
EVAL3K3WBIDIPSFBTOBO1
Active3300W 54V BI-DIRECTIONAL PHASE-SHIFT FULL-BRIDGE EVALUATION BOARD WITH 600V COOLMOS™ CFD7 AND XMC™
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EVAL3K3WBIDIPSFBTOBO1
Active3300W 54V BI-DIRECTIONAL PHASE-SHIFT FULL-BRIDGE EVALUATION BOARD WITH 600V COOLMOS™ CFD7 AND XMC™
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Technical Specifications
Parameters and characteristics for this part
| Specification | EVAL3K3WBIDIPSFBTOBO1 |
|---|---|
| Contents | Board(s) |
| Embedded | MCU, 32-Bit |
| Embedded | True |
| Function | Battery Charger |
| Secondary Attributes | On-Board LEDs |
| Supplied Contents | Board(s) |
| Type | Power Management |
| Utilized IC / Part | IPU80R4K5P7, XMC4200 |
Pricing
Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly
| Distributor | Package | Quantity | $ | |
|---|---|---|---|---|
| Digikey | Bulk | 1 | $ 759.00 | |
Description
General part information
EVAL3K3 Series
This evaluation board introduces a highly efficient complete Infineon system solution for a 3300W bi-directional DC-DC converter targetingtelecom,battery formation powerandindustrial robotics applications. Infineon’s600V CoolMOS™ CFD7 superjunction MOSFETin ThinPAK package is the most recent and best performance fast body diode device. Combined with a low parasitic package and an optimized layout, it achieves great performance with minimum stress. The innovative cooling concept presented in this board enables its remarkable performance. This board achieves 98% efficiency in buck mode and 97% in boost mode. The attained power density is in the range of 4.34W/cm³ (71.19W/in³), which is enabled by the use of SMD packages and the innovative stacked magnetic construction. When combined with the latest technologies from Infineon, this DC-DC converter proves the feasibility and high efficiency of PSFB designs at the level of fully resonant topologies. The EVAL_3K3W_BIDI_PSFB shows as well that the PSFB topology can be used as a bi-directional DC-DC stage without changes in the standard design or construction of a traditional and well known topology. This is achieved thanks to innovations in control techniques powered by digital control andXMC™ microcontrollers. List of components
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Technical documentation and resources