LI-USB30-OV2311-125H

Leopard Imaging
931-LI-USB30-OV2311
LI-USB30-OV2311-125H

제조업체:

설명:
카메라 개발 도구 OmniVision OV2311 CMOS 2MP Image SensorActive Pixels:1600H x 1300VFocusing Range: 50cm to InfinityOptical Format: 1/2.9 (Default Firmware)

구매 가능 정보

재고:
0

이 제품을 이월 주문으로 여전히 구매하실 수 있습니다.

최소: 1   배수: 1
단가:
₩-
합계:
₩-
예상 관세:
본 제품의 배송비는 무료

가격 (KRW)

수량 단가
합계
₩421,940 ₩421,940

제품 속성 속성 값 속성 선택
Leopard Imaging
제품 카테고리: 카메라 개발 도구
Development Kits
Camera
OV2311
USB
5 V
0 C
+ 50 C
브랜드: Leopard Imaging
치수: 26 mm x 26 mm x 20 mm
제품 유형: Camera Development Tools
팩토리 팩 수량: 1
하위 범주: Development Tools
단위 중량: 154.890 g
제품을 찾음:
유사 제품을 표시하려면 확인란을 하나 이상 선택하십시오.
이 카테고리에 유사 제품을 표시하려면 확인란을 하나 이상 선택하십시오.
속성 선택됨: 0

                        
Product will have default firmware unless specified. Please
review the following conditions if applicable to your products
firmware.

For USB3.0 and USB2.0 cameras, the supplier will need to flash
the firmware and/or FPGA binary.

Cameras with built-in ISP (except for the AR0234-YUV), the
supplier will need to flash the ISP binary to camera.
For all the MIPI adapters with FPGA for Jetson, supplier will
need to flash the FPGA binary.

For all the Jetson boxes or carrier board with SOM, supplier
will need to flash the OS image and install the driver.

Please contact a Mouser Technical Support Representative for
further assistance.

5-0725-1

CNHTS:
8543709990
USHTS:
8525894000
ECCN:
EAR99

LI-USB30-OV2311-125H Development Kit

Leopard Imaging LI-USB30-OV2311-125H Development Kit is designed to evaluate the OV2311 image sensor. This development kit features USB 3.0 super speed support, 10-bit RAW data output without compression, a monochrome sensor, and a global shutter. The LI-USB30-OV2311-125H kit supports the register access function and provides customization services. This development kit operates at a 5V power supply voltage and 0°C to 50°C temperature range. The LI-USB30-OV2311-125H development kit is available in 26mm x 26mm x 20mm dimensions. This kit is ideally used in scientific cameras and machine vision.