Si87xxSDIP6-KIT Silicon Labs Si87xx LED Emulator Isolation SDIP6 kit

ProducentSilicon Labs
Part Number

Si87xxSDIP6-KIT (SI87XXSDIP6KIT)

Specifications

Si87xx LED Emulator Isolation SDIP6 kit

Unit Price23,12 EUR
Minimum Order Quantity1
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Weight and Dimension
DescriptionClassificationEvaluation Kit Kit ContainsSi87xx Based Evaluation Board, Si87xx LED Emulator TechnologyCMOS Product Details Si87xx LED Emulator Input Isolation Evaluation Boards The Si87xx Evaluation Kit eases evaluation of the performance of Silicon Laboratories' LED emulator input isolator in the gull-wing DIP and SOIC package. The evaluation board is flexible enough to allow both hook-up to lab equipment for detailed spec evaluation as well as connection to an existing board. The evaluation board is jumper-configurable for different device configurations and different drive schemes.The Si87xx isolators are pin-compatible, single-channel, drop-in replacements for popular optocouplers with data rates up to 15Mbps. These devices isolate high-speed signals and offer performance, reliability, and flexibility advantages not available with optocoupler solutions. Pin-compatible, drop-in upgrades for popular high-speed digital optocouplersResistant to temperature, age and forward current effects10x lower FIT rate for longer service lifeHigher common-mode transient immunity: >50 kV/μs typicalLower power and lower input currentPCB footprint compatible with standard optocoupler packagingLED emulator input3 to 30V Open Collector outputPropagation delay: 30ns (typical)Max data rate: 15Mbps3.75kV reinforced isolationOperating temperature range: -40 to +125°CFour evaluation boards are available, each with a different package option:771-0543 DIP8 package771-0552 SOIC8 package795-1595 LGA8 package795-1598 SDIP6 package Digital Isolators, Silicon Laboratories The Silicon Labs broad range of Digital Isolation products offers significant improvements over older isolation technologies such as opto-couplers. They demonstrate lower power consumption, greater reliability and higher performance, and are generally smaller in size and lower in cost. These CMOS-based devices exhibit stable operating characteristics over a wide temperature range and do not suffer from the lifespan limitations of opto-coupled devices.
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