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ISL6612IRZ-TR5238

产品描述Gate Drivers 12V DRVR W/POST POR OVP 10LD 3X3
产品类别半导体    电源管理   
文件大小596KB,共12页
制造商Renesas(瑞萨电子)
官网地址https://www.renesas.com/
标准
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ISL6612IRZ-TR5238概述

Gate Drivers 12V DRVR W/POST POR OVP 10LD 3X3

ISL6612IRZ-TR5238规格参数

参数名称属性值
Product AttributeAttribute Value
制造商
Manufacturer
Renesas(瑞萨电子)
产品种类
Product Category
Gate Drivers
RoHSDetails
安装风格
Mounting Style
SMD/SMT
封装 / 箱体
Package / Case
DFN EP
激励器数量
Number of Drivers
2 Driver
Output Current3 A
ConfigurationInverting, Non-Inverting
Rise Time26 ns
Fall Time18 ns
电源电压-最大
Supply Voltage - Max
13.2 V
Propagation Delay - Max10 ns
最小工作温度
Minimum Operating Temperature
- 40 C
最大工作温度
Maximum Operating Temperature
+ 85 C
系列
Packaging
Cut Tape
系列
Packaging
MouseReel
系列
Packaging
Reel
FeaturesIndependent
高度
Height
1 mm (Max)
长度
Length
3 mm
Number of Outputs2 Output
宽度
Width
3 mm
Maximum Clock Frequency2000 kHz
Moisture SensitiveYes
工作电源电压
Operating Supply Voltage
12 V
工厂包装数量
Factory Pack Quantity
6000

文档预览

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DATASHEET
ISL6612, ISL6613
Advanced Synchronous Rectified Buck MOSFET Drivers with Protection Features
The ISL6612 and ISL6613 are high frequency MOSFET
drivers specifically designed to drive upper and lower power
N-Channel MOSFETs in a synchronous rectified buck
converter topology. These drivers combined with HIP63xx or
ISL65xx Multi-Phase Buck PWM controllers and N-Channel
MOSFETs form complete core-voltage regulator solutions for
advanced microprocessors.
The ISL6612 drives the upper gate to 12V, while the lower
gate can be independently driven over a range from 5V to
12V. The ISL6613 drives both upper and lower gates over a
range of 5V to 12V. This drive-voltage provides the flexibility
necessary to optimize applications involving trade-offs
between gate charge and conduction losses.
An advanced adaptive zero shoot-through protection is
integrated to prevent both the upper and lower MOSFETs from
conducting simultaneously and to minimize the dead time.
These products add an overvoltage protection feature
operational before VCC exceeds its turn-on threshold, at which
the PHASE node is connected to the gate of the low side
MOSFET (LGATE). The output voltage of the converter is then
limited by the threshold of the low side MOSFET, which
provides some protection to the microprocessor if the upper
MOSFET(s) is shorted during startup. The over-temperature
protection feature prevents failures resulting from excessive
power dissipation by shutting off the outputs when its junction
temperature exceeds +150°C (typically). The driver resets once
its junction temperature returns to +108°C (typically).
These drivers also feature a three-state PWM input which,
working together with Intersil’s multi-phase PWM controllers,
prevents a negative transient on the output voltage when the
output is shut down. This feature eliminates the Schottky
diode that is used in some systems for protecting the load
from reversed output voltage events.
FN9153
Rev 9.00
June 15, 2010
Features
• Pin-to-pin Compatible with HIP6601 SOIC family for Better
Performance and Extra Protection Features
• Dual MOSFET Drives for Synchronous Rectified Bridge
• Advanced Adaptive Zero Shoot-Through Protection
- Body Diode Detection
- Auto-zero of r
DS(ON)
Conduction Offset Effect
• Adjustable Gate Voltage (5V to 12V) for Optimal Efficiency
• 36V Internal Bootstrap Schottky Diode
• Bootstrap Capacitor Overcharging Prevention
• Supports High Switching Frequency (up to 2MHz)
- 3A Sinking Current Capability
- Fast Rise/Fall Times and Low Propagation Delays
• Three-State PWM Input for Output Stage Shutdown
• Three-State PWM Input Hysteresis for Applications With
Power Sequencing Requirement
• Pre-POR Overvoltage Protection
• VCC Undervoltage Protection
• Over Temperature Protection (OTP) with +42°C
Hysteresis
• Expandable Bottom Copper Pad for Enhanced Heat
Sinking
• Dual Flat No-Lead (DFN) Package
- Near Chip-Scale Package Footprint; Improves PCB
Efficiency and Thinner in Profile
• Pb-Free Available (RoHS Compliant)
Applications
• Core Regulators for Intel® and AMD® Microprocessors
• High Current DC/DC Converters
• High Frequency and High Efficiency VRM and VRD
Related Literature
• Technical Brief TB363 “Guidelines for Handling and
Processing Moisture Sensitive Surface Mount Devices
(SMDs)”
• Technical Brief TB417 for Power Train Design, Layout
Guidelines, and Feedback Compensation Design
FN9153 Rev 9.00
June 15, 2010
Page 1 of 12
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