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PT7M6314US28D3

产品描述Supervisory Circuit
文件大小420KB,共8页
制造商Pericom Semiconductor Corporation (Diodes Incorporated)
官网地址https://www.diodes.com/
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PT7M6314US28D3概述

Supervisory Circuit

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PT7M6314US
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Supervisory Circuit
Features
Highly accurate:
1.5%
(25°
C)
Detect voltage range: 1.8 to 5V in 100mV increments
Operating voltage range: 1.0V ~ 5.5V
Operating temperature range: -40° to + 85°
C
C
Detect voltage temperature characteristics:
2.5% 
TYP
Output configuration: Bi-dir
Four reset timeout period available:
typical 1.6ms for PT7M6314USxxD1;
typical 26ms for PT7M6314USxxD2;
typical 200ms for PT7M6314USxxD3;
typical 1570ms for PT7M6314USxxD4;
General Description
The series are designed to monitor power supplies in µ
P
and digital systems. It provides excellent circuit
reliability and low cost by eliminating external
components and adjustments, and a debounced manual
reset input.
This device performs a single function: it asserts a reset
signal whenever the V
CC
supply voltage falls below a
preset threshold or whenever manual reset is asserted.
Reset remains asserted for an internally programmed
interval (reset timeout period) after V
CC
has risen above
the reset threshold or manual reset is de-asserted.
PT7M6314USxx are bidirectional output, allowing it to
be directly connected to µ with bidirectional reset inputs.
P
The serials come with factory-trimmed reset threshold
voltages in 100mV increments from 2.5V to 5V. Preset
timeout periods of 200ms and 1570ms (typ.) are available.
Pin Configuration
PT7M6315USxxD3F/D4F
1
GND
VCC
4
2
RST
SOT143-4
MR
3
Pin Description
Name Type
RST
I/O
Description
Reset Output and Pushbutton Input:
RST is asserted when V
CC
drops below voltage threshold V
TH-
. Active
low. When other devices pull RST low, the device will speed its rising edge once the reset condition release.
Manual Reset:
A logic low on MR asserts reset. Reset remains asserted as long as MR is low, and for the
reset timeout period (t
RS
) after the reset conditions are terminated. Connect to V
CC
if not used.
Ground
Supply Voltage.
MR
GND
V
CC
I
P
P
2016-01-0003
1
PT0196-6
01/15/16
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