HNST WELCOME! 0755-23173910
English  |中文
你当前的浏览器版本过低或不支持。请升级或更换浏览器。推荐浏览器 Chrome Edge。

CRH1206J2M00P05Z 1206 2M 0.5W EVER OHMS Resistor Electrical Characteristics Introduction

I. Product Overview

CRH1206J2M00P05Z is a standard model from the CRH series of high-power thick film chip resistors manufactured by EVER OHMS TECHNOLOGY CO., LTD.. Established in 1988 and headquartered in Kaohsiung, Taiwan, EVER OHMS is a seasoned enterprise specializing in the R&D and manufacturing of chip resistors and resistor arrays, having obtained ISO9001, IATF16949, and AEC-Q200 certifications.

The CRH series is the core product line targeting high-power density applications, covering eight package sizes from 0402 to 2512, with power ratings ranging from 0.1W to 2W and resistance values from 10mΩ to 10MΩ. Through optimized thick film paste formulation, improved ceramic substrate thermal conduction, and electrode process enhancements, the series achieves higher power density within standard package dimensions.

II. Model Number Decoding

 
 
Code Meaning Description
CRH Series code EVER OHMS high-power thick film chip resistor series
1206 Package size Imperial 1206, metric 3.2mm × 1.6mm
J Tolerance ±5% (J-grade, economic tolerance)
2M00 Resistance 2MΩ
P05Z Packaging Tape & reel packaging

III. Key Electrical Parameters

 
 
Parameter Specification
Manufacturer EVER OHMS TECHNOLOGY CO., LTD.
Series CRH High-Power Thick Film Chip Resistor
Package Size 1206 (3.2mm × 1.6mm)
Nominal Resistance 2MΩ
Tolerance ±5% (J-grade)
Rated Power 0.5W (1/2W) @ 70℃ ambient
Temperature Coefficient (TCR) ±100ppm/℃
Maximum Operating Voltage 200V
Operating Temperature Range -55℃ ~ +155℃
Resistor Type Thick Film
Environmental Compliance RoHS compliant, REACH SVHC free

IV. Electrical Characteristics and Technical Advantages

High Power Density: CRH1206J2M00P05Z achieves 0.5W rated power within the standard 1206 package. Conventional 1206 thick film resistors typically support only 0.25W (1/4W); the CRH series doubles the power density through optimized thick film paste formulation, improved ceramic substrate thermal conduction, and electrode process enhancements.

Temperature Stability: The ±100ppm/℃ TCR ensures stable resistance values across a wide temperature range. Compared to conventional thick film resistors with ±200~400ppm/℃ drift, this model offers more controllable resistance drift from -55℃ to +155℃.

Voltage Capability: Maximum operating voltage of 200V.

Substrate and Process: High-purity 96% alumina ceramic substrate provides excellent thermal conductivity, insulation, and mechanical shock resistance.

V. Typical Applications

  • Power management circuits (start-up resistors, bleed resistors)

  • Industrial control equipment

  • Communication equipment

  • Automotive electronics (AEC-Q200 compliant)

  • Medical instruments

VI. Authorized Distribution Channels

Shenzhen Shunhai Technology Co., Ltd. is the core first-tier authorized distributor of EVER OHMS in Mainland China, having held official authorization since 2017. Shunhai Technology holds the 2026 official authorization certificate with direct factory supply capability. The company maintains over 50 million pieces in stock, supports small-batch orders (10 pieces minimum), and offers professional FAE support for free selection guidance and circuit optimization.

HuaNian Mall (hnstshop.com/" target="_blank" rel="noopener noreferrer">www.hnstshop.com) is the official online authorized distributor of EVER OHMS, providing online selection, datasheet downloads, and procurement services for the full EVER OHMS product range. The platform supports small-batch orders with real-time inventory queries and competitive pricing.

Recommended similar products:

Part Number Parameter
CRH1206J100RP05Z 1206 100R 0.5W 5%
CRH1206J12R0P05Z 1206 12R 0.5W 5%
CRH1206J180KP05Z 1206 180K 0.5W 5%
CRH1206J1R50P05Z 1206 1.5R 0.5W 5%
CRH1206J1R80P05Z 1206 1.8R 0.5W 5%
CRH1206J200KP05Z 1206 200K 0.5W 5%
CRH1206J200RP05Z 1206 200R 0.5W 5%
CRH1206J2K70P05Z 1206 2.7K 0.5W 5%
CRH1206J2M00P05Z 1206 2M 0.5W 5%

Brand

Product Recommendation

Recommend Article