Precision current sense resistor JIERR RE2512F3R200 with rated power 2W 3W and low resistance values
Price:
Negotiable
MOQ:
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Delivery Time:
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Product Description
Product Overview
Alloy resistor patch resistors are high-power current sense resistors designed for precise current detection. Featuring SMD surface mount technology, they offer high power handling up to 3W and ultra-low resistance values down to 0.0R. These resistors are ideal for applications requiring accurate current monitoring in automotive electronics, power supplies, battery chargers, and consumer electronics.
Product Attributes
- Brand: Not specified
- Origin: Not specified
- Material: MnCu, CuNi
- Color: Not specified
- Certifications: RoHS, REACH, AEC-Q200
Technical Specifications
| Size | Type | Rated Power (W) | Resistance Tolerance | Resistance Range (m) | Material | TCR (ppm/) | Operating Temperature Range () | Insulation Resistance (M) |
| 2512 | Large Electrode | 2W/3W | F:1%, G:2%, J:5% | <0.45m | MnCu | 350ppm/ | -55~+170 | 100 |
| 2512 | Large Electrode | 2W/3W | F:1%, G:2%, J:5% | 0.5mR<1m | MnCu | 50ppm/ | -55~+170 | 100 |
| 2512 | Large Electrode | 2W/3W | F:1%, G:2%, J:5% | 1mR4m | MnCu | 50ppm/ | -55~+170 | 100 |
| 2512 | Small Electrode | 3W/4W | F:1%, G:2%, J:5% | 1mR1.5m | MnCu | 350ppm/ | -55~+170 | 100 |
| 2512 | Small Electrode | 3W/4W | F:1%, G:2%, J:5% | 2mR20m | MnCu | 50ppm/ | -55~+170 | 100 |
| 2512 | Small Electrode | 2W/3W | F:1%, G:2%, J:5% | 20mR150m | MnCu | 50ppm/ | -55~+170 | 100 |
| 2512 | Small Electrode | 2W/3W | F:1%, G:2%, J:5% | 150m<R220m | CuNi | 50ppm/ | -55~+170 | 100 |
| 2512 | Small Electrode | 2W | F:1%, G:2%, J:5% | 220m<R400m | CuNi | 50ppm/ | -55~+170 | 100 |
| 2512 | Small Electrode | 2W | F:1%, G:2%, J:5% | 400m<R500m | Kama | 50ppm/ | -55~+170 | 100 |
| 1206 | Not specified | Not specified | F:1%, G:2%, J:5% | Not specified | Not specified | Not specified | Not specified | Not specified |
| 0805 | Not specified | Not specified | F:1%, G:2%, J:5% | Not specified | Not specified | Not specified | Not specified | Not specified |
| Size | Type | Length L(mm) | Width W(mm) | Thickness T(mm) | Electrode Width E(mm) |
| 2512 | Large Electrode | 6.40.2 | 3.20.2 | 0.80.08 | 2.20.2 |
| 2512 | Small Electrode | 6.40.2 | 3.20.2 | 0.80.08 | 1.00.2 |
| Item | Test Method | Conditions | Specification |
| Short Time Overload | IEC60115-1 4.13 | Applied 5.0 times of rated power for 5 second. | R% 1% |
| Temperature Coefficient | IEC60115-1 4.8 | Refer to Spec. | Refer to Spec. |
| Temperature cycling | JESD22 Method JA-104 | 1000Cycles (-55to +125) | R% 1% |
| High Temperature Exposure | MIL-STD-202 Method 108 | 1000 hrs. @T=125. | R% 1% |
| Low Temperature operation | IEC60115-1 4.23.4 | 45 min. @T=-55. | R% 1% |
| Biased Humidity | MIL-STD-202 METHOD 103 | 1000 hours 85/85%RH. (10% of operating power) | R% 1% |
| Solderability | J-STD-002B test B | Dip into a soldering bath at 245 5for 2~3sec. | Min 95% coverage |
| Operational life | MIL-STD-202 METHOD 108 | 702, rated current 1.5H on, 0.5H off, 1000 hours. | R% 1% |
| Resistance to vibration | MIL-STD-202 METHOD 204 | 5g's for 20min. 12 cycles, 10-2000Hz. | R% 1% |
| Resistance to Solder Heat | IEC60115-1 4.18 | Dip into a soldering bath at 260 5for 101sec. | R% 1% |
| Terminal bending | AEC-Q200-005 | Min 2mm deflection, 60sec. | R% 1% |
| Mechanical Shock | MIL-STD-202 METHOD 213 | 100g's , 6ms, half sine shock pulse. | R% 1% |
| Terminal Strength | AEC-Q200-006 | Applied a 17.7N (1.8Kg) for 601seconds. | R% 1% |
| Thermal shock | MIL-STD-202 METHOD 107 | -55/+125C, 300 cycles, 20s transfer time, 15 min dwell. | R% 1% |
| Flammability | UL-94 | V-0 or V-1 are acceptable. | Electrical test not required. |
| ESD test | AEC-Q200-002 | 2KV, 2 times/1s | R% 1% |
Get in Touch
Have questions about our products or want to discuss a custom order? Our team is ready to help you.
Company
Beijing Silk Road Enterprise Management Services Co., Ltd.
Location
16 Floor, Unit B, Jiatai International Mansion, No 41, Dongsihuan Zhong Road, Chaoyang District, Beijing
Contact Person
Sellina