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quality Temperature Sensor Compensation Device muRata NCP03XH103J05RL NTC Thermistors Chip Type Component factory
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quality Temperature Sensor Compensation Device muRata NCP03XH103J05RL NTC Thermistors Chip Type Component factory
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Specifications
Resistance @ 25℃:
10kΩ
Power(Watts):
100mW
Operating Temperature:
-40℃~+125℃
Tolerance:
±5%
B Constant (25℃/100℃):
3455K
Steady State Current (Max):
310uA
B Constant (25℃/85℃):
3434K
B Constant (25℃/75℃):
-
B Constant (25℃/50℃):
3380K
B Constant Tolerance:
±1%
Mfr. Part #:
NCP03XH103J05RL
Package:
0201
Key Attributes
Model Number: NCP03XH103J05RL
Product Description

NTC Thermistors for Temperature Sensor and Compensation

This catalog details NTC thermistors designed for temperature sensing and compensation applications. These components are suitable for various uses where accurate temperature measurement and control are critical.

Product Attributes

  • Brand: MURATA
  • Certifications: EU RoHS Compliant

Technical Specifications

Product ID Series Type Dimensions (L x W) Resistance Tolerance Temperature Characteristics (B-Constant) Packaging
NC NTC Thermistors Chip Type Standard 0.60 x 0.30mm (0201) 0.5% 31003149K Plastic Taping 4mm Pitch (4000 pcs.)
NC NTC Thermistors Chip Type Standard 1.00 x 0.50mm (0402) 1% 32503299K Paper Taping 4mm Pitch (4000 pcs.)
NC NTC Thermistors Chip Type Standard 1.60 x 0.80mm (0603) 3% 33503399K Paper Taping 2mm Pitch (10000 pcs.)
NC NTC Thermistors Chip Type Standard 2.00 x 1.25mm (0805) 5% 35003549K Paper Taping 2mm Pitch (15000 pcs.)
NXF NTC Thermistors Sensor Thermo String Type Thermo String 1.00 x 0.50mm (0402) 1% 33503399K Bulk
NXF NTC Thermistors Sensor Thermo String Type Thermo String 1.00 x 0.50mm (0402) 3% 35003549K Bulk
NXR NTC Thermistor Sensor/Lead Type Lead Type 1.00 x 0.50mm (0402) 1% 33503399K Ammo Pack Taping
NXR NTC Thermistor Sensor/Lead Type Lead Type 1.00 x 0.50mm (0402) 3% 35003549K Bulk
NXR NTC Thermistor Sensor/Lead Type Lead Insulation Type 1.00 x 0.50mm (0402) 5% 39003949K Bulk

Basic Characteristics

Item Description
Zero-power Resistance R = R0 exp[B(1/T - 1/T0)]
B-Constant B = ln(R/R0) / (1/T - 1/T0)
Thermal Dissipation Constant P = C (T2 - T1) (mW/C)
Thermal Time Constant Period for 63.2% temperature change from ambient.

2410010232_muRata-NCP03XH103J05RL_C914154.pdf

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