
ROHM
N-Channel alternative with higher current (300mA) and lower RDS(on) (2.2Ω); pinout requires verification.
SRK7002LT1G is a 60V N-Channel MOSFET in a SOT-23 package. This page provides a list of potential alternatives that offer similar or improved electrical characteristics, but require careful datasheet review before implementation.
Candidates offer improved current and RDS(on) ratings.
Pinout must be verified from the datasheet before use.
Not a programmable device.
Direct replacement for SRK7002LT1G should use only Datasheet verified or Strong match candidates; many approved options still require engineering review.
Select a candidate with Id > 115mA and RDS(on) < 7.5Ω, then verify the pinout matches (G-S-D) from the datasheet.
The primary risk is a non-standard pinout on the SOT-23 package, which could damage the component or circuit.

ROHM
N-Channel alternative with higher current (300mA) and lower RDS(on) (2.2Ω); pinout requires verification.
| Feature / factor | SRK7002LT1G | RK7002BM | S-L2N7002SLT1G | JMTL2N7002KS | Compatibility / risk |
|---|---|---|---|---|---|
| Package | SOT-23 (TO-236) | SOT-23 | SOT-23 | SOT-23 | SOT-23 — Form factor matches.; S-L2N7002SLT1G: Form factor matches.; JMTL2N7002KS: Form factor matches.; L2N7002KLT1G: Form factor matches. |
| Voltage | 60V | 60V | 60V | 60V | 60V — Same voltage rating.; S-L2N7002SLT1G: Same voltage rating.; JMTL2N7002KS: Same voltage rating.; L2N7002KLT1G: Same voltage rating. |
| Current | 0.115A | 0.3A | 0.38A | 0.25A | 0.3A / 0.38A / 0.25A — Higher current rating.; S-L2N7002SLT1G: Significantly higher current rating.; JMTL2N7002KS: Higher current rating.; L2N7002KLT1G: Higher current rating. |
| Rds On | 7.5Ω | 2.2Ω | 2.8Ω | 2.2Ω | 2.2Ω / 2.8Ω / 2.3Ω — Lower on-resistance.; S-L2N7002SLT1G: Lower on-resistance.; JMTL2N7002KS: Lower on-resistance.; L2N7002KLT1G: Lower on-resistance. |
Verified drop-in options for SRK7002LT1G are limited in the current batch. Review candidates marked Strong match or Datasheet verified, and validate package, pinout, and electrical limits before committing a BOM change.