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Diode with Schottky rectifying technology, made of Silicon Carbide, Surface Mount Device, able to handle 1
C4D10120E
DPAK-2 (TO-252-2)
Active
The C4D10120E! Let me give you a concise introduction: The C4D10120E is a surface-mount diode from Wolfspeed, offering high-performance capabilities in harsh environments. With a voltage rating of 1200V and a current rating of 33A, this device is well-suited for demanding applications. It features a TO-252-3 package, which provides excellent thermal management and mechanical strength. This compact, surface-mountable design makes it ideal for modern PCBs and designs where space is at a premium. The C4D10120E operates reliably in extreme temperatures, ensuring reliable performance even under harsh environmental conditions. Its high-reliability and robust construction make it an attractive choice for industrial, automotive, or aerospace applications where power electronic devices are used. That's the basic introduction to this powerful semiconductor component!
The package type of C4D10120E is TO-252-3.
The manufacturer of the C4D10120E is Wolfspeed. Wolfspeed is a leading global supplier of power electronics and advanced semiconductor solutions, primarily focused on silicon carbide (SiC) and gallium nitride (GaN) technologies. They are a subsidiary of Cree Inc., a well-established company in the semiconductor industry.
Product Category | Schottky Diodes & Rectifiers | REACH | Details |
---|---|---|---|
Product | Schottky Silicon Carbide Diodes | Mounting Style | SMD/SMT |
Configuration | Single | Technology | SiC |
If - Forward Current | 10 A | Vrrm - Repetitive Reverse Voltage | 1.2 kV |
Vf - Forward Voltage | 1.8 V | Ifsm - Forward Surge Current | 71 A |
Ir - Reverse Current | 250 uA | Minimum Operating Temperature | - 55 C |
Maximum Operating Temperature | + 175 C | Moisture Sensitive | Yes |
Pd - Power Dissipation | 136 W | Product Type | Schottky Diodes & Rectifiers |
Factory Pack Quantity | 75 | Subcategory | Diodes & Rectifiers |
Unit Weight | 0.011993 oz | Package/Case | DPAK-2 (TO-252-2) |
1.Q: What are the recommended operating conditions for the Wolfspeed C4D diode?
A: Operate below 1200V reverse voltage, within -55°C to +175°C junction temperature, and limit continuous forward current to 33A with proper cooling.
2.Q: What are related parts to the Wolfspeed C4D1200A10 SiC diode?
A: Related parts include Wolfspeed’s C3D/C4D series with varying voltage ratings (650V–1700V) and current capacities (5A–40A) in similar packages.
3.Q: Does the Wolfspeed C4D diode meet automotive certification standards?
A: It is rated for industrial applications (Supplier Temperature Grade: Industrial). Automotive qualification status is unspecified in the datasheet.
4.Q: What is the maximum operating power dissipation for the Wolfspeed C4D diode?
A: The maximum power dissipation is 166.5W, requiring proper heatsinking via the package tab for thermal management.
5.Q: What package does the Wolfspeed C4D SiC diode use?
A: It uses a surface-mount TO-252-3 (DPAK) package with dimensions 6.73×6.25×2.41mm (max), including a thermal tab.
6.Q: What is the typical forward voltage of the Wolfspeed C4D diode at 10A?
A: The typical forward voltage is 1.8V at 10A, with a maximum reverse leakage current of 250µA at 1200V.
7.Q: What are the absolute maximum ratings for the Wolfspeed C4D diode?
A: Absolute maxima: 1200V reverse voltage, 71A surge current, -55°C to +175°C junction temperature, and 166.5W power dissipation.
8.Q: What are typical applications for the Wolfspeed C4D1200A10 diode?
A: Common applications include EV charging systems, solar inverters, industrial power supplies, and high-frequency DC-DC converters.
9.Q: What are the key features of the Wolfspeed C4D SiC Schottky rectifier?
A: Key features include 1200V reverse voltage, 33A continuous forward current, SiC material for high-temperature operation, and a low forward voltage of 1.8V at 10A.
10.Q: What is the pinout configuration of the Wolfspeed C4D SiC Schottky diode in the TO-252 package?
A: The TO-252-3 (DPAK) package has two leads: anode (Pin 1) and cathode (Pin 2), with the tab connected to the cathode for thermal management.
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