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MAX16915

产品描述Ideal Diode, Reverse-Battery, and Overvoltage Protection Switch/Limiter Controllers with External MOSFETs
文件大小669KB,共10页
制造商Maxim(美信半导体)
官网地址https://www.maximintegrated.com/en.html
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MAX16915概述

Ideal Diode, Reverse-Battery, and Overvoltage Protection Switch/Limiter Controllers with External MOSFETs

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MAX16914/MAX16915
Ideal Diode, Reverse-Battery, and Overvoltage
Protection Switch/Limiter Controllers
with External MOSFETs
Benefits and Features
Architecture Replaces Protection Diodes Reducing
the Forward Voltage, Allowing Operation During
Cold-Crank Conditions
• Transient Voltage Protection Up to +44V and -75V
• Low-Voltage Drop when Used with Properly Sized
External pFETs
• 4.5V to 19V Input-Voltage Operation
Ideal Diode Reverse-Battery Protection Supports
Down to -75V to Protect System During Negative-
Voltage Transients
• Back-Charge Prevention Avoids Discharging
Downstream Tank Capacitance
Overvoltage Protection Enables System to Survive
Up to a +44V Load Dump
• Overvoltage Indicator
• Thermal-Overload Protection
Low Operating Current Meets Stringent Module
Specifications While Maintaining System Protection
• 29µA Low Operating Current
• 6µA Low Shutdown Current
Ordering Information appears at end of data sheet.
General Description
The MAX16914/MAX16915 low-quiescent-current over-
voltage and reverse-battery protection controllers are
designed for automotive and industrial systems that
must tolerate high-voltage transient and fault conditions.
These conditions include load dumps, voltage dips, and
reversed input voltages. The controllers monitor the input
voltage on the supply line and control two external pFETs
to isolate the load from the fault condition. The external
pFETs are turned on when the input supply exceeds 4.5V
and stay on up to the programmed overvoltage threshold.
During high-voltage fault conditions, the controllers regu-
late the output voltage to the set upper threshold voltage
(MAX16915), or switch to high resistance (MAX16914) for
the duration of the overvoltage transient to prevent dam-
age to the downstream circuitry. The overvoltage event is
indicated through an active-low, open-drain output,
OV.
The reverse-battery pFET behaves as an ideal diode,
minimizing the voltage drop when forward biased. Under
reverse bias conditions, the pFET is turned off, prevent-
ing a downstream tank capacitor from being discharged
into the source.
Shutdown control turns off the IC completely, disconnect-
ing the input from the output and disconnecting TERM
from its external resistor-divider to reduce the quiescent
current to a minimum.
Both devices are available in a 10-pin
μMAX®
pack-
age and operate over the automotive -40°C to +125°C
temperature range.
Typical Operating Circuit
V
BATT
P1
P2
V
OUT
Applications
Industrial
Pin Configuration
V
CC
TOP VIEW
+
V
CC
1
GATE1
SENSE IN
SHDN
OV
2
3
4
5
10 GATE2
GATE1
SENSE IN
ON
OFF
SHDN
MAX16914
MAX16915
GATE2
SENSE OUT
OV
TERM
R1
SET
R2
OV
MAX16914
MAX16915
9
8
7
6
SENSE OUT
TERM
SET
GND
GND
µMAX is a registered trademark of Maxim Integrated Products, Inc.
19-4964; Rev 3; 2/15

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