Analog Devices Inc._HMC997LC4

Analog Devices Inc.
HMC997LC4  
RF Amplifiers

Analog Devices Inc.
HMC997LC4
860-HMC997LC4
Ersa
Analog Devices Inc.-HMC997LC4-datasheets-13298331.pdf
IC AMP RADAR 17GHZ-27GHZ 24CQFN
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ISO9001
Quality Policy
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HMC997LC4 Description

HMC997LC4 Description

The HMC997LC4 from Analog Devices Inc. is a high-performance 17GHz to 27GHz RF amplifier designed for radar applications. Packaged in a 24-lead CQFN strip, this surface-mount device operates on a 5V supply with a 170mA current draw, making it suitable for compact and power-efficient designs. It delivers 20dB gain with a 24dBm output power at 1dB compression (P1dB), ensuring robust signal amplification in high-frequency systems. The amplifier exhibits a low noise figure of 3.5dB to 4dB, critical for maintaining signal integrity in sensitive RF chains. Compliant with ROHS3 and REACH standards, it is ideal for aerospace, defense, and telecom applications.

HMC997LC4 Features

  • Frequency Range: 17GHz to 27GHz, optimized for Ka-band radar and satellite systems.
  • High Gain & Power: 20dB gain and 24dBm P1dB for superior signal amplification.
  • Low Noise Figure: 3.5dB to 4dB, enhancing receiver sensitivity.
  • Compact & Robust: 24-lead CQFN package with MSL3 moisture sensitivity.
  • Low Power Consumption: 5V supply at 170mA, ideal for portable and battery-operated systems.
  • Compliance: ROHS3, REACH, and EAR99 (export-friendly).

HMC997LC4 Applications

  • Radar Systems: Phased-array, automotive, and military radar due to its wide bandwidth and high linearity.
  • Satellite Communications: Ka-band transceivers and VSAT terminals.
  • Test & Measurement: High-frequency signal generators and spectrum analyzers.
  • 5G & mmWave: Emerging telecom infrastructure requiring low-noise, high-gain amplification.

Conclusion of HMC997LC4

The HMC997LC4 stands out as a high-efficiency, low-noise RF amplifier for demanding millimeter-wave applications. Its wide frequency coverage, high gain, and robust power handling make it a preferred choice for radar, satcom, and 5G systems. With Analog Devices' proven reliability and compliance with global standards, this amplifier is a future-proof solution for next-gen RF designs.

Tech Specifications

Number of Channels per Chip
Power Supply Type
Typical Power Gain (dB)
Typical Output Intercept Point (dBm)
PPAP
Product Status
Automotive
Supplier Package
Package / Case
Voltage - Supply
REACH Status
Test Frequency
Maximum Operating Supply Voltage (V)
EU RoHS
Maximum Dual Supply Voltage (V)
Moisture Sensitivity Level (MSL)
ECCN
Mounting Type
Current - Supply
Pin Count
Mounting
Manufacturer Type
HTSUS
Package
Gain
PCB changed
HTS
Typical Gain Flatness (dB)
ECCN (US)
Typical Output Power (dBm)
Maximum Power Dissipation (mW)
Supplier Device Package
Minimum Operating Temperature (°C)
Maximum Operating Temperature (°C)
Maximum Input Return Loss (dB)
Package Height
Mfr
P1dB
Noise Figure
RF Type
RoHS Status
Maximum Output Return Loss (dB)
Package Length
Maximum Supply Current (mA)
Series
Maximum Operating Frequency (MHz)
Part Status
Typical Noise Figure (dB)
Frequency
Package Width
Base Product Number
Mounting Style
Unit Weight
Input Return Loss
RoHS
Minimum Operating Temperature
Operating Frequency
Type
Operating Supply Current
OIP3 - Third Order Intercept
Moisture Sensitive
Number of Channels
Technology
Operating Supply Voltage
P1dB - Compression Point
NF - Noise Figure
Maximum Operating Temperature
Pd - Power Dissipation
USHTS

HMC997LC4 Documents

Download datasheets and manufacturer documentation for HMC997LC4

Ersa HMC997LC4      

Shopping Guide

Payment Methods
Payment Methods include Prepayment TT (bank transfer), Western Union, and PayPal. Customers are responsible for shipping costs, bank charges, customs duties and taxes.
Shipping Rate
Shipments are made once a day around 5pm, excluding Sundays. Once shipped, the estimated delivery time is usually 5-7 business days, depending on the courier you choose.
Delivery Methods
Provide DHL, FedEx, UPS, EMS, SF Express and Registered Airmail International Delivery Service