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Supplier: Mesta Electronics, Inc.
Description: dual output induction heating inverter consists of two-phase locked inverters that will support multiple induction heating coils in order to produce very complex and demanding temperature profiles. Both inverters are continually phase-locked; each is
- Input Frequency: 50 to 60 Hz
- Output Frequency: 0.009 to 0.011 MHz
- Number of Outputs: 2 #
- AC Input Voltage: 380 to 480 volts
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Supplier: Mesta Electronics, Inc.
Description: dual output induction heating inverter consists of two-phase locked inverters that will support multiple induction heating coils in order to produce very complex and demanding temperature profiles. Both inverters are continually phase-locked; each is
- Input Frequency: 50 to 60 Hz
- AC Output Voltage: 420 to 1,000 volts
- Output Frequency: 0.009 to 0.011 MHz
- Number of Outputs: 1 #
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Supplier: Mesta Electronics, Inc.
Description: dual output induction heating inverter consists of two-phase locked inverters that will support multiple induction heating coils in order to produce very complex and demanding temperature profiles. Both inverters are continually phase-locked; each is
- Input Frequency: 50 to 60 Hz
- AC Output Voltage: 300 to 950 volts
- Output Frequency: 0.009 to 0.011 MHz
- Number of Outputs: 1 #
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Supplier: Inductotherm Group
Description: Boost Heating Systems are perfectly adapted for rapid changes of steel temperature during the thermal cycling in annealing furnaces. Induction heating equipment can also be used for preheating the strip furnace entry by effectively “boosting” the capacity of the line. Boost
- Heating Capacity: 7,000 kW
- Output Power: 7,000 kW
- Features: Annealing / Heat Treating
- Heater Type: Induction Heater
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Supplier: Mesta Electronics, Inc.
Description: dual output induction heating inverter consists of two-phase locked inverters that will support multiple induction heating coils in order to produce very complex and demanding temperature profiles. Both inverters are continually phase-locked; each is
- Features: Electric, Other
- Heater Type: Induction Heater
- Applications: OEM / Custom
- Phase: Three Phase
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Supplier: Inductotherm Group
Description: Thermatool™ Full Body Annealers support both in-line and off-line solid-state induction heating of many different varieties of tube, pipe, and bar. Precise induction heating, like that provided by Thermatool™ Full Body Annealers, is critical for post-processing
- Output Frequency: 10 to 150 kHz
- Features: Annealing / Heat Treating
- Heater Type: Induction Heater
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Supplier: Inductotherm Group
Description: makes it ideal for retrofits of existing coating lines as well as new lines. Inductotherm induction heating systems with high-frequency inverters are able to: Achieve high-power densities Reduce the heating time of the strip Reduce the size of the drying furnace These
- Heating Capacity: 5,000 kW
- Output Power: 5,000 kW
- Features: Drying
- Heater Type: Induction Heater
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Supplier: Inductotherm Group
Description: To address the needs of field-based pipe jointing and coating operations within the oil and gas sector, Radyne Containerized Offshore Pipe Heaters are a range of portable containerized mobile induction heating systems. Available in both 10 ft. [3 m] and 20 ft. [6 m] sea containers, a
- Heater Type: Induction Heater
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Power MOSFET - 1200V, 358A, Half bridge, Full SiC-Power Module with Trench MOSFET -- BSM400D12P3G002Supplier: ROHM Semiconductor GmbH
Description: BSM400D12P3G002 is a half bridge module consisting of SiC-UMOSFET and SiC-SBD, suitable for motor drive, inverter, converter, photovoltaics, wind power generation, induction heating equipment.
- V(BR)DSS: 1,200 volts
- IDSS: 358,000 milliamps
- PD: 1,570,000 milliwatts
- TJ: -40 to 125 C
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Power MOSFET - 1200V, 576A, Half bridge, Full SiC-Power Module with Trench MOSFET -- BSM600D12P3G001Supplier: ROHM Semiconductor GmbH
Description: BSM600D12P3G001 is a half bridge module consisting of SiC-UMOSFET and SiC-SBD, suitable for motor drive, inverter, converter, photovoltaics, wind power generation, induction heating equipment.
- V(BR)DSS: 1,200 volts
- IDSS: 576,000 milliamps
- PD: 2,450,000 milliwatts
- TJ: -40 to 125 C
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Supplier: ROHM Semiconductor GmbH
Description: BSM400D12P2G003 is a half-bridge module consisting of SiC-DMOSFET and SiC-SBD, suitable for motor drive, inverter, converter, photovoltaics, wind power generation, induction heating equipment.
- V(BR)DSS: 1,200 volts
- IDSS: 397,000 milliamps
- PD: 2,450,000 milliwatts
- TJ: -40 to 125 C
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Supplier: ROHM Semiconductor GmbH
Description: BSM250D17P2E004 is a half bridge module consisting of SiC-DMOSFET and SiC-SBD, suitable for motor drive, inverter, converter, photovoltaics, wind power generation, induction heating equipment.
- V(BR)DSS: 1,700 volts
- IDSS: 250,000 milliamps
- PD: 1,800,000 milliwatts
- TJ: -40 to 125 C
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Supplier: Nexperia B.V.
Description: optimized for high-voltage, high-frequency industrial power inverter applications. Applications Power inverters such as Uninterruptible Power Supply (UPS) inverter EV charging converter Power Factor Correction (PFC) Induction heating Welding
- Features: Other
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Transistors - 650 V, 75 A trench field-stop IGBT with full rated silicon diode -- NGW75T65H3DFP/A00ZSupplier: Nexperia B.V.
Description: optimized for high-voltage, high-frequency industrial power inverter applications. Applications Power inverters such as Uninterruptible Power Supply (UPS) inverter EV charging converter Power Factor Correction (PFC) Induction heating Welding
- Features: Other
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Transistors - 650 V, 40 A trench field-stop IGBT with half rated silicon diode -- NGW40T65H3DHP/A00ZSupplier: Nexperia B.V.
Description: optimized for high-voltage, high-frequency industrial power inverter applications. Applications Power inverters such as Uninterruptible Power Supply (UPS) inverter EV charging converter Power Factor Correction (PFC) Induction heating Welding
- Features: Other
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Supplier: Nexperia B.V.
Description: optimized for high-voltage, high-frequency industrial power inverter applications. Applications Power inverters such as Uninterruptible Power Supply (UPS) inverter EV charging converter Power Factor Correction (PFC) Induction heating Welding
- Features: Other
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Supplier: Infineon Technologies AG
Description: The single-ended induction heating evaluation board EVAL-IHW25N140R5L features the 1400 V reverse conducting R5L family of IGBTs, specifically designed for resonant switching applications with maximum output power up to 2 kW. This evaluation board demonstrates the functionality and
- Category: Development Board
- Features: Other
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Supplier: Richardson RFPD
Description: System Benefits Enables compact and lightweight systems High efficiency operation Mitigates over-voltage protection Reduces thermal requirements Enables simplified topologies Applications Induction Heating Motor Drives Solar and Wind Inverters UPS and SMPS Traction
- Features: MOSFET, Other
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Description: either analog or digital indicating or integrating instruments, in DC or AC rotating machines, transformers, induction apparatus, arc and resistance heating equipment, mercury arc, thermionic, or solid-state rectifiers and inverters. Ancillary instruments and equipment are
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Supplier: Richardson RFPD
Description: Induction heating, and welding H/EV powertrain and EV charger Power supply and distribution
- rDS(on): 0.18 ohms
- Features: MOSFET, Other
- Package Type: TO-247
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Supplier: Richardson RFPD
Description: are fully software configurable. Optimized for Heavy Duty Vehicle, Auxiliary Power Unit, Charging, Storage, Inverters and Induction Heating applications, these Gate Driver Boards are UL compliant for up to 1.2kV rated modules (and below), can switch up to 200 kHz and provide up
- Category: Development Board
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Supplier: Yaskawa America, Inc. - Drives Division
Description: 240V, 3-Phase Input, IP20/Protected Chassis, HVAC AC Microdrive The Yaskawa HV305 HVAC AC Microdrive is expertly designed for use in OEM and commercial heating, ventilation, and air conditioning (HVAC) equipment applications, providing maintenance-free operation for up to 10 years. Suited for
- Rated Power: 1,492.29188164081 watts
- Supply Voltage (AC): 200 to 240 volts
- Frequency: 60 Hz
- Motor / System: AC Induction Motor, AC Sensorless Vector Drive, AC Vector / Feedback Drive
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Supplier: Yaskawa America, Inc. - Drives Division
Description: 240V, 1-Phase Input, IP20/Protected Chassis, HVAC AC Microdrive The Yaskawa HV305 HVAC AC Microdrive is expertly designed for use in OEM and commercial heating, ventilation, and air conditioning (HVAC) equipment applications, providing maintenance-free operation for up to 10 years. Suited for
- Rated Power: 3,730.729704102025 watts
- Supply Voltage (AC): 200 to 240 volts
- Frequency: 60 Hz
- Motor / System: AC Induction Motor, AC Sensorless Vector Drive, AC Vector / Feedback Drive
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Supplier: Yaskawa America, Inc. - Drives Division
Description: 480V, 3-Phase Input, IP20/Protected Chassis, HVAC AC Microdrive The Yaskawa HV305 HVAC AC Microdrive is expertly designed for use in OEM and commercial heating, ventilation, and air conditioning (HVAC) equipment applications, providing maintenance-free operation for up to 10 years. Suited for
- Rated Power: 1,492.29188164081 watts
- Supply Voltage (AC): 380 to 480 volts
- Frequency: 60 Hz
- Motor / System: AC Induction Motor, AC Sensorless Vector Drive, AC Vector / Feedback Drive
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Supplier: Richardson RFPD
Description: such as solar inverters, induction heating, telecom, EV battery chargers, and motordrives. Features 3W isolated DC/DC converter High 5.2kVDC/1min isolation Wide operating temperature range: -40 C to +85 C Ideal for IGBT/Si/SiC/GaN gate drive power IEC/EN/UL CSA 62368-1 certified
- Output Voltage (Volt): 15 volts
- Input Voltage (VIN): 10.8 to 13.2 volts
- Output Power: 3 watts
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Supplier: Infineon Technologies AG
Description: TRENCHSTOP™ IGBT for inverter CoolMOS™ Power MOSFEET and rapid diode for PFC 20 A of current rating for inverter and PFC PFC switching frequency up to 150 kHz Built-in temperature monitoring Motor power rating up to 2400W at 10 kHz UL certified Benefits Enable less PCB area Significant
- Input Current: 20 amps
- Output Voltage: 600 volts
- Output Power: 2,400 watts
- Technology: Intelligent Power Module (IPM)
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Supplier: Infineon Technologies AG
Description: superior application safety High isolation capability, can be used in 1500 V DC solar inverter application Applications Energy Storage Systems EV charging Fuel-cell control unit (FCCU) Industrial motor drives and controls Smart induction cooktop – precise and efficient heating
- Peak Output Current: 6 amps
- Propagation Delay: 85 ns
- Driver Type: High-side Gate Driver
- Features: Other
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Featured Products Top
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turn-off losses, 175?°C operation, & a 5?μs short-circuit withstand time. Designed for hard-switching, high-voltage, high-frequency applications, they are ideal for industrial inverters, servo drives, small motor drives, welding, induction heating, & ESS. (read more)
Browse Insulated Gate Bipolar Transistors (IGBT) Datasheets for Nexperia B.V. -
, uninterruptible power supply (UPS), photovoltaic (PV) strings, EV-charging, and induction heating and welding. The portfolio leads with devices across 30 - 75 A. (read more)
Browse Transistors Datasheets for Nexperia B.V. -
High Frequency Power Supplies Inverters Low Impedance Grounding DC/DC Converters Induction Heating Coils Ballast Propagation of HF Power Litz Lead Wire Flywheel Energy Storage Plasma Containment Coils (read more)
Browse Audio Cables Datasheets for New England Wire Technologies Corporation -
wire to the space and aeronautics industry, to the medical electronics industry, and to hundreds of clients across many others including high frequency inductors and transformers, inverters, communication equipment, ultrasonic and sonar equipment, television and radio equipment, and induction (read more)
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Industrial lighting systems CNC & motion control Induction heating (read more)
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Conduct Research Top
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Design Considerations in Using the Inverter Gate Driver Optocouplers for Variable Speed Motor Drives - White Paper (.pdf)
requirements. Gate driver optocouplers are now commonly used for high power inverter (IGBT or MOSFET) applications such as: motor control, UPS, switching power supplies, high intensity lamp ballast, and induction heating. These inverter gate driver optocouplers have become a component of choice by design
More Information Top
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Design of the L-LC Resonant Inverter for Induction Heating Based on Its Equivalent SRI
[18] V. Esteve, J. Jordán, E. Dede, E. Sanchis-Kilders, and E. Maset, “ Induc- tion heating inverter with simultaneous dual-frequency output,” in Proc. APEC, Dallas, TX, Mar. 2006.
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Advances in Intelligent Control Systems and Computer Science
H∞ Control of an Induction Heating Inverter . . . . . . . . . . . . . . . . . . . . . .
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Load-Adaptive Control Algorithm of Half-Bridge Series Resonant Inverter for Domestic Induction Heating
An experimental verification has been performed using a commercial induction heating inverter .
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State-of-the art and future trends in transistorised inverters for induction heating applications
Abstract - The aim of the paper is to make a review of the state- of-the art and tendencies of the different semiconductor technologies and topologies normally used in induction heating inverters discussing advantages and disadvantages as well as optimum switching modes …
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Mechatronics and Intelligent Materials III
These applications often require the MF induction heating inverter output voltage steady state with high precision, fast dynamic response, high reliability, resistance to shock load capacity and strong performance starts.
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ZCP1997HT699
Abstract The aim of the paper is to make a rewiev of the different technologies used in induction heating inverters , giving special emphasis in the user point of view, showing advantages and drawbacks of the different solutions, as well as the description …
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Series load resonant tank high frequency inverter with ZCS-PDM control scheme for induction-heated fixing roller
[6] Rafael Ordo.EZ and Hugo Calleja, " Induction Heating Inverter with Power Factor Correction", Proceedings ofIEEE CIEP (International Congress on Power Electronics), Oct, pp.90-95, October, 2002.
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Material Researches and Energy Engineering
Aiming at the control requirements of single-phase high-frequency induction heating inverter supply power control applications, uses a novel multiple and composite control technologies to achieve rapid power modulation control of inverter.
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ZCP1997HT657
In the future, the induction-heating full-bridge seriescapacitor compensated resonant inverter using SI Transistors should be evaluated and discussed as compared with the induction heating inverter using the latest power semiconductor devices such as IGBTs, Power MOSFETs/Bipolar-mode SI Transistors and …
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Power Measurement for Resonant Power Converters Applied to Induction Heating Applications
[6] J. Jordan, V. Esteve, E. Sanchis-Kilders, E. J. Dede, E. Maset, J. B. Ejea, and A. Ferreres, “A comparative performance study of a 1200 V Si and SiC MOSFET intrinsic diode on an induction heating inverter ,” IEEE Trans.
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