The TDB6HK180N16RR is a 1600 V, 180 A EconoBRIDGE™ half-controlled bridge module with an integrated brake chopper, designed to facilitate compact converter designs. It features a 2.5 kV AC insulation for 1 minute, an Al₂O₃ substrate with low thermal resistance, high power density, robust mechanical construction, and an isolated copper base plate. The module utilizes solder contact technology and is RoHS compliant.
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kV AC 1min Insulation – Can handle 2.5 kV of AC for 1 minute without breaking down.
Al₂O₃ Substrate with Low Thermal Resistance – Uses ceramic that helps remove heat quickly.
High Power Density – Gives more power in a small size.
High Mechanical Robustness – Strong and resists damage.
Isolated Base Plate – Keeps parts safely separated to avoid electrical contact.
Compact Design – Small and space-saving.
Copper Base Plate – Copper helps move heat away fast.
Solder Contact Technology – Easy to attach with soldering.
RoHS Compliant – Safe for the environment (no harmful materials).
Standard Housing – Comes in a regular, easy-to-use shape.
The circuit diagram for the TDB6HK180N16RR shows a three-phase inverter using six IGBT switches, each paired with a freewheeling diode. These are arranged in a typical 6-pack layout. The left side of the diagram has grouped input terminals (1, 2, 3), which are likely the DC+ input. The bottom terminals (26–29) are the DC− connection. The three midpoints (pins 4–6, 7–9, and 19–25) represent the U, V, and W phase outputs going to the motor or AC load.
Each IGBT switch is marked with gate control pins (18, 20, 21) which turn each device on or off. The right part of the image shows a single IGBT with its gate, collector, and emitter terminals labeled, making it easier to understand how each switch works individually. Overall, this module is designed to convert DC power into three-phase AC by switching the IGBTs in a controlled sequence.
Feature |
TDB6HK180N16RR |
TDB6HK240N16P |
TDB6HK360N16P |
Voltage Rating |
1600 V |
1600 V |
1600 V |
Current Rating |
180 A |
240 A |
360 A |
Insulation
Voltage |
2.5 kV AC for 1
minute |
4 kV AC for 1
minute |
4 kV AC for 1
minute |
Substrate
Material |
Al₂O₃ with low
thermal resistance |
Not specified |
Not specified |
Power Density |
High |
Not specified |
Not specified |
Mechanical
Robustness |
High |
Not specified |
Not specified |
Base Plate |
Isolated copper
base plate |
Isolated base
plate |
Isolated base
plate |
Contact
Technology |
Solder contact
technology |
PressFIT contact
technology |
PressFIT contact
technology |
Temperature
Sensor |
Not specified |
Integrated NTC
temperature sensor |
Integrated NTC
temperature sensor |
RoHS Compliance |
Yes |
Yes |
Yes |
The packaging diagram for the TDB6HK180N16RR shows the physical layout and dimensions of the IGBT module. The top view displays the overall size of the case, which is about 107.5 mm long and 45.5 mm wide, with detailed pin positions and distances between them. Each pin is clearly numbered for correct connections, including power terminals and gate control pins.
The side and cross-sectional views show the height of the module (around 17.95 mm) and details like mounting hole sizes (⌀6.3 mm) and pin length. The pins are spaced accurately for secure fitting into a heatsink or PCB. This drawing helps you know how much space you need to mount the module and how to match it with connectors or cooling setups.
General-purpose motor drives: It efficiently controls motor speed and torque, making it suitable for industrial machinery and equipment.
Motor control systems: The module ensures precise and reliable motor operation in automation and control systems.
Wind energy systems: It ideal in converting and managing power generated by wind turbines.
Active rectifiers: The module is used in converting AC to DC power, enhancing efficiency in power supply systems.
Half-controlled B6 bridges: It is employed in specific rectifier circuits for controlled power conversion.
High Power Density: Facilitates compact and efficient converter designs, optimizing space utilization.
Mechanical Robustness: Ensures reliable operation under various environmental conditions, enhancing durability.
Efficient Thermal Management: The Al₂O₃ substrate with low thermal resistance allows effective heat dissipation, improving performance and longevity.
Isolated Copper Base Plate: Provides electrical isolation and improved thermal management, contributing to system reliability.
RoHS Compliance: Meets environmental standards, ensuring reduced hazardous substances in manufacturing.
Cooling Requirements: High-power applications may necessitate additional cooling solutions to maintain optimal performance and prevent overheating.
System Compatibility: The module's specific design may have limited compatibility with certain system architectures, requiring careful integration planning.
Infineon Technologies AG, headquartered in Neubiberg, Germany, is a leading global semiconductor manufacturer. Established in 1999 as a spin-off from Siemens AG, the company has grown to become one of the world's top semiconductor producers. Infineon's product portfolio includes application-specific integrated circuits (ICs), microcontrollers, radio frequency components, sensors, interfaces, and transistor products. These products serve various industries, notably automotive, industrial, communications, and consumer electronics.
The TDB6HK180N16RR is notable for its ability to manage large amounts of power effectively while being durable and reliable. Although it faces challenges like needing extra cooling and careful system integration, it remains a key tool for modern energy solutions. Infineon Technologies continues to lead in creating innovative products that meet the needs of various industries.
The TDB6HK180N16RR works between -40°C and 150°C for the inverter and brake sections, and up to 130°C for the rectifier. This range ensures it functions properly across different environments.
Use M5 screws and tighten them to a torque of 3.0 to 6.0 Nm for optimal performance. Proper installation affects the module's thermal and mechanical effectiveness.
For high-risk applications like aviation or medical equipment, specific assessments and agreements are required.
Yes, the module is RoHS compliant. It adheres to strict environmental standards that limit harmful substances in electronics.
The module weighs about 180 grams. Consider its weight during system design and installation to ensure compatibility and ease of handling.
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