RGTV and RGW IGBTs

ROHM's 650 V IGBTs deliver class-leading efficiency with soft switching

Image of ROHM's RGTV and RGW IGBTs ROHM's 650 V IGBTs combine class-leading low conduction loss with high-speed switching characteristics. This makes them ideal for power conversion in general-purpose inverters and converters for consumer appliances, such as ACs and induction heaters (IH), as well as industrial equipment, including power conditioners, welding machines, and uninterrupted power supplies (UPS). A total of 21 models are offered, consisting of the RGTV series, which features short-circuit tolerance, and the RGW series that delivers fast switching speed.

In recent years, the emergence of IoT has caused exponential growth in the volume of data generated, bringing about a need to improve the functionality and capacity of data centers. However, as the number of servers and UPS essential to ensuring stable operation of the main power supply continues to rise, it becomes increasingly difficult to reduce power consumption. In addition, in high power applications that utilize IGBTs, there is a need to maintain reliability by simplifying measures against overshoot during switching, which can lead to device failure or malfunction.

In response, ROHM utilized thin wafer technology and a proprietary structure to deliver class-leading performance that optimizes the trade-off relationship between conduction loss and switching speed. For example, when used in an interleaved PFC circuit, efficiency is improved by 1.2% at light loads and 0.3% under heavy loads, contributing to lower application power consumption. In addition, optimizing the internal design allowed ROHM to achieve smooth switching characteristics that decrease voltage overshoot by 50% compared to products with equivalent efficiency, reducing the number of parts required along with design load.

Features
  • Combines industry-low conduction loss with high-speed switching characteristics
    • These two series adopt thin wafer technology that reduces wafer thickness by 15% over conventional products and an original structure featuring a refined cell design to provide the industry's lowest conduction loss (VCE(sat)=1.5 V) with fast switching characteristics (tf=30 to 40 ns)
  • Lineup
    • RGTV series features a short-circuit withstand time of 2 µs
    • Fast-switching RGW series ensures support for a broader range of applications
  • Enables soft switching operation, reducing design load
    • Internal device optimization makes it possible to achieve soft switching for smooth ON/OFF operation. This decreases voltage overshoot during switching by as much as 50% over conventional products, reducing the number of external parts required, such as gate resistors and snubber circuits used to control overshoot. As a result, ROHM's IGBTs eliminate the need for overshoot countermeasures on the application side, minimizing design load

Applications

  • Industrial equipment (i.e., UPS, welding machines, power conditioners), AC, IH, and more

RGTV IGBTs

ImageManufacturer Part NumberDescriptionCurrent - Collector Pulsed (Icm)Vce(on) (Max) @ Vge, IcPower - MaxAvailable QuantityPriceView Details
IGBT TRENCH FS 650V 45A TO-3PFMRGTV00TK65DGC11IGBT TRENCH FS 650V 45A TO-3PFM200 A1.9V @ 15V, 50A94 W450 - Immediate$7.55View Details
IGBT TRENCH FS 650V 45A TO-3PFMRGTV00TK65GVC11IGBT TRENCH FS 650V 45A TO-3PFM200 A1.9V @ 15V, 50A94 W433 - Immediate$3.30View Details
IGBT TRENCH FS 650V 95A TO-247NRGTV00TS65DGC11IGBT TRENCH FS 650V 95A TO-247N200 A1.9V @ 15V, 50A276 W0 - Immediate$7.17View Details
IGBT TRENCH FS 650V 95A TO-247NRGTV00TS65GC11IGBT TRENCH FS 650V 95A TO-247N200 A1.9V @ 15V, 50A276 W0 - Immediate$2.45View Details
IGBT TRENCH FS 650V 33A TO-3PFMRGTV60TK65DGVC11IGBT TRENCH FS 650V 33A TO-3PFM120 A1.9V @ 15V, 30A76 W450 - Immediate$6.52View Details
IGBT TRENCH FS 650V 33A TO-3PFMRGTV60TK65GVC11IGBT TRENCH FS 650V 33A TO-3PFM120 A1.9V @ 15V, 30A76 W450 - Immediate$5.66View Details
IGBT TRENCH FS 650V 60A TO-247NRGTV60TS65DGC11IGBT TRENCH FS 650V 60A TO-247N120 A1.9V @ 15V, 30A194 W0 - Immediate$5.99View Details
IGBT TRENCH FS 650V 60A TO-247NRGTV60TS65GC11IGBT TRENCH FS 650V 60A TO-247N120 A1.9V @ 15V, 30A194 W157 - Immediate$2.71View Details
IGBT TRENCH FS 650V 144A TO-247NRGTVX6TS65GC11IGBT TRENCH FS 650V 144A TO-247N320 A1.9V @ 15V, 80A404 W276 - Immediate$7.05View Details

RGW IGBTs

ImageManufacturer Part NumberDescriptionCurrent - Collector Pulsed (Icm)Vce(on) (Max) @ Vge, IcPower - MaxAvailable QuantityPriceView Details
IGBT TRENCH FS 650V 45A TO-3PFMRGW00TK65DGVC11IGBT TRENCH FS 650V 45A TO-3PFM200 A1.9V @ 15V, 50A89 W425 - Immediate$7.17View Details
IGBT TRENCH FS 650V 45A TO-3PFMRGW00TK65GVC11IGBT TRENCH FS 650V 45A TO-3PFM200 A1.9V @ 15V, 50A89 W0 - Immediate$2.66View Details
IGBT TRENCH FS 650V 96A TO-247NRGW00TS65DGC11IGBT TRENCH FS 650V 96A TO-247N200 A1.9V @ 15V, 50A254 W0 - Immediate$6.62View Details
IGBT TRENCH FS 650V 96A TO-247NRGW00TS65GC11IGBT TRENCH FS 650V 96A TO-247N200 A1.9V @ 15V, 50A254 W0 - Immediate$5.77View Details
IGBT TRENCH FS 650V 33A TO-3PFMRGW60TK65DGVC11IGBT TRENCH FS 650V 33A TO-3PFM120 A1.9V @ 15V, 30A72 W410 - Immediate$6.21View Details
IGBT TRENCH FS 650V 33A TO-3PFMRGW60TK65GVC11IGBT TRENCH FS 650V 33A TO-3PFM120 A1.9V @ 15V, 30A72 W102 - Immediate$5.65View Details
IGBT TRENCH FS 650V 60A TO-247NRGW60TS65DGC11IGBT TRENCH FS 650V 60A TO-247N120 A1.9V @ 15V, 30A178 W448 - Immediate$4.94View Details
IGBT TRENCH FS 650V 60A TO-247NRGW60TS65GC11IGBT TRENCH FS 650V 60A TO-247N120 A1.9V @ 15V, 30A178 W420 - Immediate$5.06View Details
IGBT TRENCH FS 650V 39A TO-3PFMRGW80TK65DGVC11IGBT TRENCH FS 650V 39A TO-3PFM160 A1.9V @ 15V, 40A81 W437 - Immediate$6.64View Details
IGBT TRENCH FS 650V 39A TO-3PFMRGW80TK65GVC11IGBT TRENCH FS 650V 39A TO-3PFM160 A1.9V @ 15V, 40A81 W449 - Immediate$3.14View Details
IGBT TRENCH FS 650V 78A TO-247NRGW80TS65DGC11IGBT TRENCH FS 650V 78A TO-247N160 A1.9V @ 15V, 40A214 W314 - Immediate$6.11View Details
IGBT TRENCH FS 650V 78A TO-247NRGW80TS65GC11IGBT TRENCH FS 650V 78A TO-247N160 A1.9V @ 15V, 40A214 W122 - Immediate$5.33View Details
Published: 2019-01-10