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  • The VCCOB-85B40G is an industrial-temperature 850nm COB optical engine for QSFP SR4 transceivers. It integrates four full-duplex channels to support reliable 40Gbps multimode fiber communication.
  • The VCCOB-85A40G is an 850nm COB optical engine designed for QSFP SR4 transceivers with four full-duplex channels supporting aggregated 40Gbps transmission over multimode fiber.
  • The VCCAx-85A56G is a 56Gb/s PAM4 (28GBd) 850nm multimode VCSEL array with a dual top contact design, delivering high-performance optical data transmission for advanced communication systems.
  • The VCCAx-85A100G is a 100Gb/s PAM4 (50GBd) 850nm multimode VCSEL array with a dual top contact design, delivering high-performance optical data transmission for advanced communication systems.
  • The VCCA4-85M2G is a high-performance multimode 850nm 1x4 VCSEL array, capable of delivering data rates greater than 2.5Gbps per channel. Ideal for advanced optical communication systems, this array offers excellent efficiency and reliability, making it perfect for modern networking applications.
  • The VCCA4-85B4G is an 850nm oxide-confined 1×4 VCSEL chip array designed for 4.25Gbps multimode optical transmission. It provides efficient optical performance and is suitable for compact, short-reach data communication modules.
  • Lasermate provides high speed 850nm Vertical Cavity Surface Emitting Laser (VCSEL) chip array with 4 channels (array form) designed for use in 14Gbps data rate operation.
  • The VCCA12-85M2G is a high-performance multimode 850nm 1x12 VCSEL array, capable of delivering data rates greater than 2.5Gbps per channel. Ideal for advanced optical communication systems, this array offers excellent efficiency and reliability, making it perfect for modern networking applications.
  • Lasermate offers high speed, high reliability, 980nm wavelength, Vertical Cavity Surface Emitting Laser (VCSEL) chip with 1.25/2.5Gbps data rate operation.
  • The VCC-98A10G is a 980nm multimode VCSEL die supporting 10Gb/s data transmission. Featuring a dual top contact design, it delivers reliable high-speed modulation for optical communication and sensing applications.
  • The VCC-94G1A is a precision-engineered 940nm single mode VCSEL chip offering 1mW of output power, specifically designed for sensing applications. Its stable performance and compact form factor make it ideal for a variety of optical sensing needs, ensuring accuracy and reliability in diverse environments.
  • The VCC-94A8H is a high-performance 940nm VCSEL chip offering 8mW of output power. Engineered for both optical communication and sensing applications, it delivers stable performance and precision, making it an excellent choice for a wide range of optical systems.
  • The VCC-94A6H is a high-quality 940nm VCSEL chip delivering 6mW of output power. Perfect for sensing applications, it ensures consistent performance and accuracy, making it an essential choice for modern optical systems.
  • The VCC-94A5H is a versatile 940nm VCSEL chip providing 4.7mW of output power. Engineered for both optical communication and sensing applications, it ensures stable and accurate performance, making it a valuable component for various optical systems.
  • 940nm, 2.5mW, single emitter, single mode, Vertical Cavity Surface Emitting Laser (VCSEL) chip. Designed for use as proximity sensor, consumer electronics, safety sensor.
  • High-efficiency 940nm VCSEL chip with 350mW output power, designed for depth sensing, IR illumination, and LiDAR applications.
  • The VCC-94A20SM is a high-quality 940nm single mode VCSEL chip providing 20mW of output power, specifically designed for sensing applications. Its stable performance and compact design ensure accurate and reliable measurements in various optical sensing environments.
  • The VCC-94A20H is a robust 940nm multimode VCSEL chip delivering 20mW of output power. Engineered for a wide range of optical applications, including communication and sensing, it ensures stable performance and high efficiency, making it an essential component for modern optical systems.
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