-
BackX
-
Components
-
-
Category
-
Semiconductors
- Diodes
- Thyristors
-
Electro-insulated Modules
- Electro-insulated Modules | VISHAY (IR)
- Electro-insulated Modules | INFINEON (EUPEC)
- Electro-insulated Modules | Semikron
- Electro-insulated Modules | POWEREX
- Electro-insulated Modules | IXYS
- Electro-insulated Modules | POSEICO
- Electro-insulated Modules | ABB
- Electro-insulated Modules | TECHSEM
- Go to the subcategory
- Bridge Rectifiers
-
Transistors
- Transistors | GeneSiC
- SiC MOSFET Modules | Mitsubishi
- SiC MOSFET Modules | STARPOWER
- Module SiC MOSFET ABB’s
- IGBT Modules | MITSUBISHI
- Transistor Modules | MITSUBISHI
- MOSFET Modules | MITSUBISHI
- Transistor Modules | ABB
- IGBT Modules | POWEREX
- IGBT Modules | INFINEON (EUPEC)
- Silicon Carbide (SiC) semiconductor elements
- Go to the subcategory
- Gate Drivers
- Power Blocks
- Go to the subcategory
-
Electrical Transducers
-
Current Transducers | LEM
- Closed-Loop Current Transducers (C/L)
- Open-Loop Current Transducers (O/L)
- Current Transducers supplied with unipolar voltage
- 'Eta' Current Transducers
- Current Transducers - LF xx10 Series
- Current Transducers - LH Series
- Current Transducer - HOYL and HOYS Series
- Current Transducers - GO–SME & GO–SMS Series
- AUTOMOTIVE current transducers
- Go to the subcategory
-
Voltage Transducers | LEM
- Voltage Transducers - LV Series
- Voltage Transducers - DVL Series
- Precision Voltage Transducers with double magnetic core - CV Series
- Voltage Transducer for Traction - DV 4200/SP4
- Voltage Transducers - DVM Series
- Voltage Transducer - DVC 1000-P
- Voltage Transducers - DVC 1000 Series
- Go to the subcategory
- Precision Current Transducers | LEM
- Go to the subcategory
-
Current Transducers | LEM
-
Passive components (capacitors, resistors, fuses, filters)
- Resistors
-
Fuses
- Miniature Fuses for electronic circuits - ABC & AGC Series
- Tubular Fast-acting Fuses
- Time-delay Fuse Links with GL/GG & AM characteristics
- Ultrafast Fuse Links
- Fast-acting Fuses (British & American standard)
- Fast-acting Fuses (European standard)
- Traction Fuses
- High-voltage Fuse Links
- Go to the subcategory
- Capacitors
- EMI Filters
- Supercapacitors
- Power surge protection
- Go to the subcategory
-
Relays and Contactors
- Relays and Contactors - Theory
- 3-Phase AC Semiconductor Relays
- DC Semiconductor Relays
- Controllers, Control Systems and Accessories
- Soft Starters and Reversible Relays
- Electromechanical Relays
- Contactors
- Rotary Switches
-
Single-Phase AC Semiconductor Relays
- AC ONE PHASE RELAYS 1 series| D2425 | D2450
- One phase semiconductor AC relays CWA and CWD series
- One phase semiconductor AC relays CMRA and CMRD series
- One phase semiconductor AC relays - PS series
- Double and quadruple semiconductor AC relays - D24 D, TD24 Q, H12D48 D series
- One phase semiconductor relays - gn series
- Ckr series single phase solid state relays
- One phase AC semiconductor relays for DIN bus - ERDA I ERAA series
- 150A AC single phase relays
- Rail Mountable Solid State Relays With Integrated Heat Sink - ENDA, ERDA1 / ERAA1 series
- Go to the subcategory
- Single-Phase AC Semiconductor Relays for PCBs
- Interface Relays
- Go to the subcategory
- Cores and Other Inductive Components
- Heatsinks, Varistors, Thermal Protection
- Fans
- Air Conditioning, Accessories for Electrical Cabinets, Coolers
-
Batteries, Chargers, Buffer Power Supplies and Inverters
- Batteries, Chargers - Theoretical Description
- Modular Li-ion Battery Building Blocks, Custom Batteries, BMS
- Batteries
- Battery Chargers and Accessories
- Uninterruptible Power Supply and Buffer Power Supplies
- Inverters and Photovoltaic Equipments
- Energy storage
- Fuel cells
- Lithium-ion batteries
- Go to the subcategory
-
Automatics
- Futaba Drone Parts
- Limit Switches, Microswitches
- Sensors, Transducers
-
Infrared Thermometers (Pyrometers)
- IR-TE Series - Water-proof Palm-sized Radiation Thermometer
- IR-TA Series - Handheld Type Radiation Thermometer
- IR-H Series - Handheld Type Radiation Thermometer
- IR-BA Series - High-speed Compact Radiation Thermometer
- IR-FA Series - Fiber Optic Radiation Thermometer
- IR-BZ Series - Compact Infrared Thermometers
- Go to the subcategory
- Counters, Time Relays, Panel Meters
- Industrial Protection Devices
- Light and Sound Signalling
- Thermographic Camera
- LED Displays
- Control Equipments
-
Recorders
- Hybrid Recorders - AL3000 Series | CHINO
- Graphic Recorder - KR2000 Series | CHINO
- Ubiquitous Recorders - KR5000 Series | CHINO
- Palm-sized Temperature/Humidity Meters - HN-CH Series | CHINO
- Consumables for Recorders
- 71VR1 - Compact Paperless Recorder | M-SYSTEM
- Graphic Recorder - KR3000 Series | CHINO
- PC Recorders - R1M Series | M-SYSTEM
- PC Recorders - R2M Series | M-SYSTEM
- PC Recorders - RZMS Series | M-SYSTEM
- PC Recorders - RZUS Series | M-SYSTEM
- Go to the subcategory
- Go to the subcategory
-
Cables, Litz wires, Conduits, Flexible connections
- Wires
- Litz wires
- Cables for extreme applications
- Sleevings
-
Braids
- Flat Braids
- Round Braids
- Very Flexible Flat Braids
- Very Flexible Round Braids
- Cylindrical Cooper Braids
- Cylindrical Cooper Braids and Sleevings
- Flexible Earthing Connections
- Galvanized and Stainless Steel Cylindrical Braids
- PCV Insulated Copper Braids (temp. up to 85C)
- Flat Aluminium Braids
- Junction Set - Braids and Tubes
- Go to the subcategory
- Traction Equipment
- Cable Terminals
- Flexible Insulated Busbars
- Flexible Multilayer Busbars
- Cable Duct Systems
- Hoses
- Go to the subcategory
- View all categories
-
Semiconductors
-
-
- Suppliers
-
Applications
- CNC Machine Tools
- DC and AC Drives (Inverters)
- Energetics
- Energy bank
- Equipment and Components for Hazardous Areas [Ex]
- Equipment for Distribution, Control and Telecommunications Cabinets
- HVAC Automation
- Induction Heating
- Industrial Automation
- Industrial Protective Devices
- Machines for Drying and Wood Processing
- Machines for Thermoforming Plastics
- Mining, Metallurgy and Foundry
- Motors and Transformers
- Power Supplies (UPS) and Rectifier Systems
- Printing
- Temperature Measurement and Regulation
- Test and Laboratory Measurements
- Tram and Railway Traction
- Welding Machines
-
Assembly
-
-
Montaż urządzeń
- Assembly of equipment on request
- Designing and Assembling of Busbar Cabinets, Switching Cabinets, Power Cabinets
- Power systems installation
- Components
- Machines built for order
- R&D research and development work
-
Industrial Testers
- Tester for diodes and thyristors measurement
- Thermal and motor circuit breakers testing stand
- Varistors and surge protectors testers
- Car fuses testing stand
- Tester for the power diode and thyristor reverse recovery charge Qrr measurement
- Rotor tester FD series
- Circuit breakers tester
- Tester for calibrating relays
- Video inspection tester for gas spring piston rods
- High-current thyristor switch
- Mesh ripping tester
- Go to the subcategory
- View all categories
-
-
-
Inductors
-
-
Modernizacja induktorów
- Repair of used inductors
- Modernization of inductors
-
Production of new inductors
- Inductors for crankshaft hardening
- Hardening of band saw teeth
- Inductors for heating elements before gluing
- Hardening of raceways of automotive wheel hub bearings
- Hardening of the drive transmission components
- Hardening of stepped shafts
- Heating in contraction joints
- Induction for scanning hardening
- Soft soldering
- Billet heaters
- Go to the subcategory
- Knowledge base
- View all categories
-
-
-
Induction devices
-
-
Urządzenia indukcyjne
-
Induction heating generators
-
Induction Heating Products Ambrell
- Generators power 500 W, frequency 150 - 400 kHz
- Generators power 1.2 - 2.4 kW, frequency 150 - 400 kHz
- Generators power 4.2 - 10 kW, frequency 150 - 400 kHz
- Generators power 10-15 kW, frequency 50-150 kHz
- Generators power 30-45 kW, frequency 50-150 kHz
- Generators power 65-135 kW, frequency 50-150 kHz
- Generators power 180-270 kW, frequency 50-150 kHz
- Generators power 20-35-50 kW, frequency 15-45 kHz
- Generators power 75-150 kW, frequency 15-45 kHz
- Generators power 200-500 kW, frequency 15-45 kHz
- Generators power 20-50 kW, frequency 5-15 kHz
- Go to the subcategory
- Induction heating products Denki Kogyo
-
JKZ induction heating generators
- Generators CX, frequency: 50-120kHz, power: 5-25kW
- Generators SWS, frequency: 15-30kHz, power: 25-260kW
- Molding and forging furnaces MFS, frequency: 0,5-10kHz, power: 80-500kW
- Melting metals furnaces MFS, frequency: 0,5-10kHz, power: 70-200kW
- Generators UHT, frequency: 200-400kHz, power: 10-160kW
- Go to the subcategory
- Lamp generators for induction heating
- Induction Heating Products - Himmelwerk
- Go to the subcategory
-
Induction Heating Products Ambrell
- Repairs and modernization
- Peripherals
-
Applications
- Medical Applications with Precision Induction Heating
- Applications for automotive industry
- Soldering
- Brazing
- Aluminum Brazing
- Brazing a magnetic steel cutting tool
- Pin Sealing
- Atmospheric Brazing
- Soldering brass and steel radiator caps
- Carbide Tipping
- Soldering a copper lug and a wire
- Go to the subcategory
- Knowledge base
- View all categories
-
Induction heating generators
-
-
-
Service
-
-
asd
- Service of industrial water coolers and air conditioners
- Machines Repairs and Modernizations
- Repair and Maintenance of Power Electronics, Electronic and Industrial Automation Devices
- HV Power Supplies for Electrostatic Precipitators
- Industrial Printers and Labelling Machines
- Certificates / Entitlements
- View all categories
-
-
- Contact
- Zobacz wszystkie kategorie
High Power Density, High Performance X-Series 4500V IGBT Power Modules
High Power Density, High Performance X-Series 4500V IGBT Power Modules
Mitsubishi Electric has developed high performance 4500V IGBT power modules providing reliable solutions for medium voltage drive, railway and power transmission applications.
By Eugen Wiesner, Dr. Nils Soltau, Eugen Stumpf, Mitsubishi Electric Europe B. V. and Kenji Hatori, Hitoshi Uemura, Mitsubishi Electric Corporation
Introduction
Originally, Mitsubishi Electric started the development of the 4500V IGBTs in the middle of 90s. The first commercialization of standard IGBT modules in this voltage class was started in beginning of 2000s. It was a more efficient and compact solution compared to existing 4500V GTO press pack devices. Mainly this development was driven by railway and medium-voltage (MV) drive applications. Meanwhile, a wide variation of the 4500V IGBT modules is available, such as: dual diode modules, modules with copper and AlSiC base plate, modules with standard (VISO=6 kV) and high isolation packages (VISO=10.2 kV).
Targets of 4500V X-Series IGBT Modules
The newly developed 4500V X-Series is already the third series after H-Series and R-Series of MITSUBISHI ELECTRIC IGBT power modules. The line-up of the new X-Series is expanding the existing line-up towards higher power densities (refer Figure 1). The current rating of the large package (footprint: 190mm x 140mm) increases from 900A to 1350A. On the other hand, the 900A rated current also will be made available in smaller package size of 140mm x 130mm.
Figure 1: 4500V X-Series line-up expansion
The standard package type is still very important for different applications due to availability of second source from many IGBT device manufacturers and its proven reliability record in the field for many years. Furthermore, the upgrade or increase of the inverter output power is easily achievable by using the widely commercially available components in the market like heatsinks, gate drivers and bus bars.
The targets for 4500V X-Series device development have been defined based on feedback from customers. These were the following:
- Increasing current rating and module power density
- Reduction of module power losses
- Suitable for various applications having different switching frequency ranges
Six modules have been developed [1] to fulfill the above mentioned market requirements. The overview of the developed 4500V X-Series modules is shown in table 1.
Isolation voltage | Foot print | Type name |
---|---|---|
VISO 10.2 kV | 190mm x 140mm | CM1350HG-90X (VCCmax=3400V) CM1500HG-90X (VCCmax=3200V) |
130mm x 140mm | CM900HG-90X (VCCmax=3400V) CM1000HG-90X (VCCmax=3200V) |
|
VISO 6 kV | 190mm x 140mm | CM1350HC-90X (VCCmax=3400V) CM1500HC-90XA (VCCmax=3000V) |
Table 1: 4500V X-Series Line-up
Improving the Module Power Density
The most challenging requirement was increasing the module power density. The development target was achieved mainly by using the new 7th Gen. Chipset. The 7th Gen. IGBT chip, shown in Figure 2, contributes several significant cutting-edge features. The Carrier Stored Trench-gate Bipolar Transistor structure (CSTBT™) allows reduction of the IGBT forward voltage. The new LNFLR (Linearly- Narrowed Field Limiting Ring) chip termination structure allows for an increase in the active chip area and thereby a reduction of the thermal resistance. Finally, the partial P-Collector technology allows a special capability to manage a wide RBSOA.
Furthermore, the overall packaging technology of 4500V X-Series is improved for managing the increased power density. The optimized internal chip layout reduces the module thermal resistance and increases the power cycling capability. As a result, the junction-tocase thermal resistance was reduced by more than 20% compared to previous R-Series (CM1350HG-90X and CM1200HG-90R). The module performance has been proven and specified for a wide operation temperature range from -50°C to 150°C. The previous 4500V module generations were specified up to 125°C.
Figure 2: 4500V 7th Gen. Chip structure
Two different 7th Gen chip set are available, optimized for high and low switching frequency applications respectively. The X-Type chip set is designed for high switching frequency application (> 350Hz). The XA-type chip set achieves the lowest possible forward voltage for the IGBT and the diode. The intended switching frequency ranges from 100Hz to 350Hz. The trade-off between the forward voltage and reverse recovery switching energy for X- and XA- diode is shown in Figure 3.
Figure 3: Diode trade-off between X- and XA device type
Safe Operating Area (SOA) for Each Application
The DC-link voltage is one of the most important stress factors influencing the SOA of IGBT module. Some applications do not require high DC-link voltage. For such cases, the SOA and with it the permitted maximum current rating increase.
The 4500V X-Series device is designed to operate at a maximum DC-link voltage of 3400V. In this case, the module’s rated current is 1350A (CM1350HG-90X). If the required maximum DC-link voltage is reduced to 3200V, the rated current increase up to 1500A (CM1500HG-90X). Both modules have the same electrical characteristics but have different SOA specifications. Each device undergoes shipping tests according to the defined maximum DC-link voltage respectively.
Example of a 3-level NPC Inverter Application
One of the targeted applications for the 4500V modules is the medium voltage (MV) drive application. For these drives, the output voltage range is between 2.3kV and 13.2kV [2]. The most common voltage levels are: 3.3 kV, 4.16kV, 6kV and 6.6kV. For these output voltages, 3-level topology is widely used. For example, these voltages can be covered by devices such as the CM1500(1350)HG-90X (as shown in Table 2). For output voltage levels higher or equal than 4160V - series connection of 4500V modules becomes necessary.
Inverter output voltage VOUT [Vrms] | Total required inverter DCLink voltage VDC_link [V] | IGBT blocking voltage VCES IGBT [V] | IGBT Series connection | IGBT DC-Link voltage VCC_IGBT [V] |
---|---|---|---|---|
3300 | 4800 | 4500 (CM1500HG-90X) | No | 2400 |
4160 | 6200 | 4500 (CM1500HG-90X) | Yes | 1600 |
6000 | 8800 | 4500 (CM1500HG-90X) | Yes | 2200 |
6600 | 9600 | 4500 (CM1500HG-90X) | Yes | 2400 |
Table 2: Example for 4500V IGBT module based 3-level NPC configurations
Scalability towards lower power ranges can be realized with the CM900HG-90X device or the H- and R-Series modules. The following example shows the potential of the new X-Series compared to the first H-Series in terms of power loss reduction. For the VOUT=3300V output voltage, the necessary DC-Link voltage is about 4800V. In 3-level NPC-configurations, the IGBT module would experience the half the total DC-Link (2400V). In case the heatsink potential would be connected to the middle of the DC-Link the IGBT Module isolation voltage of 10.2 kV(rms) would be sufficient to cover in Table 2 mentioned inverter output voltages.
Figure 4: Comparison of the power loss simulation result using the H- and X-Series 190mm x 140mm modules.
Figure 4 shows the power loss simulation versus output current for CM900HG-90H H-Series device and CM1350HG-90X X-Series device. The simulation conditions are:
- Switching frequency fsw=0.5kHz
- Power factor p.f.=0.85
- Modulation index m=1
- Junction temperature TJ=125°C
There are two possibilities for utilizing the performance of new X-Series power modules. One possibility is a reduction of the IGBT module power losses. The power losses decrease by about 10% compared to the H-Series. The other possibility is increasing the inverter output current. The output current can be increased by about 25% compared to the H-Series. In addition, 150°C operation of X-series enables to increase even more output current than 125°C operation.
Conclusion
The newly developed 4500V X-Series enables significant increase in the inverter output power. Key enabling factors are an increased maximum junction temperature of 150°C, an improved thermal management and reduced power losses in the module. A large line-up and backward compatibility to H-Series and R-Series ensures a flexible converter design and an easy design-in. Furthermore, two different chip sets (X-type and XA-type) facilitates the optimal operation at required switching frequencies.
References
[1] Mitsubishi Electric Corporation, “Mitsubishi Electric to Expand Lineup of X-Series HVIGBT Modules,” Press Release No. 3094, May 2017
[2] Prof. Dr. M. Hiller, “Leistungselektronik mit Si-Bauelementen für die Mittelspannung”, Tagungsband des 1. Industriearbeitskreis Mittelspannungs-Leistungelektronik [Proceedings of the 1. Industry Working Group Medium-Voltage Power Electronics], Fraunhofer ISE, Berlin, Germany, 2016.
Leave a comment