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HMC492LP3 Datasheet

Part Number HMC492LP3
Manufacturers Analog Devices
Logo Analog Devices
Description SMT GaAs HBT MMIC
Datasheet HMC492LP3 DatasheetHMC492LP3 Datasheet (PDF)

FREQUENCY DIVIDERS & DETECTORS - SMT v04.0507 6 Typical Applications Prescaler for DC to 18 GHz PLL Applications: • Point-to-Point / Multi-Point Radios • VSAT Radios • Fiber Optic • Test Equipment • Military Functional Diagram HMC492LP3 / 492LP3E SMT GaAs HBT MMIC DIVIDE-BY-2, DC - 18 GHz Features Ultra Low SSB Phase Noise: -150 dBc/Hz Very Wide Bandwidth Output Power: -4 dBm Single DC Supply: +5V 3x3 mm QFN SMT Package General Description The HMC492LP3 & HMC492LP3E are low noise Divide-by-2 S.

  HMC492LP3   HMC492LP3






Part Number HMC492LP3E
Manufacturers Analog Devices
Logo Analog Devices
Description SMT GaAs HBT MMIC
Datasheet HMC492LP3 DatasheetHMC492LP3E Datasheet (PDF)

FREQUENCY DIVIDERS & DETECTORS - SMT v04.0507 6 Typical Applications Prescaler for DC to 18 GHz PLL Applications: • Point-to-Point / Multi-Point Radios • VSAT Radios • Fiber Optic • Test Equipment • Military Functional Diagram HMC492LP3 / 492LP3E SMT GaAs HBT MMIC DIVIDE-BY-2, DC - 18 GHz Features Ultra Low SSB Phase Noise: -150 dBc/Hz Very Wide Bandwidth Output Power: -4 dBm Single DC Supply: +5V 3x3 mm QFN SMT Package General Description The HMC492LP3 & HMC492LP3E are low noise Divide-by-2 S.

  HMC492LP3   HMC492LP3







SMT GaAs HBT MMIC

FREQUENCY DIVIDERS & DETECTORS - SMT v04.0507 6 Typical Applications Prescaler for DC to 18 GHz PLL Applications: • Point-to-Point / Multi-Point Radios • VSAT Radios • Fiber Optic • Test Equipment • Military Functional Diagram HMC492LP3 / 492LP3E SMT GaAs HBT MMIC DIVIDE-BY-2, DC - 18 GHz Features Ultra Low SSB Phase Noise: -150 dBc/Hz Very Wide Bandwidth Output Power: -4 dBm Single DC Supply: +5V 3x3 mm QFN SMT Package General Description The HMC492LP3 & HMC492LP3E are low noise Divide-by-2 Static Dividers utilizing InGaP GaAs HBT technology packaged in leadless 3x3 mm QFN surface mount plastic packages. This device operates from DC (with a square wave input) to 18 GHz input frequency from a single +5V DC supply. The low additive SSB phase noise of -150 dBc/Hz at 100 kHz offset helps the user maintain excellent system noise performance. Electrical Specifications, TA = +25° C, 50 Ohm System, Vcc= +5V Parameter Maximum Input Frequency Minimum Input Frequency Input Power Range Output Power Reverse Leakage SSB Phase Noise (100 kHz offset) Output Transition Time Supply Current (Icc1 + Icc2) Conditions Sine Wave Input. [1] Fin = 2 to 14 GHz Fin = 14 to 16 GHz Fin = 16 to 18 GHz Fin = 0.5 to 18 GHz Both RF Outputs Terminated Pin = 0 dBm, Fin = 4.8 GHz Pin = 0 dBm, Fout = 882 MHz Min. Typ. 18 19 0.2 -20 -15 -20 -15 -15 -10 -7 -4 60 -150 100 78 Max. 0.5 +10 +5 0 Units GHz GHz dBm dBm dBm dBm dB dBc/Hz ps mA 6 - 118 1. Divider will operate down to DC for squa.


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