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CGH09120F

Wolfspeed CGH09120F flange package
Warning:

Cancer & Reproductive Harm – www.p65warnings.ca.gov

120-W; UHF – 2.5-GHz; GaN HEMT for WCDMA; LTE; MC-GSM
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NOTE: Not recommended for new designs.

Note: CGH09120F is Not Recommended for New Designs. Refer to CCG2H40120F

Wolfspeed’s CGH09120F is a gallium-nitride (GaN) high-electron-mobility transistor (HEMT) designed specifically for high-efficiency; high-gain and wide-bandwidth capabilities; which makes the CGH09120F ideal for MC-GSM; WCDMA and LTE amplifier applications. The transistor is supplied in a ceramic/metal flange package.

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CGH09120F

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CGH09120F

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Data Sheet
Recommended For New Design?
Technology
Frequency Min
Frequency Max
Peak Output Power
Gain
Efficiency
Operating Voltage
Form
Package Type
CGH09120F
No
GaN on SiC
DC
2.5 GHz
120 W
21 dB
35%
28 V
Packaged Discrete Transistor
Flange
Features
  • UHF – 2.5 GHz Operation
  • 21 dB Gain
  • -38 dBc ACLR at 20 W PAVE
  • 35 % Efficiency at 20 W PAVE
  • High Degree of DPD Correction Can be Applied
Applications
  • WiMAX
  • BWA
  • LTE

Documents, Tools & Support

Documents

Document Type
Document Name
Design Files
Application Notes
Application Notes
Application Notes
Application Notes
Data Sheets
S-parameters
S-parameters
Technical Papers & Articles
by Raymond S. Pengelly – William Pribble – Thomas Smith
This Simulation of power amplifiers (PAs) for modern wireless base station and small cell systems is an essential part of the design process. At a cell site – the PA consumes the bulk of the dc power – generates the most heat – and thus represents the greatest operational cost. Maximum PA efficiency is a necessity to manage these costs – which is a sizeable challenge in a PA that also must be highly linear to support the complex multilevel modulation types and wide bandwidths used for current and developing wireless transmission standards. Accurate simulation allows the PA designer to meet these challenges by exploring the available design options and then optimizing the circuit that is selected for the application.
Technical Papers & Articles
by Raymond S. Pengelly – Simon M. Wood – James W. Milligan – Scott T. Sheppard – and William L. Pribble
Technical Papers & Articles
by Raymond S. Pengelly – Brad Millon – Donald Farrell – Bill Pribble – and Simon Wood
Presentation from the 2008 IEEE MTT-S International Microwave Symposium (IMS) Workshop on Challenges in Model-Based HPA DesignThis presentation discusses attributes of GaN HEMTs – Wolfspeed GaN HEMT models – design examples (Broadband CW Amplifiers and Linear WiMAX Amplifier) – and future model improvements.
Technical Papers & Articles
by Donald A. Gajewski – Scott Sheppard – Simon Wood – Jeff B. Barner – Jim Milligan – and John Palmour.
This paper discusses the reliability performance of Wolfspeed GaN/AlGaN high electron mobility transistor (HEMT) MMIC released process technologies – fabricated on 100 mm high purity semi-insulating (HPSI) 4H-SiC substrates.
Technical Papers & Articles
by Donald A. Gajewski – Scott Sheppard – Tina McNulty – Jeff B. Barner – Jim Milligan and John Palmour
This paper reports the reliability performance of the Wolfspeed – GaN/AlGaN HEMT MMIC process technology – fabricated on 100 mm high purity semi-insulating (HPSI) 4H-SiC substrates.
Technical Papers & Articles
by Ildu Kim – Jangheon Kim – Junghwan Moon – Jungjoon Kim – and Bumman Kim
Demonstrating a highly efficient Hybrid Envelope Elimination and Restoration transmitter for IEEE 802.16e Mobile WiMAX applications using a highly efficient saturated Power Amplifier (PA). For the optimum H-EER operation – the PA has been designed to have a maximum PAE at the average Vds region by using 10 W (P3dB ) GaN High Electron Mobility Transistor.
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Thermal Considerations for High-Power GaN RF Amplifiers

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