What is the temperature coefficient (TCR) of HVC high voltage resistors?

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What is the temperature coefficient (TCR) of HVC high voltage resistors?

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What is the temperature coefficient (TCR) of HVC high voltage resistors?

HVC Capacitor's high voltage thick film resistors achieve industry-competitive Temperature Coefficient of Resistance (TCR) values optimized for stable operation across wide ambient temperature ranges encountered in industrial, medical, and outdoor smart grid deployments.

HVR SeriesResistance RangeTCR (Typical)TCR (Maximum)Test Conditions
HVR-GFP/GXP200Ω – 10MΩ±50 ppm/°C±100 ppm/°C-55°C ~ +125°C
HVR-GFP/GXP10MΩ – 100MΩ±80 ppm/°C±150 ppm/°C+25°C ~ +105°C
HVR-GFP/GXP100MΩ – 2GΩ±80 ppm/°C±200 ppm/°C+25°C ~ +105°C
HVR-BSP/BOP1MΩ – 100MΩ±80 ppm/°C±150 ppm/°C-25°C ~ +125°C
HVR-BSP/BOP100MΩ – 10GΩ±100 ppm/°C±200 ppm/°C+25°C ~ +105°C
HVR-Precision (Custom)Per request±20 – ±50 ppm/°CPer specNegotiated

Example: Voltage Divider Network for Smart Grid FTU (50kV / 1000:1 ratio)

Using two 10GΩ resistors (upper arm) with different TCR values:

ScenarioUpper Arm TCRLower Arm TCRDivider Ratio Drift (-25°C to +85°C)
Competitor Grade A±200 ppm/°C±50 ppm/°C±2.2% error (unacceptable)
HVC HVR-GXP±80 ppm/°C±50 ppm/°C±1.04% error (acceptable)
Matched Pair Option±80 ppm/°C (tracked)±80 ppm/°C (tracked)±0.16% error (excellent)

Conclusion: HVC's ±80 ppm/°C TCR for high-value resistors enables 2x better accuracy stability than typical competitor ±150-200 ppm/°C specifications in precision divider applications.

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