
NCP1562-100WGEVB
ActiveBOARD EVAL FOR NCP1562-100W
Deep-Dive with AI
Search across all available documentation for this part.

NCP1562-100WGEVB
ActiveBOARD EVAL FOR NCP1562-100W
Deep-Dive with AI
Technical Specifications
Parameters and characteristics for this part
| Specification | NCP1562-100WGEVB |
|---|---|
| Board Type | Fully Populated |
| Current - Output | 30 A |
| Frequency - Switching | 350 kHz |
| Main Purpose | DC/DC, Step Down |
| Outputs and Type | Non-Isolated |
| Outputs and Type | 1 |
| Power - Output | 100 W |
| Regulator Topology | Buck |
| Supplied Contents | Board(s) |
| Utilized IC / Part | NCP1562 |
| Voltage - Input [Max] | 76 V |
| Voltage - Input [Min] | 33 V |
| Voltage - Output | 3.3 V |
Pricing
Prices provided here are for design reference only. For realtime values and availability, please visit the distributors directly
Description
General part information
NCP1562 Series
The NCP1562x is a family of voltage mode controllers designed for dc-dc converters requiring high efficiency and low parts count. These controllers incorporate two in phase outputs with an overlap delay to prevent simultaneous conduction and facilitates soft switching. The main output is designed for driving a forward converter primary MOSFET. The secondary output is designed for driving an active clamp circuit MOSFET, a synchronous rectifier on the secondary side, or an asymmetric half bridge circuit. The NCP1562 family reduces component count and system size by incorporating high accuracy on critical specifications such as maximum duty cycle limit, undervoltage detector and overcurrent threshold. Two distinctive features of the NCP1562 are soft-stop and a cycle skip current limit with a time threshold. Softstop circuitry powers down the converter in a controlled manner if a severe fault is detected. The cycle skip detector enables a softstop sequence if a continuous overcurrent condition is present. Additional features found in the NCP1562 include line feedforward, frequency synchronization up to 1.0 MHz, cycle by cycle current limit with leading edge blanking (LEB), independent under and overvoltage detectors, adjustable output overlap delay, programmable maximum duty cycle, internal startup circuit and soft-start.
Documents
Technical documentation and resources