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Quantity | Price (ex VAT) |
---|---|
1+ | €0.649 |
10+ | €0.505 |
100+ | €0.458 |
500+ | €0.414 |
1000+ | €0.385 |
2500+ | €0.376 |
5000+ | €0.368 |
Product Information
Product Overview
The LM19CIZ/NOPB is an analog output CMOS Temperature Sensor operates over a -55 to +130°C temperature range. The power supply operating range is +2.4 to +5.5V. The transfer function of LM19CIZ/NOPB is predominately linear, yet has a slight predictable parabolic curvature. The accuracy of the sensor when specified to a parabolic transfer function is ±2.5°C at an ambient temperature of +30°C. The temperature error increases linearly and reaches a maximum of ±3.8°C at the temperature range extremes. The temperature range is affected by the power supply voltage. At a power supply voltage of 2.7 to 5.5V the temperature range extremes are +130°C and -55°C. Decreasing the power supply voltage to 2.4V changes the negative extreme to -30°C, while the positive remains at +130°C. The LM19CIZ/NOPB quiescent current is less than 10μA. Therefore, self-heating is less than 0.02°C in still air.
- Predictable curvature error
- UL recognized component
- 10μA Maximum drain current
- ±0.4% Typical nonlinearity
- 160Ω Maximum output impedance
- Green product and no Sb/Br
Applications
Industrial, Power Management, Computers & Computer Peripherals, Sensing & Instrumentation
Technical Specifications
Voltage
± 2.5°C
-55°C
+130°C
TO-92
3Pins
5.5V
-
-55°C
-
-
Analogue
± 2.5°C
-55°C
130°C
TO-92
2.4V
1Channels
-
130°C
-
No SVHC (27-Jun-2018)
Legislation and Environmental
Country in which last significant manufacturing process was carried outCountry of Origin:China
Country in which last significant manufacturing process was carried out
RoHS
RoHS
Product Compliance Certificate