Features
- Gen IV technology
- JEDEC-qualified GaN technology
- Dynamic RDS(on)eff production tested
- Robust design, defined by
- Wide gate safety margin
- Transient over-voltage capability
- Very low QRR
- Reduced crossover loss
- RoHS-compliant and Halogen-free packaging
- Achieves increased efficiency in both hard- and soft-switched circuits
- Increased power density
- Reduced system size and weight
- Overall lower system cost
- Easy to drive with commonly-used gate drivers
- Kelvin source for improved performance
- Pin-to-pin Drop-in with e-mode GaN FET
Description
The TP65H300G4LSGB 650V 240mΩ Gallium Nitride (GaN) FET is a normally-off device built using Renesas' Gen IV platform. It combines state-of-the-art high voltage GaN HEMT and low voltage silicon MOSFET technologies—offering superior reliability and performance.
Renesas GaN offers improved efficiency over silicon, through lower gate charge, lower crossover loss, and smaller reverse recovery charge.
The TP65H300G4LSGB is offered in an industry-standard PQFN88 with a Kelvin source and common source package configuration.
Applications
- Consumer
- Power adapters
- Low-power SMPS
- Lighting
| Part Number | Status | Samples | Stock | Package | Carrier Type | Moisture Sensitivity Level (MSL) | Mounting Type | Temp. Range (°C) |
|---|---|---|---|---|---|---|---|---|
| TP65H300G4LSGB | NRND | N/A | Out of Stock | PQFN88 | Tape & Reel | 3 | Surface Mount | -55 to +150°C |
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- White PaperPDF 1.9 MB R16WP0012EU0100 Rev.1.00 Dec 19, 2025D-Mode GaN combines the best of both GaN and Silicon and is ideal for high-voltage applications with high-speed, high-voltage GaN switching, robust 4V threshold gate compatible with standard gate drivers, and a range of standard package offerings not available with other GaN technologies.
- Technical BriefPDF 992 KB R16TB0004EU0100 Rev.1.00 Dec 02, 2025
- Application NotePDF 372 KB Dec 11, 2024AI-generated Summary: GaN power switches require careful PCB layout and probing techniques to fully utilize their fast switching capabilities. Minimizing parasitic inductances and capacitances in the power and gate drive loops reduces ringing and ensures stable operation. A large ground plane, close placement of power components, and short, wide traces in the gate drive circuit improve performance. Accurate probing demands short ground leads and direct probe placement to avoid measurement artifacts. Avoid adding parasitics during probing by using floating oscilloscopes and minimizing wire lengths. The document also highlights the importance of proper decoupling and grounding strategies for high-frequency switching circuits.
- Application NotePDF 3.39 MB Jan 17, 2024AI-generated Summary: The document details tape and reel packaging specifications for various PQFN packages by Renesas Electronics, including GEN III and GEN IV 8x8mm and 5x6mm sizes. It covers product orientation, carrier tape dimensions, reel sizes, box sizes, package PODs, laser marking samples, and shipping box information. The GEN III 8x8mm PQFN tape and reel includes 500 pieces per reel, with leader and trailer empty pocket lengths specified. Carrier tape dimensions follow EIA 481 standards with precise sprocket hole tolerances. Reel size is standardized at 178mm diameter. The document also includes detailed packaging and shipping information for TO-220, TO-247, and TOLL tape and reel formats.
- GuidePDF 1.73 MB Nov 06, 2023
- Application NotePDF 1.26 MB Apr 07, 2022AI-generated Summary: Recommendations focus on lead-free second-level soldering for PQFN88, PQFN56, and TO-263 packages using vapor phase reflow. Key points include PCB footprint design to ensure optimal thermal and electrical performance, solder pad surface finish selection favoring Electroless Ni/Immersion Au (ENIG) for superior solder wetting, and solder stencil specifications with preferred thickness around 127µm. Vias in drain or source pads improve thermal conduction. Detailed stencil aperture dimensions and solder mask openings support self-alignment during reflow soldering. The document guides on solder paste printing and reflow parameters to achieve reliable assembly.
- Application NotePDF 1.06 MB Nov 06, 2018AI-generated Summary: The document explains the design and implementation of paralleling PQFN GaN FETs for high-power applications. It details the use of source and drain tab devices to reduce electromagnetic noise and improve heat dissipation. The note covers symmetrical PCB layout, gate driver configuration, and snubber circuits to suppress voltage spikes. Hard-switching tests demonstrate stable operation at 50A with controlled voltage ringing. Efficiency measurements show over 99% efficiency at 1.25kW and over 98.8% at 1.5kW with thermal management considerations. The document also provides methods to estimate switching losses and presents loss breakdowns for accurate efficiency prediction. PCB design files include schematic, BOM, and Gerber files for practical implementation.
- GuidePDF 273 KB Jul 11, 2017Related Files:
- Application NotePDF 214 KB May 01, 2017AI-generated Summary: Renesas GaN FETs have an absolute maximum gate-to-source voltage rating of ±18V. Transient voltages exceeding this rating may appear at the gate pin due to package inductance but do not damage the device because the internal gate voltage remains within limits. High-frequency ringing on the gate pin results from parasitic inductances in the input and source loops, especially source inductance shared by input and output. Devices with internal ferrite beads, such as TO-247 packages, further attenuate these transients. Careful PCB layout minimizing parasitic inductances is crucial to reduce overshoot, ringing, and improve stability in GaN FET circuits.
- Application NotePDF 430 KB Jan 13, 2017AI-generated Summary: GaN FETs do not have a body diode or avalanche mechanism like silicon MOSFETs, enabling higher efficiency and new circuit topologies. Instead of avalanche ratings, GaN FETs have a transient peak voltage rating (VTDS) about 25% above their continuous rating, allowing voltage spikes up to 800V for 1µs. Renesas performs high voltage off-state tests to ensure reliability, predicting device lifetimes exceeding 10,000 years under rated conditions. Testing methods avoid unclamped inductive load tests and focus on leakage current measurements to confirm maximum voltage ratings.
Recommended Documents (1)
Datasheets (1)
- GuidePDF 1.73 MB Nov 06, 2023
- GuidePDF 273 KB Jul 11, 2017Related Files:
Manuals & Guides (4)
- White PaperPDF 1.9 MB R16WP0012EU0100 Rev.1.00 Dec 19, 2025D-Mode GaN combines the best of both GaN and Silicon and is ideal for high-voltage applications with high-speed, high-voltage GaN switching, robust 4V threshold gate compatible with standard gate drivers, and a range of standard package offerings not available with other GaN technologies.
- Application NotePDF 372 KB Dec 11, 2024AI-generated Summary: GaN power switches require careful PCB layout and probing techniques to fully utilize their fast switching capabilities. Minimizing parasitic inductances and capacitances in the power and gate drive loops reduces ringing and ensures stable operation. A large ground plane, close placement of power components, and short, wide traces in the gate drive circuit improve performance. Accurate probing demands short ground leads and direct probe placement to avoid measurement artifacts. Avoid adding parasitics during probing by using floating oscilloscopes and minimizing wire lengths. The document also highlights the importance of proper decoupling and grounding strategies for high-frequency switching circuits.
- Application NotePDF 3.39 MB Jan 17, 2024AI-generated Summary: The document details tape and reel packaging specifications for various PQFN packages by Renesas Electronics, including GEN III and GEN IV 8x8mm and 5x6mm sizes. It covers product orientation, carrier tape dimensions, reel sizes, box sizes, package PODs, laser marking samples, and shipping box information. The GEN III 8x8mm PQFN tape and reel includes 500 pieces per reel, with leader and trailer empty pocket lengths specified. Carrier tape dimensions follow EIA 481 standards with precise sprocket hole tolerances. Reel size is standardized at 178mm diameter. The document also includes detailed packaging and shipping information for TO-220, TO-247, and TOLL tape and reel formats.
- Application NotePDF 1.26 MB Apr 07, 2022AI-generated Summary: Recommendations focus on lead-free second-level soldering for PQFN88, PQFN56, and TO-263 packages using vapor phase reflow. Key points include PCB footprint design to ensure optimal thermal and electrical performance, solder pad surface finish selection favoring Electroless Ni/Immersion Au (ENIG) for superior solder wetting, and solder stencil specifications with preferred thickness around 127µm. Vias in drain or source pads improve thermal conduction. Detailed stencil aperture dimensions and solder mask openings support self-alignment during reflow soldering. The document guides on solder paste printing and reflow parameters to achieve reliable assembly.
- Application NotePDF 1.06 MB Nov 06, 2018AI-generated Summary: The document explains the design and implementation of paralleling PQFN GaN FETs for high-power applications. It details the use of source and drain tab devices to reduce electromagnetic noise and improve heat dissipation. The note covers symmetrical PCB layout, gate driver configuration, and snubber circuits to suppress voltage spikes. Hard-switching tests demonstrate stable operation at 50A with controlled voltage ringing. Efficiency measurements show over 99% efficiency at 1.25kW and over 98.8% at 1.5kW with thermal management considerations. The document also provides methods to estimate switching losses and presents loss breakdowns for accurate efficiency prediction. PCB design files include schematic, BOM, and Gerber files for practical implementation.View More (7)
Application Notes & White Papers (7)
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