1011GN-125E

1011GN-125E

  • Description:RF MOSFET HEMT 50V 55-QQ
  • Series:E

SKU:eb46e905ffa6 Category: Brand:

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Product Detailed Parameters

  • Description:RF MOSFET HEMT 50V 55-QQ
  • Series:E
  • Mfr:Microchip Technology
  • Package:Bulk
  • Technology:HEMT
  • Frequency:1.03GHz ~ 1.09GHz
  • Gain:18.75dB
  • Voltage - Test:50 V
  • Current Rating (Amps):-
  • Noise Figure:-
  • Current - Test:60 mA
  • Power - Output:150W
  • Voltage - Rated:125 V
  • Grade:-
  • Qualification:-
  • Mounting Type:Surface Mount
  • Package / Case:55-QQ
  • Supplier Device Package:55-QQ
  • Configuration:-

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1011GN-125E

Buying Guide
Summary

Microchip Technology 1011GN-125E is an electronic component in RF FETs, MOSFETs category. Key specs: description: RF MOSFET HEMT 50V 55-QQ; series: E; packaging: Bulk; package/case: 55-QQ; mounting: Surface Mount; frequency: 1.03GHz ~ 1.09GHz.

Selection Notes
  • For 1011GN-125E, confirm package/case 55-QQ, mounting Surface Mount to ensure footprint compatibility.
  • For 1011GN-125E, confirm the operating frequency (1.03GHz ~ 1.09GHz) and any related tolerance requirements.
  • For 1011GN-125E, confirm packaging option and moisture sensitivity handling if your assembly process requires it (frequency 1.03GHz ~ 1.09GHz; rated voltage 125 V).
FAQ

How can I request a quote for 1011GN-125E?
Send the part number (1011GN-125E), quantity, target delivery date, and any required packaging or documentation.

Who is the manufacturer/brand for 1011GN-125E?
Microchip Technology

What is the packaging of 1011GN-125E?
Bulk

What is the rated voltage of 1011GN-125E?
125 V

Application Scenarios
Microchip Technology 1011GN-125E in the RF FETs, MOSFETs category is typically selected when engineers need predictable, spec-driven behavior in a production design. Good RF building blocks accelerate certification and reduce re-spin risk in antenna-to-baseband designs. They shape RF performance by controlling gain, matching, filtering, routing, and isolation in high-frequency signal paths. In IoT gateways, matching and filtering improve sensitivity and coexistence in crowded 2.4 GHz and sub-GHz environments. In aerospace telemetry, predictable RF routing and isolation improve resilience to interference and maintain link margin over long distances. In industrial sensing, RF front ends support radar and presence detection where phase noise and filtering influence range accuracy. Overall, disciplined selection and verification reduce integration risk and improve field reliability.
1011GN-125E1011GN-125E

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