Combination electronic device dock and dissinfector
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
G01N-021/33
A61L-002/00
H02J-001/00
H04M-001/00
A61L-002/10
A61L-002/20
H02J-007/00
출원번호
US-0101721
(2013-12-10)
등록번호
US-8977796
(2015-03-10)
발명자
/ 주소
Engelhardt, David G.
Saimond, William A.
출원인 / 주소
Readydock, Inc.
대리인 / 주소
McCarter & English, LLP
인용정보
피인용 횟수 :
2인용 특허 :
16
초록▼
Disclosed is a disinfecting docking station for at least one portable electronic device, such as a medical technician's tablet computer, that has at least one recharging connector. An enclosure is adapted to receive the at least one portable electronic device therein through an openable side that in
Disclosed is a disinfecting docking station for at least one portable electronic device, such as a medical technician's tablet computer, that has at least one recharging connector. An enclosure is adapted to receive the at least one portable electronic device therein through an openable side that includes a selectively closable door. Each electronic device is exposed to a disinfecting wavelength of light, such as UV light, to disinfect the surface of the device. The enclosure includes supports that minimally contact each device so that the device will be substantially exposed to the UV light. A control circuit monitors the exposure time and level, and is programmable to activate the UV light based on pre-set criteria. The enclosures may be stacked and provide power and network connectivity to each device while docked therein.
대표청구항▼
1. A disinfecting docking station for at least one portable electronic device having at least one recharging connector, comprising: a substantially opaque enclosure adapted to receive at least one portable electronic device therein through at least one openable side, the enclosure further including
1. A disinfecting docking station for at least one portable electronic device having at least one recharging connector, comprising: a substantially opaque enclosure adapted to receive at least one portable electronic device therein through at least one openable side, the enclosure further including means for selectively sealing the at least one openable side;means for recharging the at least one portable electronic device through a recharging connector thereof;at least one means for supporting the at least one portable electronic device; andat least one ultraviolet light source adapted to produce disinfecting wavelengths of light only when the means for selectively sealing is in a closed position;whereby, with the at least one portable electronic device supported by the at least one means for supporting within the enclosure and with the means for selectively sealing in the closed position, the at least one ultraviolet light source is activatable to produce disinfecting wavelengths of light, illuminating substantially each surface of the at least one portable electronic device for a predetermined period of time. 2. The disinfecting docking station of claim 1, wherein the means for recharging includes a connector adapted to electrically communicate with the recharging connector of the at least one portable electronic device, the connector being connected with a power source. 3. The disinfecting docking station of claim 1, wherein the at least one means for supporting includes at least one shelf surface substantially non-obstructive to the disinfecting wavelengths of light. 4. The disinfecting docking station of claim 1, wherein the at least one means for supporting further includes at least one reflective surface adapted to reflect at least a portion of the disinfecting wavelengths of light into a crevice of the at least one portable electronic device. 5. The disinfecting docking station of claim 1, further including a control circuit electrically connected with a power source, a user interface disposed on an outside surface of the enclosure, a switch for detecting when the means for selectively sealing is in the closed position, and adapted to activate the ultraviolet light source, the control circuit including a timer, adapted to activate the ultraviolet light source for a predetermined period of time upon activation by the user interface, only when the switch indicates that the means for selectively sealing is in the closed position. 6. The disinfecting docking station of claim 5, wherein the control circuit is adapted to illuminate the at least one portable electronic device with the disinfecting wavelengths of light according to selections made at the user interface. 7. The disinfecting docking station of claim 1, wherein the means for selectively sealing includes the at least one means for supporting. 8. The disinfecting docking station of claim 1, further comprising a daisy chain connector fixed with the enclosure such that a plurality of enclosures can be stacked, each enclosure connecting with the daisy chain connector of an adjacent enclosure. 9. A disinfecting docking station for at least one portable electronic device having at least one recharging connector, comprising: a substantially opaque enclosure adapted to receive at least one portable electronic device therein through at least one openable side, the enclosure further including at least one door for selectively sealing the at least one openable side;at least one connector adapted to electrically communicate with the at least one portable electronic device through the recharging connector thereof;at least one shelf surface adapted to at least partially support the at least one portable electronic device; andat least one ultraviolet light source adapted to produce disinfecting wavelengths of light only when the at least one door is in a closed position;whereby, with the at least one portable electronic device supported by the at least one shelf surface within the enclosure, and the at least one door in the closed position, the at least one ultraviolet light source is activatable to produce the disinfecting wavelengths of light, illuminating substantially each surface of the at least one portable electronic device for a predetermined period of time. 10. The disinfecting docking station of claim 9, wherein the at least one shelf surface further includes at least one reflective surface adapted to reflect at least a portion of the disinfecting wavelengths of light into a crevice of the at least one portable electronic device. 11. The disinfecting docking station of claim 9, wherein the at least one door includes the at least one shelf surface, and is pivotably attached with the enclosure at an end thereof. 12. The disinfecting docking station of claim 9, further including a network switch adapted to provide network connectivity to the at least one portable electronic device. 13. The disinfecting docking station of claim 9, wherein the at least one shelf surface is adapted to substantially permit transmission of the disinfecting wavelengths of light therethrough and, in turn, to the at least one portable electronic device. 14. A method comprising the following steps: receiving at least one portable electronic device having at least one recharging connector within a disinfecting docking station comprising a substantially opaque enclosure, at least one connector adapted to electrically communicate with the at least one portable electronic device through the recharging connector thereof;illuminating substantially each surface of the at least one portable electronic device within the docking station with disinfecting wavelengths of light, and, in turn, disinfecting the at least one portable device; andrecharging the at least one portable electronic device via the at least one connector. 15. A method as defined in claim 14, wherein the at least one connector is connected to a power source and the receiving step further comprises connecting the at least one recharging connector to said at least one connector. 16. A method as defined in claim 14, wherein the connector is at least partially transparent to the disinfecting wavelengths of light, and the illuminating step includes transmitting at least some of the disinfecting wavelengths of light through the connector and to substantially all surfaces of the at least one recharging connector. 17. A method as defined in claim 14, wherein the enclosure includes at least one openable side and at least one door for selectively sealing the at least one openable side, and the receiving step comprises inserting the at least one portable electronic device within the enclosure, and moving the at least one door into a closed position, sealingly closing the enclosure. 18. A method as defined in claim 17, performing the illuminating step when the at least one door is in the closed position. 19. A method as defined in claim 14, wherein the illuminating step comprises producing the disinfecting wavelengths of light with an ultraviolet light source, and illuminating substantially each surface for a predetermined period of time. 20. A method as defined in claim 14, wherein the docking station further comprises at least one shelf surface substantially transparent to the disinfecting wavelengths of light, the receiving step includes supporting the at least one portable electronic device with the at least one shelf surface, and the illuminating step includes substantially transmitting the disinfecting wavelengths of light through the at least one shelf surface and, in turn, substantially illuminating a surface of the at least one portable electronic device contacting the at least one shelf surface.
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이 특허에 인용된 특허 (16)
Notarianni John (Massapequa NY) Cohen Jerry (Plainview NY) D\Ambrosio John P. (Bayport NY), Apparatus for transferring data between a host device and portable computers of various sizes and for recharging the bat.
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Endejan Edward B. (St. Joseph MI) Manning Richard S. (Hartford MI) Sparling Larry A. (Grand Haven MI) Wagner John P. (Round Rock TX), Enhanced active port replicator having expansion and upgrade capabilities.
Kamimaki, Hideki; Inagaki, Yukihide; Nakagawa, Tsuyoshi; Kimura, Koichi; Gemma, Hideaki; Kawaguchi, Hitoshi, Information processing unit and information processing related units.
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