L1003

Features: ·Balanced Output Stage·Excellent Input/Output Match·Self-biased Architecture·24.0 dB Small Signal Gain·1.7 dB Noise Figure·100% On-Wafer RF, DC and Noise Figure Testing·100% Visual Inspection to MIL-STD-883 Method 2010Specifications Supply Voltage (Vd) +5.5 VDC Supply Current (I...

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SeekIC No. : 004388700 Detail

L1003: Features: ·Balanced Output Stage·Excellent Input/Output Match·Self-biased Architecture·24.0 dB Small Signal Gain·1.7 dB Noise Figure·100% On-Wafer RF, DC and Noise Figure Testing·100% Visual Inspect...

floor Price/Ceiling Price

Part Number:
L1003
Supply Ability:
5000

Price Break

  • Qty
  • 1~5000
  • Unit Price
  • Negotiable
  • Processing time
  • 15 Days
Total Cost: $ 0.00

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Upload time: 2024/11/21

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Product Details

Description



Features:

·Balanced Output Stage
·Excellent Input/Output Match
·Self-biased Architecture
·24.0 dB Small Signal Gain
·1.7 dB Noise Figure
·100% On-Wafer RF, DC and Noise Figure Testing
·100% Visual Inspection to MIL-STD-883 Method 2010



Specifications

Supply Voltage (Vd) +5.5 VDC
Supply Current (Id) 130 mA
Gate Bias Voltage (Vg) +0.3 VDC
Input Power (Pin) -5.0/-1.0dBm
Storage Temperature (Tstg) -65 to +165 OC
Operating Temperature (Ta) -55 to MTTF Table1
Channel Temperature (Tch) MTTF Table1
(1) Channel temperature affects a device's MTTF. It is recommended to keep channel temperature as low
as possible for maximum life.


Description

Mimix Broadband's three stage output balanced 24.0-40.0 GHz GaAs MMIC low noise amplifier has a small signal gain of 24.0 dB with a noise figure of 1.7 dB across the band. This MMIC uses Mimix Broadband's 0.1 µm GaAs PHEMT device model technology, and is based upon electron beam ithography to ensure high repeatability and uniformity. The chip  L1003 has surface passivation to protect and provide a rugged part with backside via holes and gold metallization to allow either a conductive epoxy or eutectic solder die attach process. L1003  is well suited for Millimeter-wave Point-to-Point Radio, LMDS, SATCOM and VSAT applications.




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