P-DUKE Technology, Inc. HAE150-24S3P3 is a HAE150-24S3P3 from P-DUKE Technology, Inc., part of the Power Modules. It is designed for 3.3V 40A 16.5V~36V 132W 90% - Power Modules ROHS. This product comes in a - package and is sold as null. Key features include:
- Output Voltage: 3.3V
- Output Current (Max): 40A
- Insulated Voltage: 3kV
- Input Voltage(DC): 16.5V~36V
- Output Power: 132W
- Output Channel: 1
- Conversion Efficiency: 90%
Additional details: This product is environmentally friendly, does not contain a battery, and weighs approximately 1 grams.
More on HAE150-24S3P3
Full Specifications of HAE150-24S3P3
Model Number | HAE150-24S3P3 |
Model Name | P-DUKE Technology, Inc. HAE150-24S3P3 |
Category | Power Modules |
Brand | P-DUKE Technology, Inc. |
Description | 3.3V 40A 16.5V~36V 132W 90% - Power Modules ROHS |
RoHS | Lead free / RoHS Compliant |
Unit | Piece |
Weight: | 1.000 grams / 0.035274 oz |
Package / Case | - |
Package / Arrange | |
Battery | No |
ECCN | EAR99 |
Output Voltage | 3.3V |
Output Current (Max) | 40A |
Insulated Voltage | 3kV |
Input Voltage(DC) | 16.5V~36V |
Output Power | 132W |
Output Channel | 1 |
Conversion Efficiency | 90% |
Compare P-DUKE Technology, Inc. - HAE150-24S3P3 With Other 200 Models
Related Models - HAE150-24S3P3 Alternative
- P-DUKE Technology, Inc. MAF150US18B
- P-DUKE Technology, Inc. MED100US12B
- P-DUKE Technology, Inc. MED100US48B
- P-DUKE Technology, Inc. TDD125US28B
- P-DUKE Technology, Inc. TDD65US15C-P
- P-DUKE Technology, Inc. TED65US7P5C-P
- P-DUKE Technology, Inc. MPM15-12S12
- P-DUKE Technology, Inc. MPM15-24D05W
- P-DUKE Technology, Inc. MPM15-24S05
- P-DUKE Technology, Inc. MPM15-24S15
Other Models You Might Like
USB PD
|
Leakage Protection ICs
|
Isolated Gate Drivers
|
Charge Pumps(Inductorless)
|
Laser Drivers
|
Wireless Charge-Discharge ICs
|
Current Source/Constant Current Source
|
Power Over Ethernet Controllers
|
Gate Drive ICs
|
Power Distribution Switches
|
Monitors & Reset Circuits
|
Power Modules
|
Battery Management ICs
|
Motor Driver ICs
|
Voltage References