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TMP64 датащи(PDF) 9 Page - Texas Instruments

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номер детали TMP64
подробное описание детали  TMP63 짹1% 100-k廓 Linear Thermistor With 0402 and 0603 Package Options
PDF  28 Pages
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производитель  TI1 [Texas Instruments]
домашняя страница  http://www.ti.com
Logo TI1 - Texas Instruments

TMP64 датащи(HTML) 9 Page - Texas Instruments

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VTEMP
VBIAS
+
±
VTEMP
VBIAS
+
±
IBIAS
V
TEMP = I BIAS × R TMP63
V
TEMP =
VBIAS × R TMP63
R BIAS + R TMP63
RBIAS
RTMP63
RTMP63
TCR =
:RT2 F RT1;
:T2 F T1; × R:T2+T1;
2
9
TMP63
www.ti.com
SNIS211C – OCTOBER 2019 – REVISED JUNE 2020
Product Folder Links: TMP63
Submit Documentation Feedback
Copyright © 2019–2020, Texas Instruments Incorporated
8 Detailed Description
8.1 Overview
The TMP63 silicon linear thermistor has a linear positive temperature coefficient (PTC) that results in a uniform
and consistent temperature coefficient resistance (TCR) across a wide operating temperature range. TI uses a
special silicon process where the the doping level and active region areas devices control the key characteristics
(the temperature coefficient resistance (TCR) and nominal resistance (R25)) . The device has an active area and
a substrate due to the polarized terminals. Connect the positive terminal to the highest voltage potential. Connect
the negative terminal to the lowest voltage potential.
Unlike an NTC, which is a purely resistive device, the TMP63 resistance is affected by the current across the
device and the resistance changes when the temperature changes. In a voltage divider circuit, it is recommended
to maintain the top resistor value at 100 kΩ. Changing the top resistor value or the VBIAS value changes the
resistance vs temperature table (R-T table) of the TMP63, and subsequently the polynomials as described in the
Design Requirements section. Consult the TMP63 R-T table section for more information.
Equation 1 can help the user approximate the TCR.
where
•
TCR is in ppm/°C
(1)
Key terms and definitions:
•
ISNS: Current flowing through the TMP63 device
•
VSNS: Voltage across the two TMP63 terminal
•
IBIAS: Current supplied by the biasing circuit.
•
VBIAS: Voltage supplied by the biasing circuit.
•
VTEMP: Output voltage that corresponds to the measured temperature. Note that this is different from VSNS. In
the use case of a voltage divider circuit with the TMP63 in the high side, VTEMP is measured across RBIAS.
8.2 Functional Block Diagram
Figure 10. Typical Implementation Circuits



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