| ROHM Chip Resistors |
ROHM, pioneer of the chip resistor, continues to develop resistors that meet the demands of even the most discerning customer. Promptly responding to market needs, ROHM has developed products that place an emphasis on compactness, performance, reliability, power, and thinness.ROHM has recently added the industry's first square chip resistors and chip resistor networks geared specifically for IT equipment to its broad lineup of resistor products, which include the world's smallest resistors - the MCR006 series, the high reliability and high surge resistance ESR series, and the high voltage resistance KTR series. |
| Anti-Surge Chip Resistors (ESR Series) | ||||||||||||||||||||||
| Summary Voltage-load local concentration is prevented by ROHM's unique designing of resistive element configuration and trimming. Also , ROHM’s highly precise resistive element printing and trimming technologies boost surge-resistance characteristics and achieve high resistance accuracy. |
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| Part Number | Size | Power | Tolerance |
| ESR03EZPJ | 0603 | 1/5W | ±5% |
| ESR10EZPJ | 0805 | 1/4W | ±5% |
| ESR18EZPJ | 1206 | 1/3W | ±5% |
| High Voltage Resistance Chip Resistors (KTR Series) | ||||||||||||||||||
| Summary A proprietary resistive element configuration, combined with a novel trimming pattern, results in twice the voltage resistance of standard products (i.e. MCR series) |
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| Part Number | Size | Power | Tolerance |
| KTR10EZPJ | 0805 | 1/8W | ±5% |
| KTR18EZPJ | 1206 | 1/4W | ±5% |
| Ultra Compact Chip Resistors (MCR006 Series) | ||||||||||||||||
| Summary 0603-sized ultra-compact chip resistors available with D class (±0.5%) characteristics. |
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| Part Number | Size | Power | Tolerance |
| MCR006YZPF | 0603 | 1/20W | ±1% |
| MCR006YZPJ | 0603 | 1/20W | ±5% |
ROHM, pioneer of the chip resistor, continues to develop resistors that meet the demands of even the most discerning customer. Promptly responding to market needs, ROHM has developed products that place an emphasis on compactness, performance, reliability, power, and thinness.