-
公开(公告)号:US20240137651A1
公开(公告)日:2024-04-25
申请号:US18049357
申请日:2022-10-24
CPC分类号: H04N5/23299 , G06F1/1605 , G06F2200/1637
摘要: An electronic device includes a housing, a camera system, one or more display devices, and one or more processors. The one or more display devices are coupled to the housing and configurable in multiple different orientations relative to the housing. The one or more processors determine a current orientation of the one or more display devices relative to the housing, and determine an effective field of view (FOV) of a surrounding environment based on the current orientation of the one or more display devices. The one or more processors perform image analysis on a set of image data generated by the camera system. The set of image data is limited to the effective FOV.
-
公开(公告)号:US20240129632A1
公开(公告)日:2024-04-18
申请号:US17968768
申请日:2022-10-18
发明人: Yu-Hsin Liu , Cheng-Hsiang Lu , Daisuke Sasaki
CPC分类号: H04N5/23299 , B25J19/021 , G06T1/0014 , G06T7/0004 , H04N5/2253 , H04N5/2256 , G06T2207/30148
摘要: A wafer position status inspection apparatus includes a wafer transportation device, a robotic arm rotatably mounted on the wafer transportation device, an image capture device arranged on the robotic arm, a light flashing device arranged at one side of the image capture device, and a status inspection section in information connection with the image capture device. An image capturing direction of the image capture device is set consistent with a gripping direction of the robotic arm, and a light projecting direction of the light flashing device is consistent with the image capturing direction. The light flashing device projects light on a wafer to generate a light-reflecting contour, which is captured by the image capture device to form a wafer contour image based on which the status inspection section acquires a wafer deposition status to identify various wafer statuses including incline, overlap, absence, and warp.
-
公开(公告)号:US20240048848A1
公开(公告)日:2024-02-08
申请号:US17816778
申请日:2022-08-02
发明人: Tai Wai David CHIK , Chi Shing WONG
CPC分类号: H04N5/23299 , G01N21/9515 , G01N21/8851 , G06T7/75 , G01N2021/8887 , G01N2201/1296
摘要: A movable camera travels along an inspection path for optically inspecting an inspection surface of an object for defect detection. In planning the inspection path, a set of viewpoints on the inspection surface is generated. Each viewpoint is associated with a patch, which is a largest area of the inspection surface within a field of view (FOV) of the camera when the camera is located over the viewpoint for capturing an image of FOV. An effective region of the patch is advantageously predicted by a neural network according to a three-dimensional geometric characterization of the patch such that the predicted effective region is valid for defect detection based on the captured image. A valid area is one whose corresponding area on the captured image is not blurred and is neither underexposed nor overexposed. The inspection path is determined according to respective effective regions associated with the set of viewpoints.
-
公开(公告)号:US20230379585A1
公开(公告)日:2023-11-23
申请号:US17748192
申请日:2022-05-19
发明人: Yow Wei Cheng , Kuanlin Li , Ling I. Hung
CPC分类号: H04N5/23299 , H04N5/23206 , G06T1/0035
摘要: The present specification describes examples of a computing device for reducing camera bus channels and bandwidth. The example computing device includes a plurality of tracking cameras to capture a plurality of tracking images. The computing device also includes a processor to receive the plurality of tracking images captured by the plurality of tracking cameras. The processor is to combine the plurality of tracking images into a carrier image. The computing device also includes a camera bus to transmit the carrier image.
-
5.
公开(公告)号:US20230319415A1
公开(公告)日:2023-10-05
申请号:US17711842
申请日:2022-04-01
CPC分类号: H04N5/23299 , G06V20/52 , H04N5/23218 , G06T7/20 , H04N5/23296 , G06V20/44 , G01P13/00 , G06T2207/30232 , G06T2207/30201 , G06T2207/30236 , G06T2207/10016
摘要: A method for controlling a PTZ camera having a controllable FOV includes detecting a first detection event by a first detector located at a first location that is along a first path in a monitored region. In response to the first detection event, the PTZ camera is automatically controlled such that the FOV of the PTZ camera includes at least part of the first detection region along the first path in the monitored region. A second detection event is detected by a second detector located at a second location that is along the first path in the monitored region, wherein the second location is spaced from the first location. In response to the second detection event, the PTZ camera is automatically controlled such that the FOV of the PTZ camera includes at least part of the second detection region along the first path in the monitored region.
-
公开(公告)号:US20230306743A1
公开(公告)日:2023-09-28
申请号:US17850762
申请日:2022-06-27
申请人: GOODRICH CORPORATION
IPC分类号: G06V20/52 , H04N7/18 , G06V10/764 , H04N5/232 , G06V10/82 , H04N5/77 , G06V10/26 , G08B13/00 , B64D47/08
CPC分类号: G06V20/52 , H04N7/188 , H04N7/183 , G06V10/764 , H04N5/23299 , G06V10/82 , H04N5/77 , G06V10/26 , G08B13/00 , B64D47/08 , B64C1/20
摘要: A method for monitoring an aircraft cargo bay using an aircraft interface device may comprise receiving image data of a cargo bay of an aircraft. The method may further comprise detecting movement in the cargo bay, directing a camera to activate in response to that movement, and processing the captured image data. The aircraft interface device may include pre-trained neural network based algorithms configured for event classification. The method may further comprise generating an alarm based on a theft event classification and transmitting the alarm to an aircraft.
-
公开(公告)号:US20230301277A1
公开(公告)日:2023-09-28
申请号:US17656867
申请日:2022-03-28
申请人: Pumpkii Inc.
发明人: Hao SHEN
IPC分类号: A01K29/00 , B25J11/00 , B25J19/02 , B25J9/00 , B25J9/16 , B25J5/00 , H04N5/232 , G06V10/25 , G06V40/10 , G06T7/50 , G06T7/60 , G06T7/70
CPC分类号: A01K29/005 , B25J11/008 , B25J19/023 , B25J9/0009 , B25J9/161 , B25J9/1689 , B25J5/007 , H04N5/23299 , G06V10/25 , G06V40/10 , G06T7/50 , G06T7/60 , G06T7/70 , G06T2207/10028 , G06T2207/30252
摘要: A method for depth of field tracking and controlling of a pet companion robot device to interact with a pet includes the steps of: locating a target pet within a field of view of the camera; drawing a minimum target rectangle around the target pet, with sides of the minimum target rectangle parallel with the corresponding sides of the field of view of the camera; locating a center point P of the minimum target rectangle. When P is located in quadrangles I and II, adjusting the pet companion robot device to the right to make P overlap with the vertical center line of the field of view of the camera; and when P is located in quadrangles III and IV, adjusting the pet companion robot device to the left to make P overlap with the vertical center line of the field of view of the camera.
-
公开(公告)号:US20230283876A1
公开(公告)日:2023-09-07
申请号:US17958564
申请日:2022-10-03
发明人: Byung In YOO , Youngjun KWAK , Sungyoul PARK , Solae LEE , Hana LEE , Jiho CHOI
IPC分类号: H04N5/232
CPC分类号: H04N5/23218 , H04N5/23299 , H04N5/23296
摘要: A device and method with object recognition is included. In one general aspect, an electronic device includes a camera sensor configured to capture a first image of a scene, the camera sensor is configured to perform at least one type of physical camera motion relative to the electronic device, the at least one type of physical camera motion includes rolling, panning, tilting, or zooming the camera sensor relative to the electronic device, and a processor configured to control the camera sensor to perform a physical motion of the physical camera motion type based on detecting an object in the first image, acquire a second image captured using the camera sensor as adjusted based on the performed physical motion, and recognize the object in the second image.
-
公开(公告)号:US20230255479A1
公开(公告)日:2023-08-17
申请号:US17671496
申请日:2022-02-14
申请人: ViaLase, Inc.
发明人: Guy Holland , Tibor Juhasz , Wesley W. Lummis , Eric R. Mikula , Ferenc Raksi , Manu Sharma , Hadi Srass , Carlos G. Suarez
CPC分类号: A61B3/14 , H04N5/232125 , H04N5/23299 , H04N5/2256
摘要: A system for imaging a region of an eye includes a laser source that outputs a laser beam; a first optical subsystem that couples to the eye; a focusing objective coupled with the first optical subsystem and the laser source; a visualization system having a depth of field and a field of view; a movement subsystem that moves the focusing objective and the visualization system; and a control system that controls the movement subsystem and the visualization system to: place the depth of field and the field of view at respective positions relative to a target volume so the volume is within the depth of field and the field of view, obtain an image of the region of the eye, and maintain the position of the field of view of the visualization system relative to the target volume during movement of a laser focus through the target volume.
-
公开(公告)号:US20230247310A1
公开(公告)日:2023-08-03
申请号:US17592277
申请日:2022-02-03
发明人: G. Balasubramaniyam
CPC分类号: H04N5/247 , H04N5/23299 , H04N5/23238
摘要: Our present invention relates to a 180 degrees wide angle multi-camera system with the following unique features. The cameras are placed diagonally and facing inwards (100, 101, 102). The cameras are rotated 90 degrees around their optical axes to provide higher FOV for a wider view (302). In the illustrated embodiment of our invention, three cameras are placed in an inward position at particular angles to each other (105) to reduce the blind spot, parallax error and closer working distance. The multiple cameras are placed in an inward position and to avoid the adjacent camera in preview, each camera is placed diagonally. The inward position ensures the high horizontal FOV (202). The illustrated embodiment of our invention can be used in high Horizontal FOV and high Vertical FOV required applications.
-
-
-
-
-
-
-
-
-