Rainbow-electronics DS2415 Uživatelský manuál

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1 of 14 112701
FEATURES
§ Real-time clock with fully compatible 1-
Wire
®
MicroLAN interface
§ Uses the same binary time/date
representation as the DS2404 but with 1
second resolution
§ Clock accuracy ±2 minutes per month at
25°C
§ Communicates at 16.3kbits per second
§ Unique, factory-lasered and tested 64-bit
registration number (8-bit family code + 48-
bit serial number + 8-bit CRC tester) assures
absolute traceability because no two parts are
alike
§ 8-bit family code specifies device
communication requirements to bus master
§ Built-in multidrop controller ensures
compatibility with other MicroLAN products
§ Operates over a wide V
DD
voltage range of
2.5V to 5.5V from -40°C to +85°C
§ Low power, 200nA typically with oscillator
running
§ Compact, low cost 6-pin TSOC surface
mount package
PIN ASSIGNMENT
PIN DESCRIPTION
Pin 1 - GND
Pin 2 - 1-Wire
Pin 3 - V
DD
Pin 4 - V
BAT
Pin 5 - X1
Pin 6 - X2
ORDERING INFORMATION
DS2415P 6-pin TSOC package
DS2415P/T&R Tape & Reel of DS2415P
DS2415X Chip Scale Pkg., Tape &
Reel
DESCRIPTION
The DS2415 1-Wire time chip offers a simple solution for storing and retrieving vital time information
with minimal hardware. The DS2415 contains a unique, lasered ROM and a real-time clock/calendar
implemented as a binary counter. Only one pin is required for communication with the device. Utilizing a
backup energy source, the data is nonvolatile and allows for stand-alone operation. The DS2415 features
can be used to add functions such as calendar, time and date stamp, and logbook to any type of electronic
device or embedded application that uses a microcontroller.
OVERVIEW
The DS2415 has two main data components: 1) 64-bit lasered ROM, and 2) real-time clock counter
(Figure 1). The real-time clock utilizes an on-chip oscillator that is connected to an external 32.768kHz
crystal. All data is read and written least significant bit first. The real-time clock functions will not be
DS2415
1-Wire
Time Chip
www.maxim-ic.com
6-Pin TSOC PACKAGE
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Shrnutí obsahu

Strany 1 - Time Chip

1 of 14 112701FEATURES§ Real-time clock with fully compatible 1-Wire® MicroLAN interface§ Uses the same binary time/daterepresentation as the DS2

Strany 2 - 64-BIT LASERED ROM

DS241510 of 141-WIRE SIGNALINGThe DS2415 requires strict protocols to insure data integrity. The protocol consists of four types ofsignaling on one l

Strany 3 - 1-WIRE CRC GENERATOR Figure 4

DS241511 of 14READ/WRITE TIMING DIAGRAM Figure 9Write-1 Time Slot60ms £ tSLOT < 120ms1ms £ tLOW1 < 15ms1ms £ tREC < ¥Write-0 Time Slot60ms £

Strany 4 - CLOCK FUNCTION COMMANDS

DS241512 of 14Read-data Time Slot60ms £ tSLOT < 120ms1ms £ tLOWR < 15ms0 £ tRELEASE < 45ms1ms £ tREC < ¥tRDV = 15mstSU < 1msCRYSTAL PL

Strany 5 - WRITE CLOCK [99h]

DS241513 of 14ABSOLUTE MAXIMUM RATINGS*Voltage on 1-Wire to Ground -0.5V to +7.0VOperating Temperature Range -40°C to +85°CStorage Temperature Range

Strany 6

DS241514 of 14AC ELECTRICAL CHARACTERISTICS (-40°C to +85°C, VPUP = 2.5V to 6.0V, VBAT = 2.5V to 5.5V)PARAMETER SYMBOL MIN TYP MAX UNITS NOTESTime Sl

Strany 7 - Transaction Sequence

DS24152 of 14available until the ROM function protocol has been established. This protocol is described in the ROMfunctions flow chart (Figure 7). Th

Strany 8

DS24153 of 14The functions required to exercise the control functions of the DS2415 are not accessible until the ROMfunction protocol has been satisf

Strany 9

DS24154 of 14TIMEKEEPINGA 32.768kHz crystal oscillator is used as the time base for the real-time clock counter. The oscillator canbe turned on or of

Strany 10 - READ/WRITE TIME SLOTS

DS24155 of 14READ CLOCK [66h]The Read Clock command is used to read the device control byte and the contents of the real-time clockcounter. After hav

Strany 11 - Write-0 Time Slot

DS24156 of 14CLOCK FUNCTION COMMAND FLOW CHART Figure 5

Strany 12 - Read-data Time Slot

DS24157 of 14HARDWARE CONFIGURATION Figure 61-WIRE BUS SYSTEMThe 1-Wire bus is a system that has a single bus master and one or more slaves. In all i

Strany 13 - 13 of 14

DS24158 of 14INITIALIZATIONAll transactions on the 1-ire bus begin with an initialization sequence. The initialization sequence consistsof a Reset Pu

Strany 14 - (-40°C to +85°C, V

DS24159 of 14ROM FUNCTIONS FLOW CHART Figure 7

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