Datasheets
STPSC20065CWL by: STMicroelectronics

Rectifier Diode, Schottky, 1 Phase, 2 Element, 10A, 650V V(RRM), Silicon Carbide, TO-247AD

Part Details for STPSC20065CWL by STMicroelectronics

Results Overview of STPSC20065CWL by STMicroelectronics

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Applications Energy and Power Systems Renewable Energy

STPSC20065CWL Information

STPSC20065CWL by STMicroelectronics is a Rectifier Diode.
Rectifier Diodes are under the broader part category of Diodes.

A diode is a electrical part that can control the direction in which the current flows in a device. Consider factors like voltage drop, current capacity, reverse voltage, and operating frequency when selecting a diode. Read more about Diodes on our Diodes part category page.

Price & Stock for STPSC20065CWL

Part # Distributor Description Stock Price Buy
DISTI # 497-STPSC20065CWL-ND
DigiKey DIODE SIL CARB 650V 10A TO247 Min Qty: 600 Lead time: 25 Weeks Container: Tube Limited Supply - Call
  • 600 $2.6731
$2.6731 Buy Now
DISTI # STPSC20065CWL
Avnet Americas - Rail/Tube (Alt: STPSC20065CWL) COO: China RoHS: Not Compliant Min Qty: 600 Package Multiple: 600 Lead time: 25 Weeks, 0 Days Container: Tube 0
  • 600 $2.8513
  • 1,200 $2.8028
  • 2,400 $2.7594
  • 4,800 $2.7173
  • 9,600 $2.6731
$2.6731 / $2.8513 Buy Now
DISTI # STPSC20065CWL
Avnet Silica (Alt: STPSC20065CWL) RoHS: Compliant Min Qty: 30 Package Multiple: 30 Lead time: 17 Weeks, 0 Days Silica - 0
Buy Now
DISTI # STPSC20065CWL
EBV Elektronik (Alt: STPSC20065CWL) RoHS: Compliant Min Qty: 30 Package Multiple: 30 Lead time: 26 Weeks, 0 Days EBV - 0
Buy Now
Vyrian Active 7181
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US Tariff Estimator: STPSC20065CWL by STMicroelectronics

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STPSC20065CWL
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Part Details for STPSC20065CWL

STPSC20065CWL CAD Models

STPSC20065CWL Part Data Attributes

STPSC20065CWL STMicroelectronics
Buy Now Datasheet
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STPSC20065CWL STMicroelectronics Rectifier Diode, Schottky, 1 Phase, 2 Element, 10A, 650V V(RRM), Silicon Carbide, TO-247AD
Rohs Code Yes
Part Life Cycle Code End Of Life
Package Description To-247ll, 3 Pin
Reach Compliance Code Compliant
ECCN Code EAR99
HTS Code 8541.10.00.80
Factory Lead Time 25 Weeks
Application Power
Configuration Common Cathode, 2 Elements
Diode Element Material Silicon Carbide
Diode Type Rectifier Diode
Forward Voltage-Max (VF) 1.88 V
JEDEC-95 Code TO-247AD
JESD-30 Code R-PSFM-T3
Non-rep Pk Forward Current-Max 39 A
Number of Elements 2
Number of Phases 1
Number of Terminals 3
Operating Temperature-Min -40 °C
Output Current-Max 10 A
Package Body Material Plastic/Epoxy
Package Shape Rectangular
Package Style Flange Mount
Peak Reflow Temperature (Cel) Not Specified
Rep Pk Reverse Voltage-Max 650 V
Reverse Current-Max 130 µA
Reverse Test Voltage 650 V
Surface Mount No
Technology Schottky
Terminal Form Through-Hole
Terminal Position Single
Time@Peak Reflow Temperature-Max (s) Not Specified
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STPSC20065CWL Frequently Asked Questions (FAQ)

  • STMicroelectronics provides a recommended PCB layout in the application note AN5343, which includes guidelines for thermal pad connection, copper pouring, and via placement to ensure optimal thermal performance.

  • The input capacitor selection depends on the input voltage, current, and frequency. A general guideline is to choose a capacitor with a voltage rating of at least 1.5 times the maximum input voltage, and a capacitance value between 1uF to 10uF. Additionally, consider the capacitor's ESR, ESL, and ripple current rating.

  • The maximum allowed voltage drop across the internal FETs is not explicitly stated in the datasheet. However, as a general guideline, it's recommended to keep the voltage drop below 1V to ensure reliable operation and minimize power losses.

  • The STPSC20065CWL is rated for operation up to 150°C, but it's essential to consider the derating curves and thermal management to ensure reliable operation. Consult the datasheet and application notes for guidance on high-temperature operation.

  • The STPSC20065CWL has an internal overcurrent protection feature, but it's recommended to add external overcurrent protection circuitry to ensure reliable operation. This can be achieved using a sense resistor, comparator, and a shutdown circuit.

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