B57500K103A1 EPCOS Inc, B57500K103A1 Datasheet

THERMISTOR NTC 10K OHM 2% PROBE

B57500K103A1

Manufacturer Part Number
B57500K103A1
Description
THERMISTOR NTC 10K OHM 2% PROBE
Manufacturer
EPCOS Inc
Series
B57500r
Type
NTCr
Datasheet

Specifications of B57500K103A1

Resistance In Ohms @ 25°c
10K
Resistance Tolerance
±2%
B Value Tolerance
±0.5%
B25/100
3988K
Operating Temperature
0°C ~ 100°C
Power - Max
60mW
Lead Length
18.50" (470.00mm)
Mounting Type
Free Hanging
Package / Case
Cylindrical Probe, Copper
Resistance
10 KOhms
Tolerance
3 %
Termination Style
Wire
Operating Temperature Range
0 C to + 100 C
Power Rating
60 mW
Dimensions
6 mm W
Rohs Compliant
Yes
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
B0/50
-
B25/50
-
B25/75
-
B25/85
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
495-2171
B57500K 103A 1
B57500K0103A001
NTC thermistors for
temperature measurement
Probe assemblies
Series/Type:
Date:
© EPCOS AG 2009. Reproduction, publication and dissemination of this publication, enclosures hereto and the
information contained therein without EPCOS' prior express consent is prohibited.
B57500K, B57501K
February 2009

Related parts for B57500K103A1

B57500K103A1 Summary of contents

Page 1

NTC thermistors for temperature measurement Probe assemblies Series/Type: B57500K, B57501K Date: February 2009 © EPCOS AG 2009. Reproduction, publication and dissemination of this publication, enclosures hereto and the information contained therein without EPCOS' prior express consent is prohibited. ...

Page 2

Temperature measurement Probe assemblies Applications Evaporator sensor for air conditioning systems Heating systems Features Copper case Twin cable (black) PVC-insulated wires with tinned ends, T Options Alternative resistance ratings, rated temperatures, resistance tolerances, wire lengths and AWG 22, AWG 24 ...

Page 3

Temperature measurement Probe assemblies General technical data Climatic category Max. power Resistance tolerance Rated temperature Dissipation factor Thermal cooling time constant Thermal time constant Heat capacity Insulation resistance Test voltage Electrical specification and ordering codes Type AWG K500 26 K501 ...

Page 4

Temperature measurement Probe assemblies Reliability data Test Standard Storage in IEC dry heat 60068-2-2 Storage in damp IEC heat, steady state 60068-2-78 Storage in coldness Rapid temperature IEC cycling (in fluid) 60068-2-14 Vibration IEC resistance 60068-2-6 Long-term stability (empirical value) ...

Page 5

Temperature measurement Probe assemblies R/T characteristics R/T No. 8016 3988 K 25/100 R /R (%/ 55.0 96.3 7.4 50.0 67.01 7.2 45.0 47.17 6.9 40.0 33.65 6.7 35.0 24.26 6.4 30.0 17.7 6.2 ...

Page 6

Temperature measurement Probe assemblies Cautions and warnings General See "Important notes" at the end of this document. Storage Store thermistors only in original packaging. Do not open the package prior to storage. Storage conditions in original packaging: storage temperature humidity ...

Page 7

Temperature measurement Probe assemblies Mounting Ensure that no thermo-mechanical stress occurs due to production processes (curing or overmolding processes) when thermistors are sealed, potted or overmolded or during their subsequent operation. The maximum temperature of the thermistor must not be ...

Page 8

Temperature measurement Probe assemblies Symbols and terms Symbol English A Area AWG American Wire Gauge B B value B B value determined by resistance 25/100 measurement and 100 C C Heat capacitance th I Current N Number ...

Page 9

Temperature measurement Probe assemblies Symbol English Temperature coefficient Tolerance, change Dissipation factor th Thermal cooling time constant c Thermal time constant a Abbreviations / Notes Symbol English Surface-mounted devices * To be replaced by a number in ordering codes, type ...

Page 10

Important notes The following applies to all products named in this publication: 1. Some parts of this publication contain statements about the suitability of our products for certain areas of application. These statements are based on our knowledge of typical ...

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