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LM26CIM5-ZHA Datenblatt(PDF) 8 Page - Texas Instruments

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Teilenummer LM26CIM5-ZHA
Bauteilbeschribung  Accurate, Factory-Preset Thermostat
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Hersteller  TI [Texas Instruments]
Direct Link  http://www.ti.com
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LM26CIM5-ZHA Datenblatt(HTML) 8 Page - Texas Instruments

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6
TEMP
6
1.8015
V
T
1525.04
2.4182
10
3.479
10-
-
= -
+
´
+
´
6
2
2
O
V = (
3.47 10
(T
30) ) + (1.082 10
(T
30)) + 1.8015 V
-
-
-
´
´
-
´
´
-
VTEMP
GND
HYST
REF
TEMP
SENSOR
+
-
V+
V
+
LM26__D
US
HYST
LM26
SNIS115S – MAY 2001 – REVISED SEPTEMBER 2015
www.ti.com
Functional Block Diagrams (continued)
Figure 5. LM26-_ _D Output Pin Block Diagram
8.3 Feature Description
8.3.1 Hysteresis
The HYST pin level sets the comparator hysteresis. Setting the HYST pin to GND selects 10°C hysteresis, while
setting it to V+ selects 2°C. A series resistor can be used for protection purposes. The input leakage current of
the pin is less than 10 µA. The value of the resistor will depend on the value of V+ as well as the leakage current.
For example with V+ = 3.3 V the input threshold level for VIH = 0.8 × 3.3 V = 2.64 V, thus the voltage drop across
the resistor should be less than 0.66 V. The 10-µA input leakage current requires the resistor value to be less
than 66 k
Ω.
8.3.2 VTEMP Output
The VTEMP output provides an output voltage that can be used to determine the temperature reading of the LM26.
The temperature reading of the LM26 can be calculated using the equation:
(1)
or
(2)
The VTEMP output has very weak drive capability (1-µA source, 40-µA sink). So care should be taken when
attaching circuitry to this pin. Capacitive loading may cause the VTEMP output to oscillate. Simply adding a resistor
in series as shown in Figure 6 and Figure 7 will prevent oscillations from occurring. To determine the value of the
resistor follow the guidelines given in Table 1. The same value resistor will work for either placement of the
resistor. If an additional capacitive load is placed directly on the LM26 output, rather than across CLOAD, it should
be at least a factor of 10 smaller than CLOAD.
Table 1. Resistive Compensation for Capacitive Loading of VTEMP
CLOAD
R (
Ω)
≤100pF
0
1nF
8200
10nF
3000
100nF
1000
≥1µF
430
8
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Product Folder Links: LM26


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