EEWORLDEEWORLDEEWORLD

Part Number

Search

XC6117B520

Description
CMOS Voltage Detector
File Size519KB,26 Pages
Manufacturer
Download Datasheet View All

XC6117B520 Overview

CMOS Voltage Detector

Preliminary
◆CMOS
Voltage Detector
◆Manual
Reset Input
◆Watchdog
Functions
◆Built-in
Delay Circuit
◆Detect
Voltage Range: 1.6~5.0V, ± 2%
◆Reset
Function is Selectable
V
DFL
(Low When Detected)
V
DFH
(High When Detected)
■APPLICATIONS
●Microprocessor
reset circuits
●Memory
battery backup circuits
●System
power-on reset circuits
●Power
failure detection
■GENERAL
DESCRIPTION
■FEATURES
Detect Voltage Range
Hysteresis Range
: 1.6V ~ 5.0V, +2%
(100mV increments)
: V
DF
x 5%, TYP.
(XC6101~XC6107)
V
DF
x 0.1%, TYP.
(XC6111~XC6117)
: 1.0V ~ 6.0V
The XC6101~XC6107, XC6111~XC6117 series are
groups of high-precision, low current consumption voltage
detectors with manual reset input function and watchdog
functions incorporating CMOS process technology. The
series consist of a reference voltage source, delay circuit,
comparator, and output driver.
With the built-in delay circuit, the XC6101 ~ XC6107,
XC6111 ~ XC6117 series’ ICs do not require any external
components to output signals with release delay time.
Moreover, with the manual reset function, reset can be
asserted at any time. The ICs produce two types of
output; V
DFL
(low when detected) and V
DFH
(high when
detected).
With the XC6101 ~ XC6105, XC6111 ~ XC6115 series’
ICs, the WD pin can be left open if the watchdog function
is not used.
Whenever the watchdog pin is opened, the internal
counter clears before the watchdog timeout occurs.
Since the manual reset pin is internally pulled up to the V
IN
pin voltage level, the ICs can be used with the manual
reset pin left unconnected if the pin is unused.
The detect voltages are internally fixed 1.6V ~ 5.0V in
increments of 100mV, using laser trimming technology.
Six watchdog timeout period settings are available in a
range from 6.25msec to 1.6sec.
Seven release delay time 1 are available in a range from
3.13msec to 1.6sec.
Operating Voltage Range
Detect Voltage Temperature
Characteristics
: +100ppm/
O
C (TYP.)
Output Configuration
: N-channel open drain,
CMOS
Watchdog Pin
: Watchdog input
If watchdog input maintains
‘H’ or ‘L’ within the watchdog
timeout period, a reset signal
is output to the RESET
output pin
Manual Reset Pin
: When driven ‘H’ to ‘L’ level
signal, the MRB pin voltage
asserts forced reset on the
output pin.
Release Delay Time
: 1.6sec, 400msec, 200msec,
100msec, 50msec, 25msec,
3.13msec (TYP.) can be
selectable.
Watchdog Timeout Period
: 1.6sec, 400msec, 200msec,
100msec, 50msec,
6.25msec (TYP.) can be
selectable.
■TYPICAL
APPLICATION CIRCUIT
■TYPICAL
PERFORMANCE
CHARACTERISTICS
●Supply
Current vs. Input Voltage
XC61X1~XC61X5 (2.7V)
30
Supply Current:
 
ISS (µA)
25
20
15
10
5
0
0
1
2
3
4
5
Input Voltage:
 
VIN (V)
6
Ta=-40
Ta=25
Ta=85
* Not necessary with CMOS output products.
* ‘x’ represents both ‘0’ and ‘1’. (ex. XC61x1⇒XC6101 and XC6111)
XC6101_07_XC6111_17 ETR0207_009
1/26
EEWorld’s 15th Anniversary, Thanks to All of You! A Review of Those Unforgettable Little Happinesses~
In a blink of an eye, EEWorld is 15 years old. There are so many wonderful memories along the way. Let us recall those unforgettable little happiness, those wonderful things that were made possible by...
EEWORLD社区 Talking
Please help me answer some questions about C6678 multi-core startup
I haven't got the board yet, and now I want to understand some questions. I hope you can give me some advice. 1. Regarding the order of c6678 multi-core startup, I have read some information. After po...
guzl86 DSP and ARM Processors
Beacon navigation sound positioning and recognition - analysis of sound source positioning algorithm
1. Analysis of TDOA (Time Difference Algorithm) Principle A commonly used method for sound localization ( time difference method ): the position of an unknown node ( sound module ) is calculated by me...
bqgup Creative Market
AVR chip locked, help needed
Today I used ISp to download atmega16, and the chip seemed to be locked. I used progisp software. After I bought a new chip, I soldered an Atmega16 and 51 on the same board, using the same power suppl...
jialaolian Microchip MCU
TI Live | How to make industrial communications more reliable? Take a look at this cost-optimized solution!
Reliable! This is the goal that industrial environments strive for. It must run 24/7 without interruption, and must be reliable and safe without downtime. However, environmental factors are often not ...
EEWORLD社区 Industrial Control Electronics
TMS320F28335 Study Notes - SPI Module
[p=26, null, left][color=#333333][font=Arial]What is the SPI interface? [/font][/color][/p][p=26, null, left][color=#333333][font=Arial]The SPI interface is a high-speed synchronous serial input and o...
cherish Microcontroller MCU

EEWorld
subscription
account

EEWorld
service
account

Automotive
development
circle

Robot
development
community

Index Files: 287  1595  1987  2157  2804  6  33  41  44  57 
Datasheet   0 1 2 3 4 5 6 7 8 9 A B C D E F G H I J K L M N O P Q R S T U V W X Y Z
Room 1530, 15th Floor, Building B, No. 18 Zhongguancun Street, Haidian District, Beijing Telephone: (010) 82350740 Postal Code: 100190
Copyright © 2005-2026 EEWORLD.com.cn, Inc. All rights reserved 京ICP证060456号 京ICP备10001474号-1 电信业务审批[2006]字第258号函 京公网安备 11010802033920号