ds1720 Maxim Integrated Products, Inc., ds1720 Datasheet

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ds1720

Manufacturer Part Number
ds1720
Description
Ds1720 Econ-digital Thermometer And Thermostat
Manufacturer
Maxim Integrated Products, Inc.
Datasheet

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FEATURES
DESCRIPTION
The DS1720 Digital Thermometer and Thermostat provides 9–bit temperature readings which indicate
the temperature of the device. With three thermal alarm out-puts, the DS1720 can also act as a thermostat.
T
T
T
that of TL.
User–defined temperature settings are stored in non–volatile memory, so parts can be programmed prior
to insertion in a system, as well as used in stand–alone applications without a CPU. Temperature settings
and temperature readings are all communicated to/from the DS1720 over a simple 3–wire interface.
www.maxim-ic.com
HIGH
H
L
. T
. T
Requires no external components
Supply voltage range covers from 2.7V to
5.5V
Measures temperatures from –55°C to
+125°C in 0.5°C increments. Fahrenheit
equivalent is –67°F to +257°F in 0.9°F
increments
Temperature is read as a 9–bit value
Converts temperature to digital word in 1
second (max)
Thermostatic settings are user–definable and
non–volatile
Data is read from/written via a 3–wire serial
interface (CLK, DQ,
Applications include thermostatic controls,
industrial systems, consumer products,
thermometers, or any thermally sensitive
system
8–pin SOIC (208 mil) package
COM
LOW
is driven high if the DS1720’s temperature is greater than or equal to a user–defined temperature
is driven high when the temperature exceeds T
is driven high if the DS1720’s temperature is less than or equal to a user–defined temperature
RST
)
1 of 14
ECON-Digital Thermometer and
PIN ASSIGNMENT
PIN DESCRIPTION
DQ
CLK/
GND
T
T
T
V
RST
H
HIGH
LOW
COM
DD
and stays high until the temperature falls below
CLK/CONV
CONV
GND
RST
DS1720S 8-Pin SOIC (208-mil)
DQ
– 3–Wire Input/Output
– 3–Wire Clock Input and
– 3–Wire Reset Input
– Ground
– Low Temperature Trigger
– High/Low Combination Trigger
– Power Supply Voltage (3V-5V)
– High Temperature Trigger
Stand–alone
Convert Input
1
2
3
4
8
7
6
5
V
T
T
T
HIGH
LOW
COM
DD
Thermostat
DS1720
020106

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ds1720 Summary of contents

Page 1

... DESCRIPTION The DS1720 Digital Thermometer and Thermostat provides 9–bit temperature readings which indicate the temperature of the device. With three thermal alarm out-puts, the DS1720 can also act as a thermostat driven high if the DS1720’s temperature is greater than or equal to a user–defined temperature ...

Page 2

... A block diagram of the temperature measurement circuitry is shown in Figure 2. The DS1720 measures temperature by counting the number of clock cycles that an oscillator with a low temperature coefficient goes through during a gate period determined by a high temperature coefficient oscillator. The counter is preset with a base count that corresponds to –55°C. If the counter reaches zero before the gate period is over, the temperature register, which is also preset to the – ...

Page 3

... DS1720 FUNCTIONAL BLOCK DIAGRAM Figure DS1720 ...

Page 4

... DS1720 as either a 9–bit word (taking words, with the most significant 7 bits being ignored or set to zero, as illustrated in Table 1. After the MSB, the DS1720 will output 0s. Note that temperature is represented in the DS1720 in terms of a ½°C LSB, yielding the following 9–bit format: MSB ...

Page 5

... OPERATION–THERMOSTAT CONTROLS Three thermally triggered outputs thermostat, as shown in Figure 3. When the DS1720’s temperature meets or exceeds the value stored in the high temperature trip register, the output T DS1720’s measured temperature becomes less than the stored value in the high temperature register, TH. ...

Page 6

... NVB = Nonvolatile Memory Busy Flag. 1=write memory is not busy. A copy to E CPU = CPU use bit. If CPU=0, the CLK/ If CPU is 1, the DS1720 will be used with a CPU communicating to it over the 3–wire port, and the operation of the CLK/ pin normal clock in concert with DQ and ...

Page 7

... For data inputs, the data must be valid during the rising edge of a clock cycle. Data bits are output on the falling edge of the clock, and remain valid through the rising edge. When reading data from the DS1720, the DQ pin goes to a high impedance state while the clock is high. Taking ...

Page 8

... This command stops temperature conversion. No further data is required. This command may be used to halt a DS1720 in continuous conversion mode. After issuing this command, the current temperature measurement will be completed, and then the DS1720 will remain idle until a Start Convert T is issued to resume continuous operation. ...

Page 9

... DS1720 COMMAND SET Table 3 INSTRUCTION DESCRIPTION TEMPERATURE CONVERSION COMMANDS Read Temperature Temperature Reads last converted temperature value from temperature register Read Counter Reads value of count remaining from counter Read Slope Reads value of the slope accumulator Start Convert T Initiates temperature conversion Stop Convert T ...

Page 10

... FUNCTION EXAMPLE Example: CPU sets up DS1720 for continuous conversion and thermostatic function. DS1720 MODE CPU MODE (3-WIRE DATA (LSB FIRST) 0Ch TCPU issues Write Config command ...

Page 11

... READ DATA TRANSFER Figure 4 WRITE DATA TRANSFER Figure DS1720 ...

Page 12

... Exposure to absolute maximum rating conditions for extended periods of time may affect reliability. The Dallas Semiconductor DS1720 is built to the highest quality standards and manufactured for long term reliability. All Dallas Semiconductor devices are made using the same quality materials and manufacturing methods. However, the DS1720 is not exposed to environmental stresses, such as burn– ...

Page 13

... V , and CONV RST DD = 0.6V 0.4V =2.7V to 5.5V) DD MAX UNITS 750 150 1.75 MHz 500 500 =2.7V to 5.5V) DD MIN TYP MAX 10 50k 10 = GND. 2 memory. = 5.5V. DD DS1720 NOTES UNITS ms Writes Years ...

Page 14

... DS1720 TYPICAL THERMOMETER ERROR DS1720 DS1720 ...

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