ERJ-2RKF2702X Application and Selection Guide
ERJ-2RKF2702X Model and Manufacturer Information
ERJ-2RKF2702X, a Chip Resistors - Surface Mount manufactured by Panasonic: ERJ-2RKF2702X helps you confirm the specific model, while Panasonic helps you confirm the product source. If you are selecting a part, you can first check whether ERJ-2RKF2702X meets your requirements, then check whether Panasonic matches your expectations, and then refer to RES SMD 27K OHM 1% 1/10W 0402 for further evaluation.
ERJ-2RKF2702X Product Parameters and Description
The main parameters of Panasonic's Chip Resistors - Surface Mount product ERJ-2RKF2702X include RES SMD 27K OHM 1% 1/10W 0402. This is a Chip Resistors - Surface Mount produced by Panasonic, and it also offers good applicability in embedded systems, common 3C electronics, automotive electronics, electronic devices, and IoT devices.
ERJ-2RKF2702X Application and Selection Reference
Panasonic's Chip Resistors - Surface Mount product ERJ-2RKF2702X has a relatively wide range of applications in embedded systems, common 3C electronics, automotive electronics, electronic devices, and IoT devices. Overall, ERJ-2RKF2702X is a Chip Resistors - Surface Mount solution worth considering, and manufacturer Panasonic provides long-term supply program support for this product, which helps ensure supply continuity during mass production.
Recommended Part Numbers for ERJ-2RKF2702X
Designers looking for ERJ-2RKF2702X recommended parts can evaluate the following options. ERJ-2RKF2702X selection decisions should verify parameters, tolerance and packaging against the original design bill of materials.
| Recommended Part |
Brand |
Package |
Description |
| ERJ-3GEYJ202V |
Panasonic Electronic Components |
|
RES 2K OHM 1/10W 5% 0603 SMD |
| ERJ-1GEJ305C |
Panasonic Electronic Components |
|
RES 3M OHM 1/20W 5% 0201 SMD |
| ERJ-S020R00X |
Panasonic Electronic Components |
|
RES SMD 0 OHM JUMPER 1/10W 0402 |
EZKEY can provide ERJ-2RKF2702X recommended part comparison data and engineering samples for evaluation.