IP Library Granted Patent US 11,353,556
Granted Patent B2
US 11,353,556 · App. 16/209,879 · Granted Jun 7, 2022

Light ranging device with a multi-element bulk lens system

Inventors: Angus Pacala (San Francisco, CA); Mark Frichtl (San Francisco, CA); Marvin Shu (Daly City, CA); Eric Younge (Portola Valley, CA)
Assignee: Ouster, Inc.
G01S7/4813B60L3/0015G01S7/486G01S7/4814G01S7/4816G01S7/4817G01S7/4863G01S7/497G01S17/10G01S17/42G01S17/89G01S17/931G02B3/0006H01F38/14H01S5/146H02J7/025H04B10/1143H05K1/0274H05K1/144H05K1/181H05K5/0004G05D1/0231H02J50/10H02K11/0094H05K2201/042H05K2201/09027H05K2201/1009H05K2201/10121H05K2201/10151H05K2201/10409
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Quick Facts
Patent No.
US 11,353,556
App. No.
16/209,879
Granted
Jun 7, 2022
Kind
B2
Abstract

An image sensing device that includes a lens housing; a bulk lens system coupled to the lens housing and configured to receive light from the surrounding environment and focus the received light to a focal plane, the bulk lens system comprising a first lens, a second lens, and a third lens mounted in the lens housing; wherein the first lens, the second lens, or the first lens and the second lens are plastic; and wherein the third lens is glass; an array of photosensors configured to receive light from the bulk lens system and detect reflected portions of the light pulses that are reflected from the objects in the surrounding environment; and a mount that mechanically couples the lens housing with the array of photosensors, wherein the lens housing, the bulk lens system, and the mount are configured to passively focus light from the bulk lens system onto the array of photosensors over a temperature range.

Claims (43)

1. A light ranging system comprising:

an enclosure having an optically transparent window;

a light ranging device disposed within the enclosure, the light ranging device including:

an optical transmitter comprising a bulk transmitter lens system and a plurality of transmitter channels, each channel including a light emitter configured to generate and transmit pulses of narrowband light through the bulk transmitter optic and through the optically transparent window into a field external to the light ranging system; and

an optical receiver comprising a bulk receiver lens system, a lens housing and a plurality of micro-optic receiver channels, each micro-optic channel including an aperture coincident with a focal plane of the bulk receiver optic, a collimating lens behind the aperture, an optical filter behind the collimating lens and a photosensor responsive to incident photons passed through the aperture into the collimating lens and through the filter;

wherein the bulk receiver lens system comprises a first lens, a second lens, and a third lens mounted in the lens housing; the first lens, the second lens, or the first lens and the second lens are plastic; the third lens is glass; and a coefficient of thermal expansion (CTE) of the lens housing is matched, over a temperature range, with the bulk receiver lens system so that the focal plane is stable relative to each photosensor in the plurality of micro-optic receiver channels over the temperature range; and

circuitry configured to compute ranging data based on the photons received at the photosensor.

2. The light ranging system of claim 1 wherein the temperature range is from −5 degrees C. to 70 degrees C.

3. The light ranging system of claim 1 wherein the bulk transmitter lens system is an image-space telecentric lens system and the bulk receiver lens system is an image-space telecentric lens system.

4. An image sensing device comprising:

a lens housing;

a bulk lens system mechanically coupled to the lens housing and configured to focus light to a focal plane, the bulk lens system comprising a first lens, a second lens, and a third lens mounted in the lens housing; wherein the first lens, the second lens, or the first lens and the second lens are plastic; and wherein the third lens is glass;

an array of photosensors configured to receive light from the bulk lens system; and

a mount that mechanically couples the lens housing with the array of photosensors, wherein a coefficient of thermal expansion (CTE) of the lens housing is matched, over a temperature range of at least 20 degrees C. to 70 degrees C., with the bulk lens system so that the focal plane is stable relative to the array of photosensors over the temperature range;

wherein a CTE of the mount is matched with the CTE of the lens housing.

5. The image sensing device of claim 4 further comprising circuitry configured to compute ranging data based on reflected portions of light pulses detected by the array of photosensors.

6. The image sensing device of claim 4 wherein the temperature range is from −5 degrees C. to 70 degrees C.

7. The image sensing device of claim 4 wherein the bulk lens system is an image-space telecentric lens system.

8. The image sensing device of claim 4 further comprising a temperature sensor and a heating element operatively coupled to heat the bulk lens system in response to the temperature sensor.

9. The image sensing device of claim 4 wherein the third lens is spherical and has a width equal to or less than 18 mm and equal to or greater than 5 mm.

10. The image sensing device of claim 4 wherein the lens system has an f-number equal to or less than 2.4 and equal to or greater than 0.7.

11. An image sensing device comprising:

a lens housing;

a bulk lens system mechanically coupled to the lens housing and configured to focus light to a focal plane, the bulk lens system comprising a first lens, a second lens, and a third lens mounted in the lens housing; wherein the first lens, the second lens, or the first lens and the second lens are plastic; and wherein the third lens is glass;

an array of photosensors configured to receive light from the bulk lens system; and

a mount that mechanically couples the lens housing with the array of photosensors, wherein a coefficient of thermal expansion (CTE) of the lens housing is matched, over a temperature range, with the bulk lens system so that the focal plane is stable relative to the array of photosensors over the temperature range;

wherein the array of photosensors is planar and wherein the image sensing further comprises a micro-optical channel for each photosensor in the array of photosensors, the micro-optical channel including an aperture layer positioned at the focal plane, a micro-lens layer and a filter layer.

12. An image sensing device comprising:

a lens housing;

a bulk lens system mechanically coupled to the lens housing and configured to focus light to a focal plane, the bulk lens system comprising a first lens, a second lens, and a third lens mounted in the lens housing; wherein the first lens, the second lens, or the first lens and the second lens are plastic; and wherein the third lens is glass;

an array of photosensors configured to receive light from the bulk lens system; and

a mount that mechanically couples the lens housing with the array of photosensors, wherein a coefficient of thermal expansion (CTE) of the lens housing is matched, over a temperature range, with the bulk lens system so that the focal plane is stable relative to the array of photosensors over the temperature range;

wherein the lens system further comprises a fourth lens.

13. The image sensing device of claim 12 wherein the second lens and the fourth lens are the only lenses in the lens system with aspherical curvatures.

14. An image sensing device comprising:

a lens housing;

a bulk lens system mechanically coupled to the lens housing and configured to focus light to a focal plane, the bulk lens system comprising a first lens, a second lens, and a third lens mounted in the lens housing; wherein the first lens, the second lens, or the first lens and the second lens are plastic; and wherein the third lens is glass;

an array of photosensors configured to receive light from the bulk lens system; and

a mount that mechanically couples the lens housing with the array of photosensors, wherein a coefficient of thermal expansion (CTE) of the lens housing is matched, over a temperature range, with the bulk lens system so that the focal plane is stable relative to the array of photosensors over the temperature range;

wherein the lens housing comprises a first lens housing and a second lens housing having a same shape as the first lens housing, the bulk lens system is a first bulk lens system mounted in the first lens housing; and wherein the light ranging system further comprises:

a laser array disposed within the second lens housing; and

a second bulk lens system mounted in the second lens housing and having similar lenses as the first bulk lens system, the second bulk lens system being configured to disperse light from the laser array before the light is projected into the surrounding environment.

15. The image sensing device of claim 14 wherein the housing has a length between 10 mm and 60 mm and the first lens housing and the second lens housing are separated by no more than 2.5 cm.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Apr 28, 2022
From: SILICON VALLEY BANK
To: OUSTER, INC.
Reel/Frame 059763/0484 →
SECURITY INTEREST Recorded Mar 6, 2020
From: OUSTER, INC.
To: SILICON VALLEY BANK
Reel/Frame 052035/0339 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 11, 2018
From: PACALA, ANGUS; FRICHTL, MARK; SHU, MARVIN; YOUNGE, ERIC
To: OUSTER, INC.
Reel/Frame 047747/0389 →
Continuity (2)
Provisional Application 62596018 · Dec 7, 2017
Related Publication 20200041613A1 · Feb 6, 2020
Cited By (4)
US 12,200,183 US 12,320,926 US 12,470,840 US 12,644,992