Sensor holder for a sensor for object detection
원문보기
IPC분류정보
국가/구분
United States(US) Patent
등록
국제특허분류(IPC7판)
G01S-007/40
G01S-007/02
B60R-011/00
G01S-013/00
F16H-057/021
G01S-013/93
출원번호
US-0386197
(2013-01-21)
등록번호
US-9851432
(2017-12-26)
우선권정보
DE-10 2012 204 267 (2012-03-19)
국제출원번호
PCT/EP2013/051025
(2013-01-21)
국제공개번호
WO2013/139499
(2013-09-26)
발명자
/ 주소
Dihlmann, Matthias
출원인 / 주소
ROBERT BOSCH GMBH
대리인 / 주소
Norton Rose Fulbright US LLP
인용정보
피인용 횟수 :
0인용 특허 :
23
초록▼
A sensor holder for a sensor for object detection includes: an installation unit for the sensor; a holding frame on which the installation unit is pivotably held; and an adjustment shaft mounted on the holding frame, the adjustment shaft having a guidance contour which proceeds helically around the
A sensor holder for a sensor for object detection includes: an installation unit for the sensor; a holding frame on which the installation unit is pivotably held; and an adjustment shaft mounted on the holding frame, the adjustment shaft having a guidance contour which proceeds helically around the adjustment shaft and is in engagement with a guidance element of the installation unit.
대표청구항▼
1. A sensor holder for a sensor for object detection, comprising: an installation unit for the sensor;a holding frame on which the installation unit is pivotably held; andan adjustment shaft mounted on the holding frame, the adjustment shaft being aligned transversely to a pivot axis of the of the i
1. A sensor holder for a sensor for object detection, comprising: an installation unit for the sensor;a holding frame on which the installation unit is pivotably held; andan adjustment shaft mounted on the holding frame, the adjustment shaft being aligned transversely to a pivot axis of the of the installation unit and parallel to a principal radiating direction of the sensor, the adjustment shaft having a guidance contour which proceeds helically around the adjustment shaft and is in engagement with a guidance element of the installation unit,wherein the installation unit is held on the holding frame via pegs disposed on and aligned parallel to the pivot axis of the installation unit. 2. The sensor holder as recited in claim 1, wherein the holding frame has two coaxially disposed snap-in receptacles configured as rotary bearings that each have a hollow, cylindrical shape, are open on circumferential portions thereof, and respectively wrap around bearing portions of the adjustment shaft over a circumferential angle range of more than 180°, so that the bearing portions adapted to an inside diameter of the snap-in receptacles are held in snap-locked fashion in the snap-in receptacles. 3. The sensor holder as recited in claim 2, wherein the circumferential portions face toward the installation unit. 4. The sensor holder as recited in claim 2, wherein an axial position of the adjustment shaft is defined by at least one circumferential projection of the adjustment shaft with respect to the holding frame. 5. The sensor holder as recited in claim 4, wherein the adjustment shaft is configured as an integral plastic part. 6. The sensor holder as recited in claim 1, wherein at least two of the pegs are shaped onto the installation unit. 7. A sensor holder for a sensor for object detection, comprising: an installation unit for the sensor;a holding frame on which the installation unit is pivotably held; andan adjustment shaft mounted on the holding frame, the adjustment shaft being aligned transversely to a pivot axis of the of the installation unit and parallel to a principal radiating direction of the sensor, the adjustment shaft having a guidance contour which proceeds helically around the adjustment shaft and is in engagement with a guidance element of the installation unit,wherein the holding frame has two coaxially disposed snap-in receptacles configured as rotary bearings that each have a hollow, cylindrical shape, are open on circumferential portions thereof, and respectively wrap around bearing portions of the adjustment shaft over a circumferential angle range of more than 180°, so that the bearing portions adapted to an inside diameter of the snap-in receptacles are held in snap-locked fashion in the snap-in receptacles, andwherein a center portion of the adjustment shaft encompasses the guidance contour, and said center portion is disposed between the bearing portions. 8. A sensor holder for a sensor for object detection, comprising: an installation unit for the sensor;a holding frame on which the installation unit is pivotably held; andan adjustment shaft mounted on the holding frame, the adjustment shaft having a guidance contour which proceeds helically around the adjustment shaft and is in engagement with a guidance element of the installation unit,wherein the holding frame has two coaxially disposed snap-in receptacles configured as rotary bearings that each have a hollow, cylindrical shape, are open on circumferential portions thereof, and respectively wrap around bearing portions of the adjustment shaft over a circumferential angle range of more than 180°, so that the bearing portions adapted to an inside diameter of the snap-in receptacles are held in snap-locked fashion in the snap-in receptacles. 9. The sensor holder as recited in claim 8, wherein the installation unit is held on the holding frame via pegs disposed on a pivot axis of the installation unit. 10. The sensor holder as recited in claim 8, wherein the circumferential portions face toward the installation unit. 11. The sensor holder as recited in claim 8, wherein an axial position of the adjustment shaft is defined by at least one circumferential projection of the adjustment shaft with respect to the holding frame. 12. The sensor holder as recited in claim 11, wherein the adjustment shaft is configured as an integral plastic part. 13. A sensor holder for a sensor for object detection, comprising: an installation unit for the sensor;a holding frame on which the installation unit is pivotably held; andan adjustment shaft mounted on the holding frame, the adjustment shaft having a guidance contour which proceeds helically around the adjustment shaft and is in engagement with a guidance element of the installation unit,wherein the holding frame has two coaxially disposed snap-in receptacles configured as rotary bearings that each have a hollow, cylindrical shape, are open on circumferential portions thereof, and respectively wrap around bearing portions of the adjustment shaft over a circumferential angle range of more than 180°, so that the bearing portions adapted to an inside diameter of the snap-in receptacles are held in snap-locked fashion in the snap-in receptacles,wherein a center portion of the adjustment shaft encompasses the guidance contour, and said center portion is disposed between the bearing portions.
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