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TMP01FS Datasheet(PDF) 14 Page - Analog Devices |
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TMP01FS Datasheet(HTML) 14 Page - Analog Devices |
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14 / 20 page ![]() TMP01 Rev. E | Page 14 of 20 The current is proportional to the voltage on the VPTAT output, and is calibrated to 4 mA at a temperature of −40°C, to 20 mA for +85°C. The main equation governing the operation of this circuit gives the current as a function of VPTAT ⎟ ⎠ ⎞ ⎜ ⎝ ⎛ ⎟ ⎠ ⎞ ⎜ ⎝ ⎛ + + × − × = 2 5 1 1 3 3 2 5 6 1 R R R R R VREF R R VPTAT R I OUT The resulting temperature coefficient of the output current is 128 μA/°C. 5 8 1 4 2N1711 VREF GND V+ VPTAT TMP01 OP90 4–20mA 5V TO 13.2V 7 4 3 6 2 RL R6 100 Ω R1 243k Ω R2 39.2k Ω R3 100k Ω R5 100k Ω Figure 27. 4mA to 20 mA Current Loop To determine the resistor values in this circuit, first note that VREF remains constant over temperature. Thus, the ratio of R5 over R2 must give a variation of IOUT from 4 mA to 20 mA as VPTAT varies from 1.165 V at −40°C to 1.79 V at +85°C. The absolute value of the resistors is not important, only the ratio. For convenience, 100 kΩ is chosen for R5. Once R2 is calculated, the value of R3 and R1 is determined by substituting 4 mA for IOUT and 1.165 V for VPTAT and solving. The final values are shown in the circuit. The OP90 is chosen for this circuit because of its ability to operate on a single supply and its high accuracy. For initial accuracy, a 10 kΩ trim potentiometer can be included in series with R3, and the value of R3 lowered to 95 kΩ. The potentiometer should be adjusted to produce an output current of 12.3 mA at 25°C. TEMPERATURE-TO-FREQUENCY CONVERTER Another common method of transmitting analog information is to convert a voltage to the frequency domain. This is easily done with any of the low cost monolithic voltage-to-frequency converters (VFCs) available, which feature a robust, open- collector digital output. A digital signal is immune to noise and voltage drops because the only important information is the frequency. As long as the conversions between temperature and frequency are done accurately, the temperature data can be successfully transmitted. A simple circuit to do this combines the TMP01 with an AD654 VFC, as shown in Figure 28. The AD654 outputs a square wave that is proportional to the dc input voltage according to the following equation: T IN OUT C R R V F ) 2 1 ( 10 + = By simply connecting the VPTAT output to the input of the AD654, the 5 mV/°C temperature coefficient gives a sensitivity of 25 Hz/°C, centered around 7.5 kHz at 25°C. The trimming resistor R2 is needed to calibrate the absolute accuracy of the AD654. For more information on that part, consult the AD654 data sheet. Finally, the AD650 can be used to accurately convert the frequency back to a dc voltage on the receiving end. TEMPERATURE SENSOR AND VOLTAGE REFERENCE VREF VPTAT VPTAT 1 2 3 4 8 7 6 5 HYSTERESIS GENERATOR WINDOW COMPARATOR TMP01 R1 R2 R3 V+ FOUT V+ V+ 4 3 1 2 5 AD654 OSC 7 8 6 R1 1.8k Ω R2 500 Ω 5k Ω CT 0.1µF Figure 28. Temperature-to-Frequency Converter |
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