Apparatus of the type claimed in claim 13 wherein the time interval can be adjusted between predetermined limits.
15. An apparatus and controlling circuitry for periodically operating an aerosol container at discrete dispensing intervals to disperse a discrete quantity of the aerosol contents thereof, including powered means for periodically actuating an aerosol dispensing means of said container, said circuitry controlling said powered means for a predetermined number of actuations and including means .Iadd.for .Iaddend.counting the actuations, and first energizing means coupled to first warning means for energizing said first warning means when the actuation count reaches said predetermined number to thereby indicate the probable total evacuation of container contents and the necessity for termination of said dispensing operation, and further including mode switching means for setting said circuitry into a plurality of different operating modes, said plurality of different operating modes comprising at least three modes, including a continuous intermittent operation, a controlled daytime operation, and a controlled night operation.
16. Apparatus of the type claimed in claim 15 wherein said apparatus includes internal power source means for activating said powered means periodically to dispense said aerosol, means for measuring the power of said internal power source means, and second energizing means coupled to second warning means for energizing said second warning means to indicate whether said measured power is sufficient to activate said powered means.
17. Apparatus of the type claimed in claim 15 wherein said continuous intermittent operation provides an unbroken series of intermittent disbursements of aerosol spray material from said aerosol dispensing means regardless of the presence or absence of ambient light surrounding said apparatus until total evacuation of said container contents is reached.
18. Apparatus of the type claimed in claim 15 wherein said apparatus includes means for measuring the intensity of ambient light, and said controlled daytime operation mode .[.includes circuitry which.]. provides said periodic actuation of said aerosol dispensing means in the presence of ambient light having an intensity exceeding a predetermined threshold.
19. Apparatus of the type claimed in claim 15 wherein said apparatus includes an ambient light sensing means for measuring the intensity of ambient light, and said controlled night operation mode .[.includes circuitry which.]. provides inactivation of said aerosol dispensing means in the presence of ambient light having an intensity .[.less.]. .Iadd.greater .Iaddend.than a predetermined threshold.
20. Apparatus of the type claimed in claim 15 wherein said powered means includes a motor operatively coupled to a power transmission unit for sending periodic power to a cam unit, .[.and a.]. .Iadd.said .Iaddend.cam unit operatively coupled to said power transmission unit for periodically engaging said dispensing means on said aerosol container for releasing the contents in said container at said discrete dispensing .[.internals.]. .Iadd.intervals.Iaddend..
21. An apparatus and controlling circuitry for periodically .[.operating.]. .Iadd.actuating .Iaddend.an aerosol container at discrete dispensing intervals to disperse a discrete quantity of the aerosol contents thereof .Iadd.into the air.Iaddend., .Iadd.said apparatus .Iaddend.including powered means for periodically actuating an aerosol dispensing means of said container, said circuitry including means .Iadd.for .Iaddend.counting the actuations of said powered means for a predetermined number of actuations, and first energizing means coupled to first warning means for energizing said first warning means when the actuation count reaches said predetermined number to thereby indicate the probable total evacuation of container contents and the necessity for termination of said dispensing operation, and further including mode switching means for setting said circuitry into a plurality of different operating modes, said plurality of different operating modes comprising at least three modes, including a continuous intermittent operation, a controlled daytime operation, and a controlled night operation.
22. Apparatus of the type claimed in claim 21 wherein said apparatus includes internal power source means for activating said powered means periodically to dispense said aerosol, means for measuring the power of said internal power source means, and second energizing means coupled to second warning means for energizing said second warning means to indicate whether said measured power is sufficient to activate said powered means.
23. Apparatus of the type claimed in claim 21 wherein said continuous intermittent operation provides an unbroken series of intermittent disbursements of aerosol spray material from said .[.aerosol dispensing means.]. .Iadd.container .Iaddend.regardless of the presence or absence of ambient light surrounding said apparatus until total evacuation of said container contents is reached.
24. Apparatus of the type claimed in claim 21 wherein said apparatus includes means for measuring the intensity of ambient light, and said controlled daytime operation mode .[.includes circuitry which.]. provides said periodic actuation of said aerosol dispensing means .Iadd.only .Iaddend.in the presence of ambient light having an intensity exceeding a predetermined threshold.
25. Apparatus of the type claimed in claim 21 wherein said apparatus includes an ambient light sensing means for measuring the intensity of ambient light, and said controlled night operation mode .[.includes circuitry which.]. provides .[.inactivation.]. .Iadd.actuation .Iaddend.of said aerosol dispensing means .Iadd.only .Iaddend.in the presence of ambient light having an intensity less than a predetermined threshold. .Iadd.
26. Apparatus of the type claimed in claim 1 wherein said controlling circuitry includes means for controlling said powered means for a predetermined number of actuations, and first warning means for indicating the probable total evacuations of container contents and the necessity for termination of said dispensing operation when the actuation count reaches said predetermined number. .Iaddend. .Iadd.27. Apparatus of the type claimed in claim 1 wherein said mode switching means includes a three-position switch which is accessible to the user of said apparatus. .Iaddend. .Iadd.28. Apparatus of the type claimed in claim 27 wherein said circuitry includes a timer for repeatedly activating said powered means in said three modes of operation and a photocell for providing a signal in response to the intensity of ambient light, and wherein said three-position switch is configured to change the response of said timer to said photocell signal. .Iaddend. .Iadd.29. An apparatus for introducing a chemical substance from a container into the environment surrounding the container, said apparatus comprising: powered means for evacuating the chemical substance from the container when activated, circuit means for measuring the intensity of ambient light and for controlling said powered means such that said powered means is actuated only at certain ambient light intensities and only at certain times, and mode switching means for setting said circuit means into a plurality of different operating modes, said plurality of different operating modes comprising at least three distinct modes, including a continuous operation mode, a controlled daytime operation mode, and a controlled nighttime operation mode. .Iaddend. .Iadd.30. Apparatus of the type claimed in claim 29 wherein said chemical substance is introduced into the surrounding atmosphere as a spray. .Iaddend. .Iadd.31. Apparatus of the type claimed in claim 29 wherein said apparatus is an odor control device, wherein said powered means is periodically activated in said three modes, and wherein said circuit means includes means for adjusting the waiting interval between periodic activations within the range of approximately 5 minutes to approximately 25 minutes. .Iaddend. .Iadd.32. Apparatus of the type claimed in claim 29 wherein said continuous operation mode provides an unbroken series of periodic actuations of said powered means regardless of the presence or absence of ambient light surrounding said apparatus. .Iaddend. .Iadd.33. Apparatus of the type claimed in claim 29 wherein said controlled daytime operation mode provides periodic actuation of said powered means only in the presence of ambient light having an intensity
exceeding a predetermined threshold. .Iaddend. .Iadd.34. Apparatus of the type claimed in claim 29 wherein said controlled nighttime operation mode provides periodic actuation of said powered means only in the presence of ambient light having an intensity less than a predetermined threshold. .Iaddend.
US08/105,862 1989-09-26 1993-08-11 Metered aerosol fragrance dispensing mechanism Expired - Lifetime USRE34847E (en)

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Cited By (68)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5676283A (en) * 1996-07-04 1997-10-14 Kae Chuang International Co., Ltd. Power device for a perfume sprayer
US5884808A (en) * 1997-08-21 1999-03-23 Technical Concepts, L.P. Material dispensing method and apparatus having display feature
USD409740S (en) * 1998-07-24 1999-05-11 Amrep, Inc. Aerosol dispensing cabinet
US5908140A (en) 1997-08-21 1999-06-01 Technical Concepts, L.P. Material dispensing method and apparatus with stall detect
US6082358A (en) 1998-05-05 2000-07-04 1263152 Ontario Inc. Indicating device for aerosol container
US6142339A (en) 1998-01-16 2000-11-07 1263152 Ontario Inc. Aerosol dispensing device
US6336453B1 (en) 1999-04-30 2002-01-08 Trudell Medical International Indicating device for aerosol container
US6394310B1 (en) * 1999-09-15 2002-05-28 Kenneth J. Muderlak System and method for programmably dispensing material
US6435372B1 (en) 1998-01-16 2002-08-20 1263152 Ontario Inc. Delivery system for a medicament and method for the assembly thereof
US6517009B2 (en) 1997-12-25 2003-02-11 Gotit Ltd. Automatic spray dispenser
US20030178020A1 (en) * 2002-03-21 2003-09-25 Scarrott Peter Mykola Indicating device for aerosol container
US6644507B2 (en) 2001-03-14 2003-11-11 Johnsondiversey, Inc. Automatic air freshener with dynamically variable dispensing interval
US6729330B2 (en) 1998-05-05 2004-05-04 Trudell Medical International Indicating device for aerosol container
US6745760B2 (en) 2001-05-15 2004-06-08 Trudell Medical International Medicament applicator
US20050127206A1 (en) * 2003-12-10 2005-06-16 Xerox Corporation Device and system for dispensing fluids into the atmosphere
US20050126469A1 (en) * 2003-12-15 2005-06-16 Lu Winston Z. Dose indicating device
US20050169666A1 (en) * 2004-02-03 2005-08-04 Jose Porchia Device providing coordinated emission of light and volatile active
US20050285538A1 (en) * 2004-02-03 2005-12-29 Thomas Jaworski Active material emitting device
US20060076366A1 (en) * 2004-10-12 2006-04-13 Furner Paul E Compact spray device
US20060115386A1 (en) * 2004-02-03 2006-06-01 Michaels Kenneth W Active material and light emitting device
US20060120080A1 (en) * 2004-02-03 2006-06-08 Gene Sipinski Control and an integrated circuit for a multisensory apparatus
US20060153733A1 (en) * 2005-01-10 2006-07-13 Simon Sassoon Door handle sanitizer system and apparatus
US20060175345A1 (en) * 2005-01-20 2006-08-10 Winston Lu Dispensing device
US20060191955A1 (en) * 2003-09-09 2006-08-31 Mclisky Nigel H Spray dispenser activated by sensed light level
US20060267797A1 (en) * 2003-02-25 2006-11-30 Integrated Electronics Solutions Pty Ltd. Barricade flasher
US20070183924A1 (en) * 2003-07-18 2007-08-09 Reckitt Benckiser Pty Limited Portable device for vapour emanation by heating a volatile compound in a cartridge
US20070272715A1 (en) * 2005-01-10 2007-11-29 Simon Sassoon Controllable door handle sanitizer system and method
US20080023497A1 (en) * 2005-01-10 2008-01-31 Hyso Technology Llc Elongated nozzle configured for use with automated dispensers such as door handle sprayers and the like
US20080029085A1 (en) * 2006-08-01 2008-02-07 Greg Lawrence Dispensing device
US20080035765A1 (en) * 2004-04-20 2008-02-14 Xerox Corporation Environmental system including a micromechanical dispensing device
US20080109956A1 (en) * 2006-10-24 2008-05-15 Bradley Fixtures Corporation Capacitive sensing for washroom fixture
US20080142555A1 (en) * 2005-04-28 2008-06-19 Persee Medica Device for Applying a Fluid to an Area to be Treated, Comprising a Timing System
US7389943B2 (en) 2004-06-30 2008-06-24 S.C. Johnson & Son, Inc. Electromechanical apparatus for dispensing volatile substances with single dispensing mechanism and cartridge for holding multiple receptacles
US20080184614A1 (en) * 2006-10-02 2008-08-07 Higbee Bradley Apparatus and systems for using semiochemical compositions for insect pest control
US20080277411A1 (en) * 2007-05-10 2008-11-13 Rene Maurice Beland Actuator cap for a spray device
US20080290113A1 (en) * 2007-05-25 2008-11-27 Helf Thomas A Actuator cap for a spray device
US20080290120A1 (en) * 2007-05-25 2008-11-27 Helf Thomas A Actuator cap for a spray device
US20080315005A1 (en) * 2007-06-25 2008-12-25 Michaels Kenneth W Active material emitting device and method of dispensing an active material
US20090045218A1 (en) * 2007-08-16 2009-02-19 Helf Thomas A Overcap for a spray device
US20090045219A1 (en) * 2007-08-16 2009-02-19 Helf Thomas A Overcap and system for spraying a fluid
US20090045220A1 (en) * 2007-08-16 2009-02-19 Helf Thomas A Apparatus for control of a volatile material dispenser
US7610118B2 (en) 2002-11-08 2009-10-27 S.C. Johnson & Son, Inc. Dispensing of multiple volatile substances
US20090272312A1 (en) * 2008-05-05 2009-11-05 Michael Nuttall Drive mechanism for an indicating device
US7648127B2 (en) 2008-01-18 2010-01-19 Georgia-Pacific Consumer Products Lp Air freshener device and methods for controlling an amount of evaporated scented material emitted from the air freshener device
US20100025427A1 (en) * 2008-07-25 2010-02-04 Technical Concepts Llc Dual substance dispenser
US20100038452A1 (en) * 2008-08-15 2010-02-18 Po-Hui Lin Automatic air freshener spraying device
US20100059602A1 (en) * 2008-09-09 2010-03-11 Technical Concepts, Llc Substance dispenser
US20100101570A1 (en) * 2008-10-22 2010-04-29 Adam Meyer Modular aerosol delivery system
US20100163031A1 (en) * 2003-10-28 2010-07-01 Robert Morton Indicating Device with Warning Dosage Indicator
US7878371B2 (en) 2008-09-04 2011-02-01 Hyso Technology Llc Controllable door handle sanitizer
USD632772S1 (en) 2009-10-30 2011-02-15 S.C. Johnson & Son, Inc. Air fragrance housing
US20110095050A1 (en) * 2008-05-05 2011-04-28 Hans Georg Hagleitner Dispenser
US20110168745A1 (en) * 2004-07-28 2011-07-14 Reckitt Benckiser (Uk) Limited Spraying Apparatus and Method of Using the Same
US8061562B2 (en) 2004-10-12 2011-11-22 S.C. Johnson & Son, Inc. Compact spray device
US8079362B2 (en) 2004-09-20 2011-12-20 Trudell Medical International Method for displaying dosage indicia
US8181591B1 (en) 2008-05-23 2012-05-22 Trudell Medical International Domed actuator for indicating device
US8387827B2 (en) 2008-03-24 2013-03-05 S.C. Johnson & Son, Inc. Volatile material dispenser
USD679793S1 (en) 2012-01-25 2013-04-09 S. C. Johnson & Son, Inc. Dispenser shroud
US8459499B2 (en) 2009-10-26 2013-06-11 S.C. Johnson & Son, Inc. Dispensers and functional operation and timing control improvements for dispensers
US8464905B2 (en) 2010-10-29 2013-06-18 S.C. Johnson & Son, Inc. Dispensers and functional operation and timing control improvements for dispensers
US20140103479A1 (en) * 2012-10-15 2014-04-17 Tai P. Luc Dispensing Systems with Improved Sensing Capabilities
US8807390B2 (en) 2012-10-23 2014-08-19 S.C. Johnson & Son, Inc. Indication sequence for energy efficient volatile material dispensers
US8881945B2 (en) 2011-09-19 2014-11-11 S.C. Johnson & Son, Inc. Spray dispenser
US20150083755A1 (en) * 2013-09-26 2015-03-26 Alex Mecker Dispensing System with Bracket
US10220109B2 (en) 2014-04-18 2019-03-05 Todd H. Becker Pest control system and method
US10258712B2 (en) 2014-04-18 2019-04-16 Todd H. Becker Method and system of diffusing scent complementary to a service
US10814028B2 (en) 2016-08-03 2020-10-27 Scentbridge Holdings, Llc Method and system of a networked scent diffusion device
CN112154380A (en) * 2018-07-09 2020-12-29 天梭股份有限公司 Watch equipped with a rotary bezel comprising a bezel locking system with integrated helium valve

Families Citing this family (47)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5301873A (en) * 1990-03-26 1994-04-12 Kold Ban International Low fluid indicator for pressurized canister
US5105133A (en) * 1990-09-14 1992-04-14 Yang Tai Her Multiple mode perfumer
US5249718A (en) * 1992-03-16 1993-10-05 Technical Concepts Automatic pump-type spray dispenser
US5225294A (en) * 1992-06-16 1993-07-06 Fh Group Non-rechargeable battery pack
US5449117A (en) * 1993-10-04 1995-09-12 Technical Concepts, L.P. Apparatus and method for controllably dispensing drops of liquid
US5505192A (en) * 1993-11-12 1996-04-09 New-Med Corporation Dispenser monitoring system
USD361375S (en) 1994-08-17 1995-08-15 Amrep, Inc. Aerosol dispensing cabinet
US5551598A (en) * 1994-09-06 1996-09-03 Whirlpool Corporation Water run-on timer
US5582957A (en) 1995-03-28 1996-12-10 Eastman Kodak Company Resuspension optimization for photographic nanosuspensions
US5772074A (en) 1995-03-31 1998-06-30 Waterbury Companies, Inc. Device and method for indicating the dispensing of a predetermined amount of a material
US5673825A (en) * 1995-11-29 1997-10-07 Bobson Hygiene International Inc. Holder for holding a deodorant bottle therein
US6039212A (en) * 1998-02-20 2000-03-21 Ccl Industries Inc. Aerosol dispenser
FR2795348B1 (en) * 1999-06-22 2001-09-14 Osmooze Sa PROGRAMMABLE DEVICE FOR SCATTERING ODOR PICS
US6371450B1 (en) * 1999-07-01 2002-04-16 S. C. Johnson & Son, Inc. Battery powered volatile dispenser having an electrical power cut-off for a visible fan
US6267297B1 (en) 1999-10-12 2001-07-31 Waterbury Companies, Inc. Programmable dispenser
US6296147B1 (en) 1999-10-26 2001-10-02 Waterbury Companies, Inc. Dispenser
IL134219A0 (en) 2000-01-25 2001-04-30 Gotit Ltd Spray dispenser
US6350196B1 (en) 2000-09-15 2002-02-26 Bruce A. Mott Disinfectant distribution system for heating and cooling ducts
GB2369816B (en) * 2000-12-06 2004-12-22 Dudley Ind Ltd Dispensing device
US6584633B2 (en) 2000-12-12 2003-07-01 Ecolab Inc. Automated fragrance application apparatus and method
US6820821B2 (en) * 2001-04-13 2004-11-23 S.C. Johnson & Son, Inc. Automated cleansing sprayer
GB0123851D0 (en) 2001-10-04 2001-11-28 Pankhurst Design & Development Dispersing fragrances
US7387265B2 (en) * 2002-03-05 2008-06-17 Microwflow Engineering Sa Method and system for ambient air scenting and disinfecting based on flexible, autonomous liquid atomizer cartridges and an intelligent networking thereof
US6802460B2 (en) 2002-03-05 2004-10-12 Microflow Engineering Sa Method and system for ambient air scenting and disinfecting based on flexible, autonomous liquid atomizer cartridges and an intelligent networking thereof
GB2392440B (en) * 2002-08-30 2004-11-03 Vectair Systems Ltd Programmable dispenser
GB2392438B (en) * 2002-08-30 2006-11-15 Vectair Systems Ltd Programmable dispenser
EP1407790A1 (en) * 2002-10-10 2004-04-14 Spy Marketing Sdn. Bhd. Improved olfactory stimulating material dispensing apparatus
US7469844B2 (en) 2002-11-08 2008-12-30 S.C. Johnson & Son, Inc. Diffusion device and method of diffusing
US7407065B2 (en) * 2003-02-18 2008-08-05 Pent Technologies, Inc. Method of discharging an aerosolized fluid
PT1606213E (en) * 2003-03-21 2011-08-17 Joseph S Kanfer Apparatus for hands-free dispensing of a measured quantity of material
US7306167B2 (en) * 2004-10-21 2007-12-11 Nch Corporation Light-activated mist sprayer system
US8430337B2 (en) * 2004-10-21 2013-04-30 Nch Corporation Light-activated portable aerosol mist sprayer device
US7622073B2 (en) 2005-04-12 2009-11-24 S.C. Johnson & Son, Inc. Apparatus for and method of dispensing active materials
GB0622088D0 (en) * 2006-11-07 2006-12-13 Reckitt Benckiser Uk Ltd Apparatus
US20090032557A1 (en) * 2007-07-31 2009-02-05 Shihming Chang Automatic actuating device for sprayer
JP2011505232A (en) * 2007-11-15 2011-02-24 ツォベーレ ホールディング ソシエタ ペル アチオニ Dual spray type automatic dispenser
US8320751B2 (en) 2007-12-20 2012-11-27 S.C. Johnson & Son, Inc. Volatile material diffuser and method of preventing undesirable mixing of volatile materials
US20090326861A1 (en) * 2008-06-25 2009-12-31 Langford Stanley C Dose counting scales for a medical inhaler
US8436560B2 (en) * 2009-05-19 2013-05-07 Innovasystems, Inc. System and method for actuating a dispensing device using a linear motor
EP2509890B1 (en) * 2009-12-09 2017-05-17 S.C. Johnson & Son, Inc. Method of operating a volatile material dispenser
USD657242S1 (en) 2010-01-14 2012-04-10 S.C. Johnson & Son, Inc. Container with nozzle
USD648216S1 (en) 2010-01-14 2011-11-08 S.C. Johnson & Son, Inc. Actuator nozzle for a diffusion device
USD639923S1 (en) 2010-04-15 2011-06-14 S.C. Johnson & Son, Inc. Dispensing device
JP5830549B2 (en) 2011-03-01 2015-12-09 エス.シー. ジョンソン アンド サン、インコーポレイテッド Drive module device and assembly method thereof
US8998038B2 (en) * 2012-03-27 2015-04-07 Hsu-Hui Chang Sprayer activation device
CA2886894C (en) 2012-10-15 2017-02-28 Smart Wave Technologies Corp. Aerosol dispensing apparatus
ES2540162B1 (en) * 2013-11-27 2016-04-14 Zobele España, S.A. Device and procedure for diffusion of volatile substances

Citations (38)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2686944A (en) * 1950-07-07 1954-08-24 Werner A Gubelin Scent projecting apparatus
US3018056A (en) * 1960-09-29 1962-01-23 Montgomery Mfg Company Inc Timed spray dispensers
US3139218A (en) * 1962-05-16 1964-06-30 Richardson Merrell Inc Dispensing apparatus for portable pressurized containers
US3165238A (en) * 1962-02-19 1965-01-12 Heuer Timer Corp Intermittent actuating device for dispensers
US3318159A (en) * 1965-09-13 1967-05-09 Gen Time Corp Timed actuating device for aerosol dispenser
US3587332A (en) * 1968-09-26 1971-06-28 John J Bell Operation control device
US3589563A (en) * 1969-08-11 1971-06-29 Gen Time Corp Long period battery-operated aerosol dispenser
US3633881A (en) * 1969-10-09 1972-01-11 Alfred Yurdin Evaporative deodorizing system
US3739944A (en) * 1972-05-25 1973-06-19 Westinghouse Electric Corp Automatic periodically actuated spray dispenser
US3949241A (en) * 1974-05-15 1976-04-06 Maute Charles J Control apparatus for electrical devices
US3952916A (en) * 1975-01-06 1976-04-27 Warner-Lambert Company Automatic dispenser for periodically actuating an aerosol container
GB1449448A (en) * 1972-06-23 1976-09-15 Merrifield D L Devices for discharging vapour into the atmosphere
US3990848A (en) * 1975-04-10 1976-11-09 The Risdon Manufacturing Company System for inducing air flow past a gel type product
US3993444A (en) * 1973-10-17 1976-11-23 Edward Leslie Brown Intermittent time controlled vapor dispensing device
USRE29117E (en) * 1973-07-16 1977-01-18 Automatic spray dispenser with integrated test apparatus
US4006844A (en) * 1975-04-10 1977-02-08 The Risdon Manufacturing Company Apparatus for operating an aerosol container
US4007755A (en) * 1974-01-18 1977-02-15 Sun Oil Company Of Pennsylvania Component injection system
US4035451A (en) * 1976-07-23 1977-07-12 The Risdon Manufacturing Company Cartridge forming part of a system for inducing air flow past a product capable of being vaporized
US4063664A (en) * 1976-09-13 1977-12-20 The Risdon Manufacturing Company Device for indicating when automatic, periodic operation has emptied an aerosol container
US4098853A (en) * 1974-03-25 1978-07-04 Chemetron Corporation Humidifier and automatic control system therefor
US4166087A (en) * 1971-11-22 1979-08-28 Cline-Buckner, Inc. Automatic intermittent vapor dispenser
US4271092A (en) * 1976-10-13 1981-06-02 Risdon Enterprises, Inc. Apparatus for inducing air flow past a product capable of being vaporized
US4276236A (en) * 1978-04-27 1981-06-30 Risdon Enterprises, Inc. Apparatus for inducing air flow past a product capable of being vaporized
US4301095A (en) * 1980-08-18 1981-11-17 Product Enterprise, Inc. Air freshener dispenser
GB2080111A (en) * 1980-07-23 1982-02-03 Jenkinson Edgar Atmospheric vaporises
US4370300A (en) * 1981-01-23 1983-01-25 Duskin Franchise Kabushiki Kaisha Aromatic odorant emitting device
US4383951A (en) * 1981-08-24 1983-05-17 Woodlets, Inc. Forced flow vapor distribution device
DE3209698A1 (en) * 1982-03-11 1983-10-06 Manfred Schloemer "Air improver"
GB2119499A (en) * 1982-03-12 1983-11-16 Solar Ventilation Limited Solar ventilator and solar powered air modifier
US4483466A (en) * 1981-02-26 1984-11-20 Gutierrez Arturo M Apparatus for automatically operating the discharge valve of a pressure container
US4601886A (en) * 1984-05-24 1986-07-22 Hudgins Richard G Air treatment apparatus
US4707338A (en) * 1984-03-23 1987-11-17 Donald Spector Light-activated aroma generator with automatic cutoff
US4719851A (en) * 1986-12-24 1988-01-19 Whirlpool Corporation Method and apparatus for indicating need for replacement of trash-treating material supply
US4736871A (en) * 1986-11-19 1988-04-12 Luciani Dorian E Liquid measuring dispenser
US4743406A (en) * 1987-01-15 1988-05-10 Steiner Company, Inc. Self-contained air freshener and cartridge therefor
US4817822A (en) * 1986-04-25 1989-04-04 Glaxo Group Limited Indicating device
US4830791A (en) * 1988-02-29 1989-05-16 Scentex, Inc. Odor control device
US5012961A (en) * 1983-12-09 1991-05-07 Milliken Research Corporation Method of dispensing vapor to the air in a room and an apparatus for carrying out the method

Patent Citations (38)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US2686944A (en) * 1950-07-07 1954-08-24 Werner A Gubelin Scent projecting apparatus
US3018056A (en) * 1960-09-29 1962-01-23 Montgomery Mfg Company Inc Timed spray dispensers
US3165238A (en) * 1962-02-19 1965-01-12 Heuer Timer Corp Intermittent actuating device for dispensers
US3139218A (en) * 1962-05-16 1964-06-30 Richardson Merrell Inc Dispensing apparatus for portable pressurized containers
US3318159A (en) * 1965-09-13 1967-05-09 Gen Time Corp Timed actuating device for aerosol dispenser
US3587332A (en) * 1968-09-26 1971-06-28 John J Bell Operation control device
US3589563A (en) * 1969-08-11 1971-06-29 Gen Time Corp Long period battery-operated aerosol dispenser
US3633881A (en) * 1969-10-09 1972-01-11 Alfred Yurdin Evaporative deodorizing system
US4166087A (en) * 1971-11-22 1979-08-28 Cline-Buckner, Inc. Automatic intermittent vapor dispenser
US3739944A (en) * 1972-05-25 1973-06-19 Westinghouse Electric Corp Automatic periodically actuated spray dispenser
GB1449448A (en) * 1972-06-23 1976-09-15 Merrifield D L Devices for discharging vapour into the atmosphere
USRE29117E (en) * 1973-07-16 1977-01-18 Automatic spray dispenser with integrated test apparatus
US3993444A (en) * 1973-10-17 1976-11-23 Edward Leslie Brown Intermittent time controlled vapor dispensing device
US4007755A (en) * 1974-01-18 1977-02-15 Sun Oil Company Of Pennsylvania Component injection system
US4098853A (en) * 1974-03-25 1978-07-04 Chemetron Corporation Humidifier and automatic control system therefor
US3949241A (en) * 1974-05-15 1976-04-06 Maute Charles J Control apparatus for electrical devices
US3952916A (en) * 1975-01-06 1976-04-27 Warner-Lambert Company Automatic dispenser for periodically actuating an aerosol container
US4006844A (en) * 1975-04-10 1977-02-08 The Risdon Manufacturing Company Apparatus for operating an aerosol container
US3990848A (en) * 1975-04-10 1976-11-09 The Risdon Manufacturing Company System for inducing air flow past a gel type product
US4035451A (en) * 1976-07-23 1977-07-12 The Risdon Manufacturing Company Cartridge forming part of a system for inducing air flow past a product capable of being vaporized
US4063664A (en) * 1976-09-13 1977-12-20 The Risdon Manufacturing Company Device for indicating when automatic, periodic operation has emptied an aerosol container
US4271092A (en) * 1976-10-13 1981-06-02 Risdon Enterprises, Inc. Apparatus for inducing air flow past a product capable of being vaporized
US4276236A (en) * 1978-04-27 1981-06-30 Risdon Enterprises, Inc. Apparatus for inducing air flow past a product capable of being vaporized
GB2080111A (en) * 1980-07-23 1982-02-03 Jenkinson Edgar Atmospheric vaporises
US4301095A (en) * 1980-08-18 1981-11-17 Product Enterprise, Inc. Air freshener dispenser
US4370300A (en) * 1981-01-23 1983-01-25 Duskin Franchise Kabushiki Kaisha Aromatic odorant emitting device
US4483466A (en) * 1981-02-26 1984-11-20 Gutierrez Arturo M Apparatus for automatically operating the discharge valve of a pressure container
US4383951A (en) * 1981-08-24 1983-05-17 Woodlets, Inc. Forced flow vapor distribution device
DE3209698A1 (en) * 1982-03-11 1983-10-06 Manfred Schloemer "Air improver"
GB2119499A (en) * 1982-03-12 1983-11-16 Solar Ventilation Limited Solar ventilator and solar powered air modifier
US5012961A (en) * 1983-12-09 1991-05-07 Milliken Research Corporation Method of dispensing vapor to the air in a room and an apparatus for carrying out the method
US4707338A (en) * 1984-03-23 1987-11-17 Donald Spector Light-activated aroma generator with automatic cutoff
US4601886A (en) * 1984-05-24 1986-07-22 Hudgins Richard G Air treatment apparatus
US4817822A (en) * 1986-04-25 1989-04-04 Glaxo Group Limited Indicating device
US4736871A (en) * 1986-11-19 1988-04-12 Luciani Dorian E Liquid measuring dispenser
US4719851A (en) * 1986-12-24 1988-01-19 Whirlpool Corporation Method and apparatus for indicating need for replacement of trash-treating material supply
US4743406A (en) * 1987-01-15 1988-05-10 Steiner Company, Inc. Self-contained air freshener and cartridge therefor
US4830791A (en) * 1988-02-29 1989-05-16 Scentex, Inc. Odor control device

Cited By (158)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US5676283A (en) * 1996-07-04 1997-10-14 Kae Chuang International Co., Ltd. Power device for a perfume sprayer
US5884808A (en) * 1997-08-21 1999-03-23 Technical Concepts, L.P. Material dispensing method and apparatus having display feature
US5908140A (en) 1997-08-21 1999-06-01 Technical Concepts, L.P. Material dispensing method and apparatus with stall detect
WO2000064802A1 (en) * 1997-08-21 2000-11-02 Technical Concepts, L.P. Material dispensing method and apparatus with stall detect
US6517009B2 (en) 1997-12-25 2003-02-11 Gotit Ltd. Automatic spray dispenser
US6540155B1 (en) 1997-12-25 2003-04-01 Gotit Ltd. Automatic spray dispenser
US8505773B2 (en) 1998-01-16 2013-08-13 Trudell Medical International Indicating device
US6161724A (en) 1998-01-16 2000-12-19 1263152 Ontario Inc. Indicating device
US20030230304A1 (en) * 1998-01-16 2003-12-18 Richard Blacker Indicating device
US8157128B2 (en) 1998-01-16 2012-04-17 Trudell Medical International Indicating device
US7984826B2 (en) 1998-01-16 2011-07-26 Trudell Medical International Indicating device
US20090320839A1 (en) * 1998-01-16 2009-12-31 Richard Blacker Indicating device
US20040222237A1 (en) * 1998-01-16 2004-11-11 Richard Blacker Indicating device
US6435372B1 (en) 1998-01-16 2002-08-20 1263152 Ontario Inc. Delivery system for a medicament and method for the assembly thereof
US6142339A (en) 1998-01-16 2000-11-07 1263152 Ontario Inc. Aerosol dispensing device
US20060086749A1 (en) * 1998-01-16 2006-04-27 Richard Blacker Indicating device
US6561384B2 (en) 1998-01-16 2003-05-13 1263152 Ontario Inc. Medicament dispensing device and method for the use thereof
US9649455B2 (en) 1998-01-16 2017-05-16 Trudell Medical International Indicating device
US8944285B2 (en) 1998-01-16 2015-02-03 Trudell Medical International Indicating device
US7650883B2 (en) 1998-05-05 2010-01-26 Trudell Medical International Dispensing device
US20070175474A1 (en) * 1998-05-05 2007-08-02 Trudell Medical International Dispensing device
US7757688B2 (en) 1998-05-05 2010-07-20 Trudell Medical International Dispensing device
US6761161B2 (en) 1998-05-05 2004-07-13 Trudell Medical International Indicating device
US9168343B2 (en) 1998-05-05 2015-10-27 Trudell Medical International Dispensing device
US20060162724A1 (en) * 1998-05-05 2006-07-27 Scarrott Peter M Indicating device
USD456292S1 (en) 1998-05-05 2002-04-30 1263152 Ontario Inc. Indicating device
US20060150976A1 (en) * 1998-05-05 2006-07-13 Scarrott Peter M Indicating device
US8074643B2 (en) 1998-05-05 2011-12-13 Trudell Medical International Dispensing device
US6328037B1 (en) 1998-05-05 2001-12-11 1263152 Ontario Inc. Indicating device for aerosol container
USD439534S1 (en) 1998-05-05 2001-03-27 1263152 Ontario Inc. Indicating device
US6082358A (en) 1998-05-05 2000-07-04 1263152 Ontario Inc. Indicating device for aerosol container
US8662075B2 (en) 1998-05-05 2014-03-04 Trudell Medical International Dispensing device
US6729330B2 (en) 1998-05-05 2004-05-04 Trudell Medical International Indicating device for aerosol container
US20070084467A1 (en) * 1998-05-05 2007-04-19 Trudell Medical International Dispensing device
USD409740S (en) * 1998-07-24 1999-05-11 Amrep, Inc. Aerosol dispensing cabinet
US6336453B1 (en) 1999-04-30 2002-01-08 Trudell Medical International Indicating device for aerosol container
US6394310B1 (en) * 1999-09-15 2002-05-28 Kenneth J. Muderlak System and method for programmably dispensing material
US6769580B2 (en) 1999-09-15 2004-08-03 Technical Concepts, Llc System and method for programmably dispensing material
US6644507B2 (en) 2001-03-14 2003-11-11 Johnsondiversey, Inc. Automatic air freshener with dynamically variable dispensing interval
US6745760B2 (en) 2001-05-15 2004-06-08 Trudell Medical International Medicament applicator
US8327847B2 (en) 2002-03-21 2012-12-11 Trudell Medical International Indicating device for aerosol container
US20100126508A1 (en) * 2002-03-21 2010-05-27 Peter Mykola Scarrott Indicating device for aerosol container
US20060102182A1 (en) * 2002-03-21 2006-05-18 Scarrott Peter M Indicating device for aerosol container
US20030178020A1 (en) * 2002-03-21 2003-09-25 Scarrott Peter Mykola Indicating device for aerosol container
US7610118B2 (en) 2002-11-08 2009-10-27 S.C. Johnson & Son, Inc. Dispensing of multiple volatile substances
US20060267797A1 (en) * 2003-02-25 2006-11-30 Integrated Electronics Solutions Pty Ltd. Barricade flasher
US7679291B2 (en) * 2003-02-25 2010-03-16 Integrated Electronic Solutions Pty Ltd. Barricade flasher
US20070183924A1 (en) * 2003-07-18 2007-08-09 Reckitt Benckiser Pty Limited Portable device for vapour emanation by heating a volatile compound in a cartridge
US20060191955A1 (en) * 2003-09-09 2006-08-31 Mclisky Nigel H Spray dispenser activated by sensed light level
US8740015B2 (en) * 2003-09-09 2014-06-03 S.C. Johnson & Son, Inc. Spray dispenser activated by sensed light level
AU2004270584B2 (en) * 2003-09-09 2010-12-23 S.C. Johnson & Son, Inc. Spray dispenser activated by sensed light level
US20100163031A1 (en) * 2003-10-28 2010-07-01 Robert Morton Indicating Device with Warning Dosage Indicator
US9968748B2 (en) 2003-10-28 2018-05-15 Trudell Medical International Indicating device with warning dosage indicator
US8578934B2 (en) 2003-10-28 2013-11-12 Trudell Medical International Indicating device with warning dosage indicator
US20050127206A1 (en) * 2003-12-10 2005-06-16 Xerox Corporation Device and system for dispensing fluids into the atmosphere
US20060289674A1 (en) * 2003-12-10 2006-12-28 Xerox Corporation Device and system for dispensing fluids into the atmosphere
US20100095962A1 (en) * 2003-12-15 2010-04-22 Trudell Medical International, Inc. Dose indicating device
US8869735B2 (en) 2003-12-15 2014-10-28 Trudell Medical International, Inc. Dose indicating device
US20070056502A1 (en) * 2003-12-15 2007-03-15 Trudell Medical Internatioal Inc. Dose indicating device
US8074594B2 (en) 2003-12-15 2011-12-13 Trudell Medical International Dose indicating device
US20050126469A1 (en) * 2003-12-15 2005-06-16 Lu Winston Z. Dose indicating device
US20050285538A1 (en) * 2004-02-03 2005-12-29 Thomas Jaworski Active material emitting device
US7824627B2 (en) 2004-02-03 2010-11-02 S.C. Johnson & Son, Inc. Active material and light emitting device
US20050169666A1 (en) * 2004-02-03 2005-08-04 Jose Porchia Device providing coordinated emission of light and volatile active
US20060115386A1 (en) * 2004-02-03 2006-06-01 Michaels Kenneth W Active material and light emitting device
US20060120080A1 (en) * 2004-02-03 2006-06-08 Gene Sipinski Control and an integrated circuit for a multisensory apparatus
US20080035765A1 (en) * 2004-04-20 2008-02-14 Xerox Corporation Environmental system including a micromechanical dispensing device
US7389943B2 (en) 2004-06-30 2008-06-24 S.C. Johnson & Son, Inc. Electromechanical apparatus for dispensing volatile substances with single dispensing mechanism and cartridge for holding multiple receptacles
US20110168745A1 (en) * 2004-07-28 2011-07-14 Reckitt Benckiser (Uk) Limited Spraying Apparatus and Method of Using the Same
US8328122B2 (en) * 2004-07-28 2012-12-11 Reckitt Benckiser (Uk) Limited Spraying apparatus and method of using the same
US8079362B2 (en) 2004-09-20 2011-12-20 Trudell Medical International Method for displaying dosage indicia
US20100243674A1 (en) * 2004-10-12 2010-09-30 Furner Paul E Compact Spray Device
US7954667B2 (en) 2004-10-12 2011-06-07 S.C. Johnson & Son, Inc. Compact spray device
US8342363B2 (en) 2004-10-12 2013-01-01 S.C. Johnson & Son, Inc. Compact spray device
US20120061420A1 (en) * 2004-10-12 2012-03-15 Furner Paul E Compact Spray Device
US10011419B2 (en) 2004-10-12 2018-07-03 S. C. Johnson & Son, Inc. Compact spray device
US20060076366A1 (en) * 2004-10-12 2006-04-13 Furner Paul E Compact spray device
US8091734B2 (en) * 2004-10-12 2012-01-10 S.C. Johnson & Son, Inc. Compact spray device
US20100243673A1 (en) * 2004-10-12 2010-09-30 Furner Paul E Compact Spray Device
US8678233B2 (en) * 2004-10-12 2014-03-25 S.C. Johnson & Son, Inc. Compact spray device
US9457951B2 (en) 2004-10-12 2016-10-04 S. C. Johnson & Son, Inc. Compact spray device
US7837065B2 (en) 2004-10-12 2010-11-23 S.C. Johnson & Son, Inc. Compact spray device
US8061562B2 (en) 2004-10-12 2011-11-22 S.C. Johnson & Son, Inc. Compact spray device
US8887954B2 (en) 2004-10-12 2014-11-18 S.C. Johnson & Son, Inc. Compact spray device
US20070272715A1 (en) * 2005-01-10 2007-11-29 Simon Sassoon Controllable door handle sanitizer system and method
US7360674B2 (en) * 2005-01-10 2008-04-22 Simon Sassoon Controllable door handle sanitizer system and method
US20080023497A1 (en) * 2005-01-10 2008-01-31 Hyso Technology Llc Elongated nozzle configured for use with automated dispensers such as door handle sprayers and the like
US20060153733A1 (en) * 2005-01-10 2006-07-13 Simon Sassoon Door handle sanitizer system and apparatus
US9656032B2 (en) 2005-01-20 2017-05-23 Trudell Medical International Dispensing device
US8973784B2 (en) 2005-01-20 2015-03-10 Trudell Medical International Dispensing device
US7886934B2 (en) 2005-01-20 2011-02-15 Trudell Medical International Dispensing device
US20060180606A1 (en) * 2005-01-20 2006-08-17 Winston Lu Dispensing device
US20060175345A1 (en) * 2005-01-20 2006-08-10 Winston Lu Dispensing device
US7743945B2 (en) 2005-01-20 2010-06-29 Trudell Medical International Dispensing device
US20080142555A1 (en) * 2005-04-28 2008-06-19 Persee Medica Device for Applying a Fluid to an Area to be Treated, Comprising a Timing System
US9265901B2 (en) 2006-08-01 2016-02-23 Trudell Medical International Dispensing device
US10950149B2 (en) 2006-08-01 2021-03-16 Trudell Medical International Dispensing device
US20080029085A1 (en) * 2006-08-01 2008-02-07 Greg Lawrence Dispensing device
US8141550B2 (en) 2006-08-01 2012-03-27 Trudell Medical International Dispensing device
US20080184614A1 (en) * 2006-10-02 2008-08-07 Higbee Bradley Apparatus and systems for using semiochemical compositions for insect pest control
US8381329B2 (en) 2006-10-24 2013-02-26 Bradley Fixtures Corporation Capacitive sensing for washroom fixture
US9328490B2 (en) 2006-10-24 2016-05-03 Bradley Fixtures Corporation Capacitive sensing for washroom fixture
US20080109956A1 (en) * 2006-10-24 2008-05-15 Bradley Fixtures Corporation Capacitive sensing for washroom fixture
US8590743B2 (en) * 2007-05-10 2013-11-26 S.C. Johnson & Son, Inc. Actuator cap for a spray device
US20080277411A1 (en) * 2007-05-10 2008-11-13 Rene Maurice Beland Actuator cap for a spray device
US8746504B2 (en) 2007-05-10 2014-06-10 S.C. Johnson & Son, Inc. Actuator cap for a spray device
US20080290113A1 (en) * 2007-05-25 2008-11-27 Helf Thomas A Actuator cap for a spray device
US20080290120A1 (en) * 2007-05-25 2008-11-27 Helf Thomas A Actuator cap for a spray device
US20080315005A1 (en) * 2007-06-25 2008-12-25 Michaels Kenneth W Active material emitting device and method of dispensing an active material
US8381951B2 (en) 2007-08-16 2013-02-26 S.C. Johnson & Son, Inc. Overcap for a spray device
US8469244B2 (en) 2007-08-16 2013-06-25 S.C. Johnson & Son, Inc. Overcap and system for spraying a fluid
US8556122B2 (en) 2007-08-16 2013-10-15 S.C. Johnson & Son, Inc. Apparatus for control of a volatile material dispenser
US20090045218A1 (en) * 2007-08-16 2009-02-19 Helf Thomas A Overcap for a spray device
US20090045220A1 (en) * 2007-08-16 2009-02-19 Helf Thomas A Apparatus for control of a volatile material dispenser
US9061821B2 (en) 2007-08-16 2015-06-23 S.C. Johnson & Son, Inc. Apparatus for control of a volatile material dispenser
US20090045219A1 (en) * 2007-08-16 2009-02-19 Helf Thomas A Overcap and system for spraying a fluid
US7648127B2 (en) 2008-01-18 2010-01-19 Georgia-Pacific Consumer Products Lp Air freshener device and methods for controlling an amount of evaporated scented material emitted from the air freshener device
US9089622B2 (en) 2008-03-24 2015-07-28 S.C. Johnson & Son, Inc. Volatile material dispenser
US8387827B2 (en) 2008-03-24 2013-03-05 S.C. Johnson & Son, Inc. Volatile material dispenser
US20090272312A1 (en) * 2008-05-05 2009-11-05 Michael Nuttall Drive mechanism for an indicating device
US8082873B2 (en) 2008-05-05 2011-12-27 Trudell Medical International Drive mechanism for an indicating device
US20110095050A1 (en) * 2008-05-05 2011-04-28 Hans Georg Hagleitner Dispenser
US8181591B1 (en) 2008-05-23 2012-05-22 Trudell Medical International Domed actuator for indicating device
US20100025427A1 (en) * 2008-07-25 2010-02-04 Technical Concepts Llc Dual substance dispenser
US7798424B2 (en) * 2008-08-15 2010-09-21 Po-Hui Lin Automatic air freshener spraying device
US20100038452A1 (en) * 2008-08-15 2010-02-18 Po-Hui Lin Automatic air freshener spraying device
US7878371B2 (en) 2008-09-04 2011-02-01 Hyso Technology Llc Controllable door handle sanitizer
US20100059602A1 (en) * 2008-09-09 2010-03-11 Technical Concepts, Llc Substance dispenser
US8596265B2 (en) 2008-10-22 2013-12-03 Trudell Medical International Modular aerosol delivery system
US9032953B2 (en) 2008-10-22 2015-05-19 Trudell Medical International Modular aerosol delivery system
US9242057B2 (en) 2008-10-22 2016-01-26 Trudell Medical International Modular aerosol delivery system
US20100101570A1 (en) * 2008-10-22 2010-04-29 Adam Meyer Modular aerosol delivery system
US8668115B2 (en) 2009-10-26 2014-03-11 S.C. Johnson & Son, Inc. Functional operation and timing control improvements for dispensers
US8459499B2 (en) 2009-10-26 2013-06-11 S.C. Johnson & Son, Inc. Dispensers and functional operation and timing control improvements for dispensers
USD632773S1 (en) 2009-10-30 2011-02-15 S.C. Johnson & Son, Inc. Air fragrance housing
USD632771S1 (en) 2009-10-30 2011-02-15 S.C. Johnson & Son, Inc. Air fragrance housing
USD633190S1 (en) 2009-10-30 2011-02-22 S.C. Johnson & Son, Inc. Air fragrance housing
USD632772S1 (en) 2009-10-30 2011-02-15 S.C. Johnson & Son, Inc. Air fragrance housing
US8857662B2 (en) 2010-10-29 2014-10-14 S.C. Johnson & Son, Inc. Dispensers and functional operation and timing control improvements for dispensers
US8464905B2 (en) 2010-10-29 2013-06-18 S.C. Johnson & Son, Inc. Dispensers and functional operation and timing control improvements for dispensers
US9044522B2 (en) 2011-09-19 2015-06-02 S.C. Johnson & Son, Inc. Spray dispenser
US8881945B2 (en) 2011-09-19 2014-11-11 S.C. Johnson & Son, Inc. Spray dispenser
USD679793S1 (en) 2012-01-25 2013-04-09 S. C. Johnson & Son, Inc. Dispenser shroud
US9108782B2 (en) * 2012-10-15 2015-08-18 S.C. Johnson & Son, Inc. Dispensing systems with improved sensing capabilities
US20140103479A1 (en) * 2012-10-15 2014-04-17 Tai P. Luc Dispensing Systems with Improved Sensing Capabilities
US8807390B2 (en) 2012-10-23 2014-08-19 S.C. Johnson & Son, Inc. Indication sequence for energy efficient volatile material dispensers
US20150083755A1 (en) * 2013-09-26 2015-03-26 Alex Mecker Dispensing System with Bracket
US10537654B2 (en) 2014-04-18 2020-01-21 Todd H. Becker Pest control system and method
US10258713B2 (en) 2014-04-18 2019-04-16 Todd H. Becker Method and system of controlling scent diffusion with a network gateway device
US10258712B2 (en) 2014-04-18 2019-04-16 Todd H. Becker Method and system of diffusing scent complementary to a service
US10603400B2 (en) 2014-04-18 2020-03-31 Scentbridge Holdings, Llc Method and system of sensor feedback for a scent diffusion device
US10695454B2 (en) 2014-04-18 2020-06-30 Scentbridge Holdings, Llc Method and system of sensor feedback for a scent diffusion device
US10220109B2 (en) 2014-04-18 2019-03-05 Todd H. Becker Pest control system and method
US11129917B2 (en) 2014-04-18 2021-09-28 Scentbridge Holdings, Llc Method and system of sensor feedback for a scent diffusion device
US11648330B2 (en) 2014-04-18 2023-05-16 Scentbridge Holdings, Llc Method and system of sensor feedback for a scent diffusion device
US11813378B2 (en) 2014-04-18 2023-11-14 Scentbridge Holdings, Llc Method and system of sensor feedback for a scent diffusion device
US10814028B2 (en) 2016-08-03 2020-10-27 Scentbridge Holdings, Llc Method and system of a networked scent diffusion device
CN112154380A (en) * 2018-07-09 2020-12-29 天梭股份有限公司 Watch equipped with a rotary bezel comprising a bezel locking system with integrated helium valve

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