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    a Schematic diagram of the BNT-based components constructed based on the entropy-increase strategy. b Digital photograph, cross-sectional SEM image, and EDS mappings of the MLCCs. c Unipolar P-E loops of MLCCs as a function of applied E. d Wrec and η of the MLCCs as a function of applied E. The comparison of (e) Wrec and η, (f) η and UF of the MLCCs with those of other recently reported state-of-the-art MLCCs. source: Nature Communications

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    Researchers Demonstrated High Energy Ceramic Capacitors Stable in Wide Temperature Range

    Stackpole Offers High Voltage Plate Resistors up to 40KV

    How to Manage Supercapacitors Leakage Current and Self Discharge 

    Qualification of Commercial Supercapacitors for Space Applications

    Experimental Evaluation of Wear Failures in SMD Inductors

    Resonant Capacitors in High-Power Resonant Circuits

    a Schematic diagram of the BNT-based components constructed based on the entropy-increase strategy. b Digital photograph, cross-sectional SEM image, and EDS mappings of the MLCCs. c Unipolar P-E loops of MLCCs as a function of applied E. d Wrec and η of the MLCCs as a function of applied E. The comparison of (e) Wrec and η, (f) η and UF of the MLCCs with those of other recently reported state-of-the-art MLCCs. source: Nature Communications

    Researchers Proposed Enhanced Energy Storage MLCC

    Littelfuse Releases First Reflow-Compatible Illuminated Tactile Switch

    Vishay Unveils 5W Power Metal Strip Resistor in Compact 1206 Case Size

    Trending Tags

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    Efficient Power Converters: Duty Cycle vs Conduction Losses

    Ripple Steering in Coupled Inductors: SEPIC Case

    SEPIC Converter with Coupled and Uncoupled Inductors

    Coupled Inductors in SEPIC versus Flyback Converters

    Non-Linear MLCC Class II Capacitor Measurements Challenges

    Percolation Phenomenon and Reliability of Molded Power Inductors in DC/DC converters

    Root Causes and Effects of DC Bias and AC in Ceramic Capacitors

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Stackpole Offers High Voltage Plate Resistors up to 40KV

2.10.2025
Reading Time: 2 mins read
A A

Stackpole Electronics introduces HVR Series: High Voltage Radial Leaded Plate Resistors.

Stackpole Electronics, Inc., a leading global manufacturer of resistors, announces the launch of the HVR Series, a new line of High Voltage Radial Leaded Plate Resistors designed to meet the demanding requirements of various high-precision applications.

RelatedPosts

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The HVR Series offers ultra-high stability and reliability under load, with precision tolerances as low as 0.1%.

These resistors feature a low voltage coefficient of resistance (VCR) of up to 0.05 ppm/volt and operate with very low noise, ensuring optimal performance in critical environments. Additionally, they comply with RoHS, REACH, and halogen-free standards, aligning with global environmental regulations.

Ideal for use in medical equipment, industrial controls, scientific instrumentation, and other applications requiring extremely high voltages and precision, the HVR Series can be customized to meet unique design requirements. Pricing for the HVR Series varies based on size, tolerance, TCR, and resistance value.

Features:

  • Ohmic values available up to 50G
  • Voltage ratings to 40K volts
  • Ultra-high stability
  • Tight tolerances to 0.1%
  • Low VCR to 0.05 ppm/volt
  • Very low noise
  • Custom solutions available
  • RoHS compliant, REACH compliant, and halogen free

Related

Source: Stackpole

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