9K 526kHz TDI line scan camera achieving overwhelming speed
■Features This is a super high-speed, high-sensitivity 9k TDI line scan camera equipped with GPixel's CMOS sensor GLT5009BSI. It has a horizontal resolution of 9072 pixels with a 5×5μm back-illuminated CMOS, capable of capturing images at a maximum of 526kHz when using CXP-12×4Lane output. With both 256-stage and 32-stage TDI transfer options, there is no need for expensive high-intensity lighting that requires cumbersome maintenance, allowing for a reduction in total costs. It is ideal for high-speed imaging in low-light conditions, inspection of large objects, and applications that require even higher speed and sensitivity than existing line scan cameras.
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basic information
【Features】 ■ High-speed, high-sensitivity monochrome TDI line scan camera ■ Horizontal resolution of 9072 pixels and 288 TDI transfer stages (256+32) ■ Maximum output of 526 kHz with CXP-12×4Lane connection ■ Lens mount options available: M58/M72 ■ CXP-12×4Lane (MicroBNC connector) ■ Compliant with CoaXPress 1.1
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Industrial image processing focused on semiconductors and electronics, including semiconductor inspection, panel inspection, and surface inspection.
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Model number | overview |
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BL-GM9KTD12X4 | 9k / mono / 526kHz / M58, M72 mount / CXP-12 / MicroBNC connector |
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We focus on the design, development, manufacturing, and sales of high-speed, high-resolution, and highly reliable machine vision cameras primarily using CoaXPress and CameraLink. In addition to developing standard products, we also offer development and customization tailored to customer requests. All camera design and development is carried out by our Japanese staff, ensuring design and production techniques that guarantee delicate and highly reliable standards in Japan, while integrating the dynamic action and speed of China to provide competitive products. At Japan Bopixel, we have successfully become the first camera manufacturer to utilize Ultra Low Power FPGA instead of the standard FPGA adopted by the majority of camera manufacturers. This Ultra Low Power FPGA reduces power consumption by over 50% compared to similar class FPGAs, significantly lowering power consumption and heat generation in cameras by addressing the heat source at its root. By actively adopting these next-generation key devices, we are taking a new approach to the heat generation issues that have traditionally been a challenge.