ds1631a Maxim Integrated Products, Inc., ds1631a Datasheet

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ds1631a

Manufacturer Part Number
ds1631a
Description
High-precision Digital Thermometer And Thermostat
Manufacturer
Maxim Integrated Products, Inc.
Datasheet

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FEATURES
DESCRIPTION
The DS1631, DS1631A, and DS1731 digital thermometers provide 9, 10, 11, or 12-bit temperature
readings over a -55°C to +125°C range. The DS1631 and DS1631A thermometer accuracy is ±0.5°C
from 0°C to +70°C with 3.0V ≤ V
3.0V ≤ V
points (T
EEPROM so they can be programmed prior to installation. In addition, the DS1631A automatically
begins taking temperature measurements at power-up, which allows it to function as a stand-alone
thermostat. Communication with the DS1631/DS1631A/DS1731 is achieved through a 2-wire serial
interface, and three address pins allow up to eight devices to be multidropped on the same 2-wire bus.
Pin descriptions for the DS1631/DS1631A/DS1731 are provided in Table 2 and user-accessible registers
are summarized in Table 3. A functional diagram is shown in Figure 1.
www.maxim-ic.com
DS1631 and DS1631A Provide ±0.5°C
Accuracy over a 0°C to +70°C Range
DS1731 Provides ±1°C Accuracy over a
-10°C to +85°C Range
DS1631A Automatically Begins Taking
Temperature Measurements at Power-Up
Operating Temperature Range: -55°C to
+125°C (-67°F to +257°F)
Temperature Measurements Require No
External Components
Output Resolution is User-Selectable to 9,
10, 11, or 12 Bits
Wide Power-Supply Range (+2.7V to +5.5V)
Converts Temperature-to-Digital Word in
750ms (max)
Multidrop Capability Simplifies Distributed
Temperature-Sensing Applications
Thermostatic Settings are User-Definable
and Nonvolatile (NV)
Data is Read/Written Through 2-Wire Serial
Interface (SDA and SCL Pins)
All Three Devices are Available in 8-Pin
μSOP Packages and the DS1631 is Also
Available in a 150mil SO package—see
Table 1 for Ordering Information
H
DD
and T
≤ 5.5V. The thermostat on all three devices provides custom hysteresis with user-defined trip
L
). The T
H
and T
L
DD
registers and thermometer configuration settings are stored in NV
≤ 5.5V, and the DS1731 accuracy is ±1°C from -10°C to +85°C with
1 of 15
PIN CONFIGURATIONS
APPLICATIONS
Network Routers and Switches
Cellular Base Stations
Portable Products
Any Space-Constrained Thermally Sensitive
Product
See Table 2 for Pin Descriptions
GND
SDA
T
SCL
GND
Thermometer and Thermostat
(DS1631U+, DS1631AU+,
SDA
SCL
T
OUT
DS1631/DS1631A/DS1731
OUT
(DS1631Z+, DS1631S+)
SO (150mil and 208mil)
DS1731U+)
1
2
3
4
1
2
3
4
μSOP
High-Precision Digital
8
7
6
5
8
7
6
5
V
A
A
A
V
A
A
A
DD
0
2
1
DD
0
1
2
102307

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ds1631a Summary of contents

Page 1

... Table 1 for Ordering Information DESCRIPTION The DS1631, DS1631A, and DS1731 digital thermometers provide 9, 10, 11, or 12-bit temperature readings over a -55°C to +125°C range. The DS1631 and DS1631A thermometer accuracy is ±0.5°C from 0°C to +70°C with 3.0V ≤ V 3.0V ≤ V ≤ 5.5V. The thermostat on all three devices provides custom hysteresis with user-defined trip ...

Page 2

... DS1631 in Lead-Free 8-Pin μSOP, 3000 Piece Tape-and- Reel DS1631 in Lead-Free 150 mil 8-Pin SO, 2500 Piece Tape- and-Reel DS1631A in Lead-Free 8-Pin μSOP DS1631A in Lead-Free 8-Pin μSOP, 3000 Piece Tape-and- Reel DS1631 in Lead-Free 208 mil 8-Pin SO, 2000 Piece Tape- and-Reel DS1631 in Lead-Free 300 mil 8-Pin DIP DS1731 in Lead-Free 8-Pin μ ...

Page 3

... CONFIGURATION REGISTER AND CONTROL LOGIC TEMPERATURE SENSOR and ΔΣ ADC TEMPERATURE REGISTER T REGISTER H T REGISTER L -0.5V to +6.0V -55°C to +125°C -55°C to +125°C See IPC/JEDEC J-STD-020A Specification +220° DS1631/DS1631A/DS1731 DIGITAL COMPARATOR/LOGIC T OUT ...

Page 4

... DC ELECTRICAL CHARACTERISTICS PARAMETER SYMBOL Supply Voltage V DD DS1631, DS1631A T ERR Thermometer Error DS1731 T ERR Thermometer Error Low-Level Input V IL Voltage High-Level Input V IH Voltage SDA Low-Level V OL1 Output Voltage V OL2 Input Current Each I/O Pin Active Supply I DD Current Standby Supply I STBY ...

Page 5

... and SCL pin open; SDA = V OUT [min [min] = 50ns DS1631/DS1631A/DS1731 = -55°C to +125°C.) A TYP MAX UNITS NOTES 93.75 187.5 ms 375 750 400 kHz µs µs µs µs µs 0.9 µs ns 1000 ns B 300 ns B µs ...

Page 6

... CONDITION -55°C to +55°C EEWR t -55°C to +55°C EEDR 0.8 0.6 0.4 0.2 0 -0.2 -0.4 -0.6 -0.8 - and 0 DS1631/DS1631A/DS1731 = -55°C to +125°C.) A MIN TYP MAX UNITS 4 10 50k Writes 10 Years DS1731 +3 σ Mean -3 σ REFERENCE TEMPERATURE (° ...

Page 7

... Continuous conversions can be restarted at any time using the Start Convert T command. In one-shot mode the DS1631A performs a single conversion at power-up, and the DS1631 and DS1731 perform a single temperature conversion when a Start Convert T command is issued. For all three devices, when the conversion is complete the device enters a low-power idle state and remains in that state until a single temperature conversion is again initiated by a Start Convert T command ...

Page 8

... T H and T registers (see Figure 4) must be in two’s complement format H L and and T H and T registers is achieved using the Access DS1631/DS1631A/DS1731 bit 11 bit 10 bit bit 3 bit 2 bit DIGITAL OUTPUT ...

Page 9

... TLF bit is set to 1. Once THF and/or TLF has been set, it remains set until overwritten with the user or until the power is cycled. DS1631A STAND-ALONE THERMOSTAT OPERATION Since the DS1631A automatically begins taking temperature measurements at power-up, it can function as a standalone thermostat (i.e., it can provide thermostatic operation without microcontroller communication). For standalone operation, the NV T the configuration register should be programmed to the desired values prior to installation ...

Page 10

... Continuous Conversion Mode. The Start Convert T command initiates continuous temperature conversions. RESOLUTION CONVERSION TIME R0 (BIT DS1631/DS1631A/DS1731 register. THF remains H register. TLF remains a L (MAX) 93.75ms 187.5ms 375ms 750ms ...

Page 11

... The DS1631, DS1631A, and DS1731 communicate over a bidirectional 2-wire serial data bus that consists of a serial clock (SCL) signal and serial data (SDA) signal. The DS1631, DS1631A, and DS1731 interface to the bus through their SCL input pins and open-drain SDA I/O pins. ...

Page 12

... WRITES The master can write data to the DS1631/DS1631A/DS1731 by issuing an Access Config, Access TH, or Access TL command following the control byte (see Figures 9b and 9d). Since the R/ byte was a 0 (“write”), the DS1631/DS1631A/DS1731 are already prepared to receive data. Therefore, after receiving an ACK in response to the command byte, the master device can immediately begin transmitting data ...

Page 13

... ACK in response to the command, the master must generate a repeated START followed by a control byte with the same slave address as the first control byte. However, this time the which tells the DS1631/DS1631A/DS1731 that a “read” is being performed. After the DS1631/DS1631A/DS1731 send an ACK in response to this control byte, it begins transmitting the requested data on the next clock cycle ...

Page 14

... Figure 9 ( e). 2-WIRE INTERFACE TIMING THERM = DS1631, DS1631A, or DS1731 DS1631/DS1631A/DS1731 ...

Page 15

... OPERATION EXAMPLE In this example, the master configures the DS1631/DS1631A/DS1731 (A conversions and thermostatic function. MASTER THERMETER* MODE MODE ...

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