Cree schottky diode 4a 600v review năm 2024

The SiC diode is an ultrahigh performance power Schottky diode. It is manufactured using a silicon carbide substrate. The wide bandgap material allows the design of a Schottky diode structure with a 600 V rating. Due to the Schottky construction no recovery is shown at turn-off and ringing patterns are negligible. The minimal capacitive turn-off behavior is independent of temperature. ST SiC diodes will boost the performance of PFC operations in hard switching conditions.

Technical Specifications

Warranty Information

All the products supplied by Evelta are genuine and original. We offer 14 days replacement warranty in case of manufacturing defects. For more details, please visit our cancellation and returns page.

Wolfspeed's 600 V Discrete Silicon Carbide (SiC) Schottky Diodes feature the MPS (Merged PiN Schottky) design which is more robust and reliable than standard Schottky barrier diodes. Pairing Wolfspeed Silicon Carbide diodes with SiC MOSFETs creates a powerful combination of higher efficiency and reduced component pricing when purchased together.

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600 V Discrete Silicon Carbide Schottky Diodes

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Blocking Voltage

Current Rating

Generation

Forward Voltage(VF(type))

Maximum Continuous Current (IF)

Total Capacitive Charge (QC (typ))

Total Power Dissipation (PTOT)

Package

Qualification

Recommended For New Design?

CSD01060E

600 V

1 A

Gen 1

1.6 V

1 A

3.3 nC

21.4 W

TO-252-2

Industrial

Yes

CSD01060A

600 V

1 A

Gen 1

1.6 V

1 A

3.3 nC

21.4 W

TO-220-2

Industrial

Yes

C3D02060A

600 V

2 A

Gen 3

1.5 V

2 A

4.8 nC

39.5 W

TO-220-2

Industrial

Yes

C3D02060F

600 V

2 A

Gen 3

1.5 V

2 A

4.8 nC

10.8 W

TO-220-F2

Industrial

Yes

C3D02060E

600 V

2 A

Gen 3

1.5 V

2 A

5.8 nC

39.5 W

TO-252-2

Industrial

Yes

C3D03060A

600 V

3 A

Gen 3

1.5 V

3 A

6.7 nC

53 W

TO-220-2

Industrial

Yes

C3D03060F

600 V

3 A

Gen 3

1.5 V

3 A

6.7 nC

12.5 W

TO-220-F2

Industrial

Yes

C3D03060E

600 V

3 A

Gen 3

1.5 V

3 A

6.7 nC

53 W

TO-252-2

Industrial

Yes

C3D04060A

600 V

4 A

Gen 3

1.5 V

4 A

8.5 nC

75 W

TO-220-2

Industrial

Yes

C3D04060F

600 V

4 A

Gen 3

1.5 V

4 A

8.5 nC

13.1 W

TO-220-F2

Industrial

Yes

C3D04060E

600 V

4 A

Gen 3

1.5 V

4 A

8.5 nC

75 W

TO-252-2

Industrial

Yes

C3D06060G

600 V

6 A

Gen 3

1.5 V

6 A

16 nC

91 W

TO-263-2

Industrial

Yes

C3D06060A

600 V

6 A

Gen 3

1.5 V

6 A

16 nC

79 W

TO-220-2

Industrial

Yes

C3D06060F

600 V

6 A

Gen 3

1.5 V

6 A

16 nC

17 W

TO-220-F2

Industrial

Yes

C3D08060G

600 V

8 A

Gen 3

1.5 V

8 A

21 nC per leg

107 W

TO-263-2

Industrial

Yes

C3D08060A

600 V

8 A

Gen 3

1.5 V

8 A

21 nC

110 W

TO-220-2

Industrial

Yes

C3D10060G

600 V

10 A

Gen 3

1.5 V

10 A

25 nC per leg

136 W

TO-263-2

Industrial

Yes

C3D10060A

600 V

10 A

Gen 3

1.5 V

10 A

25 nC

136 W

TO-220-2

Industrial

Yes

C3D16060D

600 V

16 A

Gen 3

1.5 V per leg

16 A

21 nC per leg

200 W

TO-247-3

Industrial

Yes

C3D20060D

600 V

20 A

Gen 3

1.5 per leg

20 A

25 nC per leg

500 W

TO-247-3

Industrial

Yes

Product Details

  • Low forward voltage (Vf) drop over temperature
  • Zero reverse-recovery charge for fast switching operations
  • Robust MPS technology
  • High reverse-voltage blocking capability
  • Improves System Efficiency with lower conduction losses
  • Enables high switching frequency operation
  • Improves System Level Power Density
  • Reduces System Size; Weight; and Cooling Requirements
  • Industrial Power Supplies
  • Server/Telecom
  • EV-Charging Systems
  • Energy Storage Systems (ESS)
  • Uninterruptible Power Supplies (UPS)
  • Battery Management Systems (BMS)

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This document details the production packaging details including container type, quantity, MOQ, and dimensions as well as the moisture sensitivity level (MSL) for discrete SiC Schottky Diodes and MOSFETs

Knowledge Center

Wolfspeed SiC Transforms Solar Energy Infrastructure

Using Wolfspeed silicon carbide 650 V and 1200 V MOSFETs and Schottky diodes in residential, commercial, and industrial solar inverters and MPPT boosts enables up to 70% reduction in overall system losses while significantly reducing system size, weight and cost.

How do I know if my Schottky diode is bad?

A “buzz” or “beep” will be produced by the multimeter. If the Schottky diode is not working properly, then no sound will be produced. Now, interchange the leads of the multimeter. If the meter does not make any noise, then the diode works well.

Is a Schottky diode a good voltage regulator?

If the transistor in your regulator is saturating, a Schottky diode is also useful for voltage clamping, which limits the voltage applied to the base by channeling some current to the emitter/collector (or source/drain in a MOSFET).

What is the main advantage of Schottky diode?

One of the primary advantages of using a Schottky diode over a regular diode is its low forward voltage drop. This allows a Schottky diode to consume less voltage than a standard diode, using only 0.3-0.4V across its junctions.

What is the difference between Schottky and normal diode?

What is the difference between a Schottky diode and a normal diode? Schottky diodes have a lower forward voltage drop, so they are very useful when you need to scrimp on voltage drop, such as in high-current power supplies. They however have limited reverse voltage and high leakage so they cannot be used in every case.