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TMP6131DECR 数据表(PDF) 19 Page - Texas Instruments

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部件名 TMP6131DECR
功能描述  TMP61 Small Silicon-Based Linear Thermistor for Temperature Sensing
PDF  36 Pages
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制造商  TI1 [Texas Instruments]
网页  http://www.ti.com
标志 TI1 - Texas Instruments

TMP6131DECR 数据表(HTML) 19 Page - Texas Instruments

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TMP61
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TMP61
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TMP61
www.ti.com
SBOS921C – DECEMBER 2018 – REVISED SEPTEMBER 2019
Product Folder Links: TMP61
Submit Documentation Feedback
Copyright © 2018–2019, Texas Instruments Incorporated
Typical Application (continued)
(6)
Figure 17. TMP61 Thermal Compensation Circuit
9.2.1.2.2
Thermal Protection With Comparator
The engineer can use the TMP61, a voltage reference, and a comparator to program the thermal protection. As
shown in Figure 18, the output of the comparator will remain low until the voltage of the thermistor divider, with
RBIAS and RTMP61, rises above the threshold voltage, set by R1 and R2. When the output goes high, the
comparator signals an overtemperature warning signal. The engineer can also program the hysteresis to prevent
the output from continuously toggling around the temperature threshold when the output returns low. Either a
comparator with built-in hysteresis or feedback resistors may be used.
Figure 18. Temperature Switch Using TMP61 Voltage Divider and a Comparator
9.2.1.2.3
Thermal Foldback
One application that uses the output voltage of the TMP61 in an active control circuit is thermal foldback. This is
performed to reduce, or fold back, the current driving a string of LEDs, for example. At high temperatures, the
LEDs begin to heat up due to environmental conditions and self-heating. Thus, at a certain temperature threshold
based on the LED's safe operating area, the driving current must be reduced to cool down the LEDs and prevent
thermal runaway. The TMP61 voltage output increases with temperature when the output is in the lower position
of the voltage divider, and can provides a response used to fold back the current. Typically, the current is held at
a specified level until a high temperature is reached, known as the knee point, where the current must be rapidly



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