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Microchip Technology 1N6075 — Discrete Semiconductors

Microchip Technology 1N6075 Fast Recovery Diode, 150V, 850mA

MPN1N6075
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Microchip Technology 1N6075 fast recovery diode, standard type, 150 V DC reverse voltage, 850 mA average rectified current, 30 ns reverse recovery time, through-hole axial package, bulk.

$14.5800Ref. price · indicative, final on quote
Independent supplier — new & surplus stockAuthenticity-screened · ESD-safe packingListing updated Aug 2026

Specifications

1N6075 specifications
ParameterValue
Diode typeStandard
MountingThrough Hole
Voltage - DC reverse (Vr)150 V
Voltage - forward (Vf) (Max) @ if2.04 V @ 9.4 A
Current - reverse leakage @ vr1 µA @ 150 V
Current - average rectified850mA
Operating temperature - junction-65°C~155°C
SpeedFast Recovery =< 500ns, > 200mA (Io)
PackageBulk
CaseA, Axial
Reverse recovery time30 ns

Product details

Fast recovery for snubbing and flyback duty

The 1N6075 is a standard fast-recovery diode rated for 150 V DC reverse voltage and 850 mA average rectified current, with a reverse recovery time (trr) of 30 ns. That 30 ns trr places it squarely in the class of diodes used to clip voltage spikes from inductive loads — relay coils, solenoid drivers, and transformer flyback circuits — where a slower recovery diode would let the stored energy ring back into the switching node.

Through-hole axial package — board-fit reality

The 1N6075 comes in an A, Axial through-hole package, shipped in bulk. For the pick-and-place line this means hand-insertion or a radial-tape feeder — no reflow profile to worry about, but the lead bend radius and stand-off height from the board need to match the hole pattern on the PCB. The axial body is glass-passivated, so moisture sensitivity is not a concern; no bake required before soldering.

Frequently asked questions

What is the reverse recovery time (trr) of the 1N6075?

The 1N6075 has a reverse recovery time of 30 ns, which qualifies it as a fast-recovery diode (trr ≤ 500 ns at >200 mA). This 30 ns recovery makes it suitable for snubbing inductive kickback in relay and solenoid driver circuits.