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Product Detailed Parameters
- Description:IC RF AMP GPS 1GHZ-2GHZ MODULE
- Series:JS
- Mfr:L3 Narda-MITEQ
- Package:Box
- Frequency:1GHz ~ 2GHz
- P1dB:10dBm
- Gain:48dB
- Noise Figure:0.9dB
- RF Type:General Purpose
- Voltage - Supply:15V
- Current - Supply:365mA
- Test Frequency:1GHz ~ 2GHz
- Mounting Type:-
- Package / Case:Module
- Supplier Device Package:Module
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Overview
The JS21-01000200-09-10P is an active RF amplifier module manufactured by L3 Narda-MITEQ, designed for general-purpose applications within the 1GHz to 2GHz frequency range. This component is specifically optimized for GPS signal processing tasks. It delivers a nominal gain of 48dB with a noise figure of 0.9dB and a P1dB output power of 10dBm. The device is supplied in box packaging as part of the JS series and remains in active production status.
Feature Summary
- Optimized for GPS band signal amplification
- High gain performance with low noise characteristics
- General-purpose RF amplification capability
Applications
- GPS receiver front-end stages
- Satellite navigation signal conditioning
- RF test and measurement equipment
Procurement Notes
Verify the specific suffix configuration against official L3 Narda-MITEQ documentation to ensure compatibility with system requirements. Confirm that the module meets all environmental and reliability standards required for the intended deployment environment before integration.
Selection Notes
Select this module when a high-gain, low-noise solution is required for the 1GHz to 2GHz spectrum. Ensure the 10dBm output power capability aligns with downstream component input levels. Validate that the module form factor fits the mechanical constraints of the assembly.
Part Context
This component belongs to the JS series of RF amplifiers from L3 Narda-MITEQ, a manufacturer known for microwave and RF solutions. The company provides robust components for military and commercial sectors, focusing on reliability and high-performance specifications for demanding electronic applications.
Replacement Considerations
Consult official substitution lists for verified alternatives. Cross-reference technical parameters such as gain, noise figure, and frequency range to ensure functional equivalence if a direct substitute is required.
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