Datasheet4U Logo Datasheet4U.com

STP8NC70ZFP - N-CHANNEL MOSFET

This page provides the datasheet information for the STP8NC70ZFP, a member of the STP8NC70Z N-CHANNEL MOSFET family.

Datasheet Summary

Description

The third generation of MESH OVERLAY™ Power MOSFETs for very high voltage exhibits unsurpassed on-resistance per unit area while integrating back-toback Zener diodes between gate and source.

Features

  • OF GATE-TO-SOURCE ZENER DIODES The built-in back-to-back Zener diodes have specifically been designed to enhance not only the device’s ESD capability, but also to make them safely absorb possible voltage transients that may occasionally be applied from gate to source. In this respect the Zener voltage is appropriate to achieve an efficient and cost-effective intervention to protect the device’s integrity. These integrated Zener diodes thus avoid the usage of external components. 3/13 www. DataS.

📥 Download Datasheet

Datasheet preview – STP8NC70ZFP

Datasheet Details

Part number STP8NC70ZFP
Manufacturer STMicroelectronics
File Size 438.56 KB
Description N-CHANNEL MOSFET
Datasheet download datasheet STP8NC70ZFP Datasheet
Additional preview pages of the STP8NC70ZFP datasheet.
Other Datasheets by STMicroelectronics

Full PDF Text Transcription

Click to expand full text
STP8NC70Z - STP8NC70ZFP STB8NC70Z - STB8NC70Z-1 N-CHANNEL 700V - 0.90Ω - 6.8A TO-220/FP/D2PAK/I2PAK Zener-Protected PowerMESH™III MOSFET TYPE STP8NC70Z/FP STB8NC70Z/-1 s s VDSS 700V 700V RDS(on) < 1.2 Ω < 1.2 Ω ID 6.8 A 6.8 A 1 3 s s s TYPICAL RDS(on) = 0.9 Ω EXTREMELY HIGH dv/dt AND CAPABILITY GATE-TO- SOURCE ZENER DIODES 100% AVALANCHE TESTED VERY LOW GATE INPUT RESISTANCE GATE CHARGE MINIMIZED D2PAK 1 3 2 TO-220 TO-220FP DESCRIPTION The third generation of MESH OVERLAY™ Power MOSFETs for very high voltage exhibits unsurpassed on-resistance per unit area while integrating back-toback Zener diodes between gate and source. Such arrangement gives extra ESD capability with higher ruggedness performance as requested by a large variety of single-switch applications.
Published: |