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XC95144XL-10TQG100I

XC95144XL-10TQG100I

Manufacturer Part:XC95144XL-10TQG100I
Part Type:Programmable Logic ICs
Manufacturer:XILINX
Part ID:XC95144XL-10TQG100I
Date Code:
Quantity Available:12491
Last Updated:2024/11/26

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Description

Features

Applications

XC95144XL-10TQG100I Description

    8. Guaranteed by Design. 9. This parameter is guaranteed by design but not tested. The bus switch contributes no propagation delay other than the RC delay of the On   Resistance of the switch and the 50 pF load capacitance, when driven by an ideal voltage source (zero output impedance). 10. Off Isolation = 20 log10 [VA/VBn].

XC95144XL-10TQG100I Features

    The MAX1661/MAX1662/MAX1663 serial-to-parallel/ parallel-to-serial converters are intended to control external power MOSFETs in power-plane switching applications. These small, low-cost devices can be used on a system motherboard to control point-of-load switching from a 2- wire SMBus™ serial interface. Each device has three high- voltage open-drain outputs that double as TTL-level logic inputs, giving them bidirectional capabilities. The I/O pins can withstand +28V, so they can control battery voltage- distribution switches in notebook computers. The MAX1661 is intended for driving N-channel MOSFETs and its outputs are low upon power-up. The MAX1662/ MAX1663 are intended for P-channel MOSFETs, and their outputs are high-impedance upon power-up. This ensures that the MOSFETs are off at power-up, so the system can enforce power-plane sequencing. The SMBSUS control input selects control data between two separate data registers. This feature allows the system to select between two different power-plane configurations asynchronously, eliminating latencies introduced by the serial bus. Other features include thermal-overload and overcurrent protection, ultra-low supply current, and both hardware and software interrupt capabilities. These devices are available in the space-saving 10-pin µMAX package.

XC95144XL-10TQG100I Applicatioins

    Description Low Pressure Germicidal/Ozone lamps emit the majority of their energy at 253.7 nm and 185 nm. These UV wavelengths are most effective for the destruction of bacteria, virus, spores, many chemical bonds and ozone generations. PerkinElmer makes lamps to fit most of the common UV systems in the field today used for: wastewater disinfection, air disinfection, TOC reduction, Ozone generation, ground water remediation, and many other applications where the energy at 254 nm or 185 nm is required.
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