NCV5702
High Current IGBT Gate
Driver
The NCV5702 is a high−current, high−performance stand−alone
IGBT driver for high power applications that include solar inverters,
motor control and uninterruptible power supplies. The device offers a
cost−effective solution by eliminating many external components.
Device protection features include Active Miller Clamp, accurate
UVLO, EN input, DESAT protection and Active open−drain FAULT
output. The driver also features an accurate 5.0 V output and separate
high and low (VOH and VOL) driver outputs for system design
convenience. The driver is designed to accommodate a wide voltage
range of bias supplies including unipolar and bipolar voltages. It is
available in a 16−pin SOIC package.
www.onsemi.com
MARKING
DIAGRAM
NCV5702DR2G
AWLYWW
SOIC−16
D SUFFIX
CASE 751B
Features
• High Current Output (+4/−6 A) at IGBT Miller Plateau Voltages
• Low Output Impedance of VOH & VOL for Enhanced IGBT Driving
A
WL
Y
WW
G
= Assembly Location
= Wafer Lot
= Year
= Work Week
= Pb−Free Package
• Short Propagation Delays with Accurate Matching
• Direct Interface to Digital Isolator/Opto−coupler/Pulse Transformer
for Isolated Drive, Logic Compatibility for Non−isolated Drive
• Active Miller Clamp to Prevent Spurious Gate Turn−on
• DESAT Protection with Programmable Delay
• Enable Input for Independent Driver Control
• Tight UVLO Thresholds for Bias Flexibility
• Wide Bias Voltage Range including Negative VEE Capability
• This Device is Pb−Free, Halogen−Free and RoHS Compliant
PIN CONNECTIONS
1
CLAMP
VEEA
VEE
EN
VIN
16
15
14
13
12
11
10
9
2
3
4
5
6
VREF
FLT
GND
Typical Applications
• Motor Control
• Uninterruptible Power Supplies (UPS)
• Automotive Power Supplies
• HEV/EV PTC Heaters
GNDA
NC
VOL
VOH
VCC
RSVD
NC
7
8
DESAT
(Top View)
VREF
EN
DESAT
VCC
ORDERING INFORMATION
See detailed ordering and shipping information on page 6 of
this data sheet.
VCC
VOH
VOL
CLAMP
GND
VIN
FLT
VEE
VEE
Figure 1. Simplified Application Schematic
© Semiconductor Components Industries, LLC, 2018
1
Publication Order Number:
August, 2019 − Rev. 1
NCV5702/D