The Res, 12K1, 0.1%, 0.2W, 0805, Thin Film resistor from TE Connectivity is a surface mount device designed for precision applications. It features a resistance value of 12.1 kOc with a tolerance of ¬±0.1%, making it suitable for applications requiring high accuracy. The power rating is 200 mW, and it is housed in an 0805 package size, which is commonly used in various electronic circuits. This resistor is AEC-Q200 qualified, indicating its suitability for automotive applications, and it is sulfur resistant according to ASTM B809-95 standards. The resistor is also RoHS compliant, ensuring it meets environmental regulations. Its construction includes a special passivation layer on the resistive element, enhancing its durability and reliability in harsh conditions. The operating temperature range for this component is -55¬8C to 155¬8C, allowing it to function effectively in a wide variety of environments. This resistor is ideal for use in automotive, medical, and industrial applications where precision and reliability are critical.
12.1 kOhms ±0.1% 0.2W, 1/5W Chip Resistor 0805 (2012 Metric) Anti-Sulfur, Automotive AEC-Q200 Thin Film
12.1 kOhms ±0.1% 0.2W, 1/5W Chip Resistor 0805 (2012 Metric) Anti-Sulfur, Automotive AEC-Q200 Thin Film
12.1 kOhms ±0.1% 0.2W, 1/5W Chip Resistor 0805 (2012 Metric) Anti-Sulfur, Automotive AEC-Q200 Thin Film
RES, 12K1, 0.1%, 0.2W, 0805, THIN FILM; Resistance:12.1kohm;
RES, 12K1, 0.1%, 0.2W, 0805, THIN FILM; Resistance:12.1kohm;
| DigiKey | Newark, An Avnet Company | |
|---|---|---|
| Product Category | Resistors | Resistors |
| Product Number | A140920TR-ND | 96AC9484 |
| Product Name | Chip Resistor - Surface Mount | Res, 12K1, 0.1%, 0.2W, 0805, Thin Film; Resistance Holsworthy Te Connectivity |
| Configuration | Single Resistor | Single Resistor |
| Category / Application | Automotive; General Use | Precision Resistor |
| Technology / Construction | Thin Film (Chip) | Thin Film (Chip) |
| Mounting / Packaging | 0805; 0805 | 0805; 0805 [2012 Metric] |
| Tolerance | 0.1000 +/- % | 0.1000 +/- % |