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HMC535LP4E

Analog Devices
Part Number HMC535LP4E
Manufacturer Analog Devices
Description PHASE-LOCKED OSCILLATOR
Published Jun 29, 2020
Detailed Description v01.1009 Typical Applications Phase-Locked Oscillator for: • VSAT Radio • Point-to-Point & Point-to-Multi-Point Radio • ...
Datasheet PDF File HMC535LP4E PDF File

HMC535LP4E
HMC535LP4E


Overview
v01.
1009 Typical Applications Phase-Locked Oscillator for: • VSAT Radio • Point-to-Point & Point-to-Multi-Point Radio • Test Equipment & Industrial Controls • Military End-Use Functional Diagram 12 HMC535LP4 / 535LP4E PHASE-LOCKED OSCILLATOR, 14.
7 - 15.
4 GHz Features Pout: +9 dBm Phase Noise: -110 dBc/Hz @100 KHz Typ.
Single Supply: +5V @ 340 mA +12V @ 28 mA 24 Lead 4x4mm QFN Package: 9 mm2 General Description The HMC535LP4 & HMC535LP4E are GaAs InGaP Heterojunction Bipolar Transistor (HBT) MMIC PLOs.
The PLO’s phase noise performance is excellent over temperature, shock, and process due to the oscillator’s monolithic structure.
Power output is +9 dBm typical from a +5V supply voltage.
All functions (VCO, Op-Amp, PFD, Prescaler) are fully integrated while providing allowances for off-chip customer specific loop components.
The PLO MMIC accepts a single-ended or a differential reference oscillator input signal in the range of 230 to 240 MHz, and a digital Lock Detector (LD) output is provided to confirm the status of the loop.
The phase-locked oscillator is packaged in a leadless QFN 4 x 4 mm surface mount package.
PLOS - SMT Electrical Specifications, TA = +25° C Power Supplies: VCO Voltage VCO Current Op-Amp Voltage Op-Amp Current Digital Voltage Digital Current PLO Characteristics: RF Operating Freq.
RF Power Reference Input Freq.
Reference Input Power RF Phase Noise Locking Time Lock Detect Output Locked Unlocked Parameter Vcc1 Icc1 Vcc2 Icc2 Vcc3 Icc3 100 KHz offset Loop BW = 1 MHz Min.
Typ.
Max.
Units — 5 — V — 172 — mA — 12 — V — 28 — mA — 5 — V — 168 — mA 14.
7 — 15.
4 GHz 6 9 — dBm 229.
69 — 240.
62 MHz 0 5 10 dBm — -110 — dBc/Hz — 20 — μs — 0.
3 0.
5 Vave 0.
7 1.
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