NB3H60113G

 3.3 V / 2.5 V One Time Programmable OmniClock Generator with Single-Ended (LVCMOS/LVTTL) and Differential (LVPECL/LVDS/HCSL/CML) Outputs

制造商:ON

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产品信息

The NB3H60113G, which is a member of the OmniClock family, is a one−time programmable (OTP), low power PLL−based clock generator that supports any output frequency from 8 kHz to 200 MHz. The device accepts fundamental mode parallel resonant crystal or a single ended (LVCMOS/LVTTL) reference clockas input. It generates either three single ended (LVCMOS/LVTTL)outputs, or one single ended output and one differential(LVPECL/LVDS/HCSL/CML) output. The output signals can bemodulated using the spread spectrum feature of the PLL(programmable spread spectrum type, deviation and rate) forapplications demanding low electro−magnetic interference (EMI).Using the PLL bypass mode, it is possible to get a copy of the inputclock on any or all of the outputs. The device can be powered downusing the Power Down pin (PD#). It is possible to program the internalinput crystal load capacitance and the output drive current provided bythe device. The device also has automatic gain control (crystal powerlimiting) circuitry which avoids the device overdriving the externalcrystal.
  • Member of the OmniClock Family of Programmable Clock Generators
  • 3 Programmable Single Ended (LVCMOS/LVTTL) Outputs from 8 kHz to 200 MHz
  • 1 Programmable Differential Clock Output up to 200 MHz
  • Input Frequency Range - Crystal: 3 MHz to 50 MHz - Reference Clock: 3 MHz to 200 MHz
  • I/O Standards - Inputs: LVCMOS/LVTTL, Fundamental Mode Crystal - Outputs: LVCMOS/LVTTL - Outputs: LVPECL, LVDS, CML and HCSL
  • Configurable Spread Spectrum Frequency Modulation Parameters
  • Programmable Internal Crystal Load Capacitors
  • Programmable Output Drive Current for Single Ended Outputs
  • Power Saving mode through Power Down Pin
  • Programmable PLL Bypass Mode
  • Programmable Output Inversion
  • Operating Power Supply: 3.3 V ± 10%, 2.5 V ± 10%
  • Temperature Range −40°C to 85°C
  • Packaged in 8−Pin WDFN

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应用案例