Standard Meg-Ohm Box SRB-22

Standard Meg-Ohm Box SRB-22 with 9 fixed resistance values from 1MΩ to 50GΩ. Ideal reference standard for insulation testers. Supports up to 5000V with ±3% accuracy, ensuring reliable calibration for electrical and laboratory applications.

SKU: SRB-22

Description

Specifications – Standard Meg-Ohm Box SRB-22

  • Model: SRB-22

  • Resistance Values (9 ranges):
    1MΩ, 2MΩ, 10MΩ, 20MΩ, 200MΩ, 1GΩ, 2GΩ, 20GΩ & 50GΩ

  • Maximum Applied Voltage:
    – Up to 1000V for values ≤200MΩ
    – Up to 5000V for values above 200MΩ (1GΩ to 50GΩ)

  • Accuracy: ±3%

  • Usage: Reference standard for insulation testers and calibration setups

  • Construction: Precision-selected resistors with stable long-term performance

  • Application Areas: Electrical labs, QA testing, cable manufacturing, R&D centers


Long Description

The Standard Meg-Ohm Box SRB-22 is a precision-engineered reference resistance instrument designed to support accurate insulation resistance measurement and calibration. With nine fixed resistance values ranging from 1MΩ to 50GΩ, it provides a dependable standard for verifying and calibrating insulation testers, laboratory meters, and high-resistance measuring equipment.

The SRB-22 offers a balanced combination of high accuracy and wide resistance coverage, making it suitable for electrical laboratories, R&D units, cable testing facilities, educational institutions, and quality control departments. It serves as a reliable reference standard for instruments such as high-voltage insulation testers and mega-ohm meters.

For resistance values up to 200MΩ, the SRB-22 operates safely at up to 1000V, while higher resistance values (1GΩ and above) support up to 5000V for advanced high-voltage applications. Built with premium, stable resistive elements, it delivers consistent performance with an accuracy of ±3% across its entire range.

Designed for long-term reliability and ease of use, the SRB-22 is an essential calibration tool for achieving accurate, traceable insulation resistance measurements. Its robust construction ensures stability, making it ideal for both laboratory and industrial environments.