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DS1642 Datasheet PDF

Part Series:DS1642 Series
Category:Real Time Clocks
Description:MAXIM INTEGRATED PRODUCTS DS1642-100+ NVRAM, SRAM, 2KB, 2K x 8Bit, 100ns
Document:DS1642-100+ Datasheet PDF (13 Pages)

DS1642 Real Time Clocks Datasheet PDF

#3
DS1642-100+
0.7
Dallas Semiconductor
#4
DS1642-100
0.7
Dallas Semiconductor

DS1642 Datasheet PDF Real Time Clocks

13 Pages
Maxim Integrated
Real Time Clock Parallel 2KByte 24Pin EDIP
13 Pages
Maxim Integrated
Real Time Clock Parallel 2KByte 24Pin EDIP
13 Pages
Maxim Integrated
IC RAM TIMEKEEP NV 70NS 24-EDIP

DS1642-100+ - Maxim Integrated Specifications

TYPE
DESCRIPTION
Mounting Style
Through Hole
Number of Pins
24 Pin
Supply Voltage (DC)
4.50V (min)
Operating Voltage
4.5V ~ 5.5V
Case/Package
EDIP-24
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DS1642-100+ - Maxim Integrated Function Overview

The DS1642-100+ is a non-volatile timekeeping RAM in 24 pin EDIP package. This device is a 2k x 8 static RAM with fully functional real time clock (RTC) which can be accessible in a bytewide format. It can be easily substituted in ROM and EEPROM sockets providing read/write non-volatility and the addition of the real time clock function. The RTC registers contain year, month, date, day, hours, minutes and seconds data in 24-hour BCD format. Corrections for the day of the month and leap year are made automatically. The RTC clock registers are double-buffered to avoid access of incorrect data that can occur during clock update cycles. DS1642 contains its own power-fail circuitry which deselects the device when the VCC supply is in an out of tolerance condition. This feature prevents loss of data from unpredictable system operation brought on by low VCC as errant access and update cycles are avoided.
Supply voltage range is 4.5V to 5.5V
Operating temperature range from 0°C to 70°C
Standard JEDEC bytewide 2k x 8 static RAM pin-out
Clock registers are accessed identically to the static RAM
Non-volatile with over 10 years of operation in the absence of power
Quartz accuracy ±1 minute a month at +25°C, factory calibrated
Power-fail write protection allows for ±10% VCC power supply tolerance
Lithium energy source is electrically disconnected until power is applied for first time
UL recognized
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