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首页 > 电子元器件选型 > 电阻器 > 金属釉/厚膜电阻器

CRCW060348K7FKEA

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CRCW060348K7FKEA
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Vishay

Fixed Resistor, Metal Glaze/thick Film, 0.1W, 48700ohm, 75V, 1% +/-Tol, 100ppm/Cel, Surface Mount, 0603, CHIP, HALOGEN FREE AND ROHS COMPLIANT

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¥0.6521
市场总库存:
212,051
生命周期状态: Active
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CRCW25123K30JNEG Vishay Dale 也适用于 CRCW251297R6FKEG ,CRCW06033R90FKEA ,CRCW08053M09FKEA 等其余97个型号

参考设计

(3)
Wi-Fi System Powered by 2 AA Batteries Extends Life By Using Long Power Off Periods Reference Design
TIDA-00372: TIDA-00372 is a power supply design for use with the CC3200 SimpleLink ™ wireless MCU. This design includes a boost power supply that enables the use of analog circuits such as sensor products that cannot operate at voltages available from two series connected AA Batteries. A nano-power timer enables long power-off cycles and increases battery life.
Last Gasp Hold Up Energy Storage Solution
TIDA-00304: This solution stores and delivers "last gasp" energy for systems, such as SSDs, that require functionality for a short time after power loss in order to shut down in a controlled fashion. By storing holdup energy at higher than bus voltage the amount of capacitance can be reduced by up to 80%, significantly reducing solution size and cost while improving reliability. Typically a complex electronics circuit is needed to boost the input voltage, mux it with the buck input during power failure, and bucking it down to 3.3V or 5V for the load. This reference design uses TI’s TPS25942 on the input side to control inrush, protect against over voltage, under voltage, short circuits, and prevent stored energy from flowing back to a shorted input bus. The boost converter charges the capacitor bank to 12V if input supply is 5V, or 18V if input supply is 12V. When the TPS25942 detects and declares a fault the FLTb signal is used to drive a P-MOSFET that connects the storage capacitors to the buck input.
Reference Design - SEPIC Converter Delivers 3.3V at 3.25A from Low Input Voltage
PMP9512: This coupled-inductor, 3.3V at 3.25A, SEPIC converter delivers high current in a compact area. This circuit is optimized for input voltages within 3.0V - 3.6V. It is also suitable for battery application.
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