
SM4007 CDIL Diodes – General Purpose SMD 1A Single 1.1V@1A 1kV DO-213AB
EGP 2
See other suppliers →Description
SM4007 CDIL Diodes – General Purpose SMD 1A Single 1.1V@1A 1kV DO-213AB The SM4007 by CDIL is a high-reliability general-purpose surface-mount rectifier diode designed for efficient current rectification and circuit protection in modern electronic systems. With a high reverse voltage capability and stable forward current performance, it is suitable for a wide range of power and signal applications. Features: High repetitive reverse voltage rating of 1000V for reliable operation in high-voltage circuits. Average forward rectified current of 1A for general-purpose rectification. Low forward voltage drop of approximately 1V to 1.1V@1A. High surge current capability up to 30A. Glass-passivated junction for enhanced reliability and low leakage. Specifications: Parameter Specification Peak Repetitive Reverse Voltage (VRRM) 1000 V RMS Voltage (VRMS) 700 V DC Blocking Voltage (VDC) 1000 V Average Forward Rectified Current (I₀) 1.0 A @ Tₐ = 75°C Peak Forward Surge Current (IFSM) 30 A (8.3 ms half sine wave) Maximum Forward Voltage Drop (VF) 1.1 V @ IF = 1.0 A Maximum Full-Load Reverse Current (IR) 30 mA @ TA = 75°C Maximum DC Reverse Current (IR) 5 mA @ TA = 25°C, rated VR 50 mA @ TA = 125°C, rated VR Junction Capacitance (Cj) typ. 15 pF @ 1 MHz, 4.0 V DC Thermal Resistance (Junction to Terminal) 20 °C/W (6 mm² copper pads) Thermal Resistance (Junction to Ambient) 50 °C/W (6 mm² copper pads) Operating & Storage Temperature -65 to +175 °C Package Type MELF (DO-213AB) Foot print: Applications: Power supply rectification in consumer electronics. Freewheeling diodes in switching converters. Reverse polarity protection in battery circuits. Clamping diodes in inductive load circuits. General-purpose rectification in industrial controls. High-voltage blocking in automotive systems. Package Include: 1x SM4007 Diode. Datasheet: SM4007
From the supplier's page.
makhzan doesn't sell — every offer opens the supplier's own site.