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GS2005ELD

GOOD-ARK
Part Number GS2005ELD
Manufacturer GOOD-ARK
Description Schottky Barrier Diode
Published Jan 27, 2020
Detailed Description Features ■ Low Forward Voltage ■ Forward Current: 0.5A ■ Reverse Voltage 20V ■ MSL: Level 1 GS2005ELD Schottky Barrier ...
Datasheet PDF File GS2005ELD PDF File

GS2005ELD
GS2005ELD


Overview
Features ■ Low Forward Voltage ■ Forward Current: 0.
5A ■ Reverse Voltage 20V ■ MSL: Level 1 GS2005ELD Schottky Barrier Diode Applications ■ Ultra High-speed Switching ■ Voltage Clamping ■ Protection Circuits ■ Low Voltage Rectification ■ High Efficiency DC-to-DC Conversion ■ Low Power Consumption Applications SOD-923 Schematic Diagram Description Planar Maximum Efficiency General Application (MEGA) schottky barrier diode with an integrated guard ring for stress protection encapsulated in a SOD-923 small package.
Absolute Maximum Ratings (TA=25°C unless otherwise specified) Parameter Symbol Condition Min Max Unit Continuous Reverse Voltage Repetitive Peak Forward Current Continuous Forward Current Non-repetitive Peak Forward Current Junction Temperature Operating Ambient Temperature Storage Temperature VRRM IFRM IF IFSM TJ TAMB(1) TSTG(1) tp≤1ms , δ≤0.
25 t=8ms,square wave -65 -65 20 2.
5 0.
5 3.
0 150 +150 +150 V A A A °C °C °C Notes: 1.
For Schottky barrier diodes thermal run-away has to be considered, as in some applications the reverse power losses PR are a significant part of the total power losses.
Nomograms for determining the reverse power losses PR and IF(AV) rating will be available on request.
1/3 Electrical Characteristics (TA=25°C unless otherwise specified) Parameter Continuous Forward Voltage Continuous Reverse Current Diode Capacitance Pulse test: tp≤300μs; δ≤0.
02 GS2005ELD Schottky Barrier Diode Symbol Condition Typ Max Unit IF=0.
1mA 125 190 mV IF=1mA 185 240 mV VF IF=10mA 250 310 mV IF=100mA 325 420 mV IF=500mA 450 650 mV VR=5V 1.
0 1.
8 μA IR VR=10V VR=20V 4 30 μA 10 100 μA Cd VR=1V;f=1MHz 24 pF Typical Characteristic Curves Fig.
1 Forward current as a function of forward voltage (typical values) 103 Fig.
2 Reverse current as a function of reverse voltage (typical values) 102 IF(mA) 102 (1) (2)(3) (4) 10 1 (1) Tj=150℃ (2) Tj=125℃ (3) Tj=85℃ (4) Tj=25℃ 10-1 0 0.
1 0.
2 0.
3 VF(V) 0.
4 0.
5 Fig.
3 Diode capacitan...



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