NB3N15625MNG On Semiconductor NB3N15625MNG, Voltage Controlled Oscillator, 156.25 MHz Maximum of 4.6 V, 20-Pin QFN 4 x 4 x 0.95mm
Description
NB3N15625MNG, Voltage Controlled Oscillator, 156.25 MHz Maximum of 4.6 V, 20-Pin QFN 4 x 4 x 0.95mm
The product with part number NB3N15625MNG (NB3N15625MNG, Voltage Controlled Oscillator, 156.25 MHz Maximum of 4.6 V, 20-Pin QFN 4 x 4 x 0.95mm)
is from company On Semiconductor and distributed with basic unit price 6,16 EUR. Minimal order quantity is 1 pc.
Control ParameterVoltage Dimensions4 x 4 x 0.95mm Frequency Stability±100ppm Height0.95mm Length4mm Load Capacitance16pF Maximum Operating Supply Voltage4.6 V Maximum Operating Temperature+85 °C Maximum Symmetry55% Minimum Operating Temperature-40 °C Mounting TypeSurface Mount Output Frequency156.25 MHz Output LevelLVPECL Package TypeQFN Pin Count20 Width4mm Product Details Clock Generators, ON Semiconductor Clock Generators/Buffers The Si53108-EK by Silicon Laboratories is a PCIe clock & development kit that offers a high performance level per watt for clocking applications necessary to meet PCI Express® Gen1/2/3 standards. These clock generators and buffers have two times lower power and are able to provide up to 50% margin to PCI-Express jitter specifications. Silicon Labs Si53108-EK PCIe Clock Generators and Buffers fully integrate termination resistors, reduce BOM cost, board space requirements and design complexity. The Si53108 is a low-power, 8-output, differential clock buffer that meets all of the performance requirements of the Intel DB800ZL specification. Eight 0.7 V low-power, push-pull, HCSL-compatible PCIe Gen 3 outputsIndividual OE HW pins for each output clock100 MHz /133 MHz PLL operation, supports PCIe and QPISMBus address configurable to allow multiple buffers in a single control network 3.3 V supply voltage operation PLL or bypass modeSpread spectrum tolerable 1.05 to 3.3 V power supply voltageIntel® QPI, PCIe Gen 1/Gen 2/ Gen 3 compliant Industrial Temperature: –40 to 85 °C 48-pin QFN For higher output devices or variations of this device, contact Silicon Labs
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