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MAX6497ATA+

产品描述Supervisory Circuits 72V, Overvoltage-Protection Switches/Limiter Controllers with an External MOSFET
产品类别电源/电源管理    电源电路   
文件大小1MB,共17页
制造商Maxim(美信半导体)
官网地址https://www.maximintegrated.com/en.html
标准
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MAX6497ATA+概述

Supervisory Circuits 72V, Overvoltage-Protection Switches/Limiter Controllers with an External MOSFET

MAX6497ATA+规格参数

参数名称属性值
是否Rohs认证符合
厂商名称Maxim(美信半导体)
包装说明HVSON,
Reach Compliance Codecompliant
ECCN代码EAR99
Factory Lead Time6 weeks
其他特性OVSET THRESHOLD VOLTAGE ARE 0.505 AND 0.13V
可调阈值YES
模拟集成电路 - 其他类型POWER SUPPLY SUPPORT CIRCUIT
JESD-30 代码S-PDSO-N8
JESD-609代码e3
长度3 mm
湿度敏感等级1
信道数量1
功能数量1
端子数量8
最高工作温度125 °C
最低工作温度-40 °C
封装主体材料PLASTIC/EPOXY
封装代码HVSON
封装形状SQUARE
封装形式SMALL OUTLINE, HEAT SINK/SLUG, VERY THIN PROFILE
座面最大高度0.8 mm
最大供电电压 (Vsup)72 V
最小供电电压 (Vsup)5.5 V
标称供电电压 (Vsup)14 V
表面贴装YES
技术BICMOS
温度等级AUTOMOTIVE
端子面层Matte Tin (Sn)
端子形式NO LEAD
端子节距0.65 mm
端子位置DUAL
宽度3 mm

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EVALUATION KIT AVAILABLE
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here
for production status of specific part numbers.
MAX6495–MAX6499
72V, Overvoltage-Protection
Switches/Limiter Controllers
with an External MOSFET
Benefits and Features
General Description
The MAX6495–MAX6499 is a family of small, low-current,
overvoltage-protection circuits for high-voltage transient
systems such as those found in automotive and industrial
applications. These devices monitor the input voltage and
control an external nMOSFET switch to isolate the load
at the output during an input overvoltage condition. The
devices operate over a wide supply voltage range from
+5.5V to +72V.
The gate of the nMOSFET is driven high while the
monitored input is below the user-adjustable overvoltage
threshold. An integrated charge-pump circuit provides a
10V gate-to-source voltage to fully enhance the nMOSFET.
When the input voltage exceeds the user-adjusted over-
voltage threshold, the gate of the MOSFET is quickly
pulled low, disconnecting the load from the input. In some
applications, disconnecting the output from the load is not
desirable. In these cases, the protection circuit can be
configured to act as a voltage limiter where the GATE output
saw-tooths to limit the voltage to the load (MAX6495/
MAX6496/MAX6499).
The MAX6496 supports lower input voltages and reduces
power loss by replacing the external reverse battery diode
with an external series pMOSFET. The MAX6496 generates
the proper bias voltage to ensure that the pMOSFET is
on during normal operations. The gate-to-source voltage is
clamped during load-dump conditions, and the pMOSFET is
off during reverse-battery conditions.
The MAX6497/MAX6498 feature an open-drain, undedicated
comparator that notifies the system if the output falls
below the programmed threshold. The MAX6497 keeps
the MOSFET switch latched off until either the input power
or the
SHDN
pin is cycled. The MAX6498 will autoretry
when V
OVSET
falls below 130mV.
These devices are available in small, thermally enhanced,
6-pin and 8-pin TDFN packages and are fully specified
from -40°C to +125°C.
Integration and Small Package Saves Board Space
While Ensuring Reliable System Operation
• 3mm x 3mm TDFN Package
• Supply Voltage Range: +5.5V to +72V
Fast Gate Shutoff During Overvoltage with 100mA
Sink Capability
• Internal Charge-Pump Circuit Ensures 10V Gate-to-
Source Enhancement for Low R
DS(ON)
Performance
• Supports Series pMOSFET for Reverse-Battery
Voltage Protection (MAX6496)
• POK Indicator (MAX6497/MAX6498)
• Adjustable Overvoltage Threshold
• Adjustable Undervoltage Threshold (MAX6499)
Integrated Protection Features and Wide
Temperature Range Improve Reliability
• Overvoltage-Protection Switch Controller Allows
User to Size External nMOSFETs
nMOSFET Latches Off After an
Overvoltage Condition
(MAX6497/MAX6499)
• Thermal-Shutdown Protection
• -40°C to +125°C Operating Temperature Range
AEC-Q100 Qualified (MAX6495ATT/V+,
MAX6496ATA/V+T, and MAX6499ATA/V+ Only)
Applications
Automotive
Industrial
Telecom/Servers/Networking
FireWire
®
Notebook Computers
Selector Guide
and
Ordering Information
appear at end of
data sheet.
FireWire is a registered trademark of Apple, Inc.
19-3778; Rev 16; 4/18

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