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An electrician works on low voltage cabinet representing how Wolfspeed’s MOSFETs and diodes pack more backup power into a single enclosure.
Industrial

Uninterruptible Power Supplies

Future-proof your next UPS with Wolfspeed’s next-gen wide bandgap SiC semiconductors.

Improved Reliability, Cleaner Power from Wolfspeed Silicon Carbide

For mission-critical systems, a power loss can be truly catastrophic, and having a reliable backup power source is absolutely essential.

At one end of the spectrum is a simple standby battery backup that powers a home computer long enough to enable a safe shutdown. At the other end are complex, mission-critical IT systems that require customized, redundant, double-conversion uninterruptible power supply (UPS) technologies that convert AC from the grid to an DC source that keeps the batteries charged. That DC source is also converted back to AC to power 100% of the system, allowing for zero transfer time during an interruption, and since the DC source is isolated from the grid the AC signal is clean and immune from any grid instability.

Solutions for UPS Design

UPS systems need to be able to provide reliable, clean power at any moment — and every percent of efficiency improvement means longer backup time. Wolfspeed’s Silicon Carbide MOSFETs and Schottky diodes enable 30% lower losses, has 15% system cost saving, and up to 50% higher power density than their silicon counterparts. The results are UPS systems that you can rely on when you need them the most, packing more backup power into a single enclosure, or into smaller and lighter systems for space-constrained environments.


The Numbers are on Your Side.

Wolfspeed Silicon Carbide is uniquely capable of incredible reliability and efficiency, even in the most demanding power applications.

Up To
30%
Lower Losses
Up To
50%
Higher Power Density
Up To
15%
System Cost Savings

Wolfspeed Silicon Carbide Components for UPS Systems

UPS systems must often deliver high currents with pin-point precision at a moment’s notice. That’s no easy task, but Wolfspeed’s Silicon Carbide MOSFET and Schottky diode products are up for the challenge.

XM3 Half-Bridge Silicon Carbide Power Module Family

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XM3 Half-Bridge Silicon Carbide Power Module Family

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XM3 Half-Bridge Silicon Carbide Power Module Family

Product SKU
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Data Sheet
CAD Model
Package
Configuration
Blocking Voltage
Current Rating
RDS(ON) at 25°C
Generation
Maximum Junction Temperature
Module Size
View Product
CAB320M17XM3
New
XM3
Half-Bridge
1700 V
320 A
4 mΩ
Gen 3
175 °C
80 x 53 x 19 mm
XM3
Half-Bridge
1200 V
400 A
4 mΩ
Gen 3 MOS
175 °C
80 x 53 x 19 mm
XM3
Half-Bridge
1200 V
425 A
3.2 mΩ
Gen 3 MOS
175 °C
80 x 53 x 19 mm
XM3
Half-Bridge
1200 V
450 A
2.6 mΩ
Gen 3 MOS
175 °C
80 x 53 x 19 mm
XM3
Half-Bridge
1200 V
450 A
2.6 mΩ
Gen 3 MOS
175 °C
80 x 53 x 19 mm

Wolfspeed WolfPACK™ Silicon Carbide Power Modules Family

Wolfspeed WolfPACK™ Silicon Carbide Power Modules Family

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Wolfspeed WolfPACK™ Silicon Carbide Power Modules Family

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Request Sample
Data Sheet
CAD Model
Package
Configuration
Blocking Voltage
Current Rating
RDS(ON) at 25°C
Generation
Maximum Junction Temperature
Module Size
View Product
GM3
Half-Bridge
1200 V
200 A
6 mΩ
Gen 3 MOS
150 °C
62.8 mm x 56.7 mm
GM3
Half Bridge (AlN substrate)
1200 V
200 A
6 mΩ
Gen 3 MOS
150 °C
62.8 mm x 56.7 mm
CAB006M12GM3T
Coming
Soon
GM3
Half-Bridge
1200 V
200 A
6 mΩ
Gen 3 MOS
150 °C
62.8 mm x 56.7 mm
CAB006A12GM3T
Coming
Soon
GM3
Half Bridge (AlN substrate)
1200 V
200 A
6 mΩ
Gen 3 MOS
150 °C
62.8 mm x 56.7 mm
GM3
Half Bridge (AlN substrate)
1200 V
194 A
8 mΩ
Gen 3 MOS
150 °C
62.8 mm x 56.7 mm
GM3
Half-Bridge
1200 V
146 A
8 mΩ
Gen 3 MOS
150 °C
62.8 mm x 56.7 mm
CAB008M12GM3T
Coming
Soon
GM3
Half-Bridge
1200 V
160 A
8 mΩ
Gen 3 MOS
150 °C
62.8 mm x 56.7 mm
CAB008A12GM3T
Coming
Soon
GM3
Half Bridge (AlN substrate)
1200 V
181 A
8 mΩ
Gen 3 MOS
150 °C
62.8 mm x 56.7 mm
FM3
Half-Bridge
1200 V
105 A
11 mΩ
Gen 3 MOS
150 °C
62.8 mm x 33.8 mm
CAB011M12FM3T
Coming
Soon
FM3
Half-Bridge
1200 V
117 A
11 mΩ
Gen 3 MOS
150 °C
62.8 mm x 33.8 mm
CAB011A12GM3
Coming
Soon
GM3
Half-Bridge
1200 V
141 A
11 mΩ
Gen 3 MOS
175 °C
62.8 mm x 56.7 mm
GM3
Half-Bridge
1200 V
141 A
11 mΩ
Gen 3 MOS
175 °C
62.8 mm x 56.7 mm
FM3
Half-Bridge
1200 V
78 A
16 mΩ
Gen 3 MOS
150 °C
62.8 mm x 33.8 mm
CAB016M12FM3T
Coming
Soon
FM3
Half-Bridge
1200 V
84 A
16 mΩ
Gen 3 MOS
150 °C
62.8 mm x 33.8 mm
CCB016M12GM3
Coming
Soon
GM3
Six-pack (three-phase)
1200 V
50 A
16 mΩ
Gen 3 MOS
175 °C
62.8 mm x 56.7 mm
GM3
Six-pack (three-phase)
1200 V
50 A
16 mΩ
Gen 3 MOS
175 °C
62.8 mm x 56.7 mm
FM3
Six-pack (three-phase)
1200 V
51 A
21 mΩ
Gen 3 MOS
150 °C
62.8 mm x 33.8 mm
FM3
Full-Bridge
1200 V
50 A
21 mΩ
Gen 3 MOS
150 °C
62.8 mm x 33.8 mm
CCB021M12FM3T
Coming
Soon
FM3
Six-pack (three-phase)
1200 V
30 A
21 mΩ
Gen 3
150 °C
62.8 mm x 33.8 mm
CBB021M12FM3T
Coming
Soon
FM3
Full-Bridge
1200 V
48 A
21 mΩ
Gen 3 MOS
150 °C
62.8 mm x 33.8 mm
FM3
Six-pack (three-phase)
1200 V
40 A
32 mΩ
Gen 3 MOS
150 °C
62.8 mm x 33.8 mm
FM3
Full-Bridge
1200 V
39 A
32 mΩ
Gen 3 MOS
150 °C
62.8 mm x 33.8 mm
CCB032M12FM3T
Coming
Soon
FM3
Six-pack (three-phase)
1200 V
30 A
32 mΩ
Gen 3 MOS
150 °C
62.8 mm x 33.8 mm
CBB032M12FM3T
Coming
Soon
FM3
Full-Bridge
1200 V
37 A
32 mΩ
Gen 3 MOS
150 °C
62.8 mm x 33.8 mm

62mm (BM2 & BM3) Silicon Carbide Half-Bridge Power Modules

62mm (BM2 & BM3) Silicon Carbide Half-Bridge Power Modules

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62mm (BM2 & BM3) Silicon Carbide Half-Bridge Power Modules

Product SKU
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Data Sheet
CAD Model
Package
Configuration
Blocking Voltage
Current Rating
RDS(ON) at 25°C
Generation
Maximum Junction Temperature
Module Size
View Product
62mm
Half-Bridge
1200 V
175 A
8 mΩ
Gen 3 MOS + Diodes
150 °C
105 x 62 x 31 mm
62mm
Half-Bridge
1200 V
175 A
8 mΩ
Gen 3 MOS + Diodes
150 °C
105 x 62 x 31 mm
62mm
Half-Bridge
1200 V
300 A
4 mΩ
Gen 3 MOS
175 °C
105 x 62 x 31 mm
62mm
Half-Bridge
1700 V
310 A
4.29 mΩ
Gen 3 MOS + Diodes
150 °C
105 x 62 x 31 mm
62mm
Half-Bridge
1700 V
310 A
4.29 mΩ
Gen 3 MOS + Diodes
150 °C
105 x 62 x 31 mm
62mm
Half-Bridge
1200 V
350 A
4 mΩ
Gen 3 MOS + Diodes
150 °C
105 x 62 x 31 mm
62mm
Half-Bridge
1200 V
350 A
4 mΩ
Gen 3 MOS + Diodes
150 °C
105 x 62 x 31 mm
62mm
Half-Bridge
1200 V
400 A
3.25 mΩ
Gen 3 MOS
175 °C
105 x 62 x 31 mm
62mm
Half-Bridge
1200 V
530 A
2.6 mΩ
Gen 3 MOS
150 °C
105 x 62 x 31 mm
62mm
Half-Bridge
1200 V
530 A
2.6 mΩ
Gen 3 MOS + Diodes
150 °C
105 x 62 x 31 mm
62mm
Half-Bridge
1200 V
530 A
2.6 mΩ
Gen 3 MOS + Diodes
150 °C
105 x 62 x 31 mm

HM Silicon Carbide Power Module Family

HM Silicon Carbide Power Module Family

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HM Silicon Carbide Power Module Family

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RDS(ON) at 25°C
Generation
Maximum Junction Temperature
Module Size
View Product
HM High Performance 62 mm
Half-Bridge Right GK for Paralleling
1200 V
1.33 mΩ
Gen 3 MOS
175 °C
110 mm x 65 mm x 12.2 mm
HM High Performance 62 mm
Half-Bridge Rectifier
1200 V
600 A
Gen 6
175 °C
110 mm x 65 mm x 12.2 mm
HM High Performance 62 mm
Half-Bridge Rectifier
1700 V
600 A
Gen 6
175 °C
110 mm x 65 mm x 12.2 mm
HM High Performance 62 mm
Half-Bridge
1700 V
500 A
2.5 mΩ
Gen 3 MOS
175 °C
110 mm x 65 mm x 12.2 mm
HM High Performance 62 mm
Half-Bridge
1700 V
650 A
1.67 mΩ
Gen 3 MOS
175 °C
110 mm x 65 mm x 12.2 mm
HM High Performance 62 mm
Half-Bridge
1700 V
380 A
3.3 mΩ
Gen 3 MOS + Diodes
175 °C
110 mm x 65 mm x 12.2 mm
HM High Performance 62 mm
Half-Bridge
1200 V
760 A
1.33 mΩ
Gen 3 MOS
175 °C
110 mm x 65 mm x 12.2 mm
HM High Performance 62 mm
Half-Bridge
1200 V
480 A
2.29 mΩ
Gen 3 MOS + Diodes
175 °C
110 mm x 65 mm x 12.2 mm

1200V Discrete Silicon Carbide MOSFETs for UPS

1200V Discrete Silicon Carbide MOSFETs for UPS

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1200V Discrete Silicon Carbide MOSFETs for UPS

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Data Sheet
CAD Model
Blocking Voltage
RDS(ON) at 25°C
Generation
Current Rating
Gate Charge Total
Output Capacitance
Total Power Dissipation (PTOT)
Maximum Junction Temperature
Package
1200 V
75 mΩ
Gen 3
30 A
51 nC
58 pF
113.6 W
150 °C
TO-263-7
1200 V
75 mΩ
Gen 3
30 A
54 nC
58 pF
113.6 W
150 °C
TO-247-3
1200 V
75 mΩ
Gen 3
32 A
57 nC
58 pF
145 W
175 °C
TO-247-3
1200 V
75 mΩ
Gen 3
32 A
55 nC
58 pF
145 W
175 °C
TO-247-4
1200 V
32 mΩ
Gen 3
63 A
118 nC
129 pF
283 W
175 °C
TO-247-4
1200 V
32 mΩ
Gen 3
63 A
114 nC
129 pF
283 W
175 °C
TO-247-3
1200 V
40 mΩ
Gen 3
64 A
61 nC
94 pF
272 W
150 °C
TO-263-7
1200 V
40 mΩ
Gen 3
66 A
99 nC
103 pF
326 W
175 °C
TO-247-4
1200 V
40 mΩ
Gen 3
66 A
101 nC
103 pF
326 W
175 °C
TO-247-3
1200 V
32 mΩ
Gen 3
68 A
111 nC
133 pF
277 W
150 °C
TO-263-7
1200 V
21 mΩ
Gen 3
81 A
160 nC
180 pF
469 W
175 °C
TO-247-3
1200 V
21 mΩ
Gen 3
100 A
162 nC
180 pF
469 W
175 °C
TO-247-4
1200 V
16 mΩ
Gen 3
115 A
211 nC
230 pF
556 W
175 °C
TO-247-4
1200 V
16 mΩ
Gen 3
115 A
207 nC
230 pF
556 W
175 °C
TO-247-3

1200V Discrete Silicon Carbide Schottky Diodes for UPS

1200V Discrete Silicon Carbide Schottky Diodes for UPS

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1200V Discrete Silicon Carbide Schottky Diodes for UPS

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Request Sample
Data Sheet
CAD Model
Blocking Voltage
Current Rating
Generation
Forward Voltage(VF(type))
Maximum Continuous Current (IF)
Total Capacitive Charge (QC (typ))
Total Power Dissipation (PTOT)
Package
1200 V
10 A
Gen 4
1.5 V
10 A
52 nC
136 W
TO-220-2
1200 V
10 A
Gen 4
1.4 V
10 A
54 nC
187 W
TO-247-3
1200 V
10 A
Gen 4
1.5 V
10 A
52 nC per leg
170 W
TO-252-2
1200 V
10 A
Gen 4
1.4 V
10 A
52 nC
136 W
TO-247-2
1200 V
15 A
Gen 4
1.6 V
15 A
77.5 nC
192 W
TO-220-2
1200 V
15 A
Gen 4
1.5 V
15 A
37 nC per leg
270 W
TO-247-3
1200 V
15 A
Gen 4
1.5 V
15 A
77.5 nC
174.5 W
TO-247-2
1200 V
20 A
Gen 4
1.5 V
20 A
99 nC
242 W
TO-220-2
1200 V
20 A
Gen 4
1.5 V per leg
20 A
52 nC per leg
352 W
TO-247-3
1200 V
20 A
Gen 4
1.5 V
20 A
99 nC
246 W
TO-247-2
1200 V
30 A
Gen 4
1.6 V per leg
30 A
77.5 nC per leg
440 W
TO-247-3
1200 V
40 A
Gen 4
1.5 V per leg
40 A
99 nC per leg
532 W
TO-247-3

650V Discrete Silicon Carbide MOSFETs for UPS

650V Discrete Silicon Carbide MOSFETs for UPS

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650V Discrete Silicon Carbide MOSFETs for UPS

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Data Sheet
CAD Model
Blocking Voltage
RDS(ON) at 25°C
Generation
Current Rating
Gate Charge Total
Output Capacitance
Total Power Dissipation (PTOT)
Maximum Junction Temperature
Package
650 V
120 mΩ
Gen 3
21 A
26 nC
45 pF
86 W
175 °C
TO-263-7
650 V
120 mΩ
Gen 3
21 A
26 nC
45 pF
86 W
175 °C
TOLL
650 V
120 mΩ
Gen 3
22 A
28 nC
45 pF
98 W
175 °C
TO-247-3
650 V
120 mΩ
Gen 3
22 A
28 nC
45 pF
98 W
175 °C
TO-247-4
650 V
60 mΩ
Gen 3
29 A
46 nC
80 pF
150 W
175 °C
TO-247-3
650 V
60 mΩ
Gen 3
36 A
46 nC
80 pF
136 W
175 °C
TO-263-7
650 V
60 mΩ
Gen 3
37 A
46 nC
80 pF
150 W
175 °C
TO-247-4
650 V
60 mΩ
Gen 3
39 A
46 nC
72 pF
131 W
175 °C
TOLL
650 V
45 mΩ
Gen 3
47 A
61 nC
101 pF
147 W
150 °C
TO-263-7
650 V
45 mΩ
Gen 3
49 A
63 nC
101 pF
176 W
175 °C
TO-247-3
650 V
45 mΩ
Gen 3
49 A
63 nC
101 pF
176 W
175 °C
TO-247-4
650 V
45 mΩ
Gen 3
49 A
59 nC
101 pF
164 W
175 °C
TOLL
650 V
25 mΩ
Gen 3
80 A
109 nC
178 pF
271 W
150 °C
TO-263-7
650 V
25 mΩ
Gen 3
97 A
108 nC
178 pF
325 W
175 °C
TO-247-3
650 V
25 mΩ
Gen 3
97 A
112 nC
178 pF
326 W
175 °C
TO-247-4
650 V
15 mΩ
Gen 3
120 A
188 nC
289 pF
416 W
175 °C
TO-247-3
650 V
15 mΩ
Gen 3
120 A
188 nC
289 pF
416 W
175 °C
TO-247-4

650V Discrete Silicon Carbide Schottky Diodes for UPS

650V Discrete Silicon Carbide Schottky Diodes for UPS

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Buy Online
Request Sample
Data Sheet
CAD Model
Blocking Voltage
Current Rating
Generation
Forward Voltage(VF(type))
Maximum Continuous Current (IF)
Total Capacitive Charge (QC (typ))
Total Power Dissipation (PTOT)
Package
650 V
4 A
Gen 6
1.27 V
4 A
16 nC
52 W
TO-252-2
650 V
4 A
Gen 6
1.27 V
4 A
16 nC
73 W
TO-220-2
650 V
6 A
Gen 6
1.27 V
6 A
23 nC
68 W
TO-252-2
650 V
6 A
Gen 6
1.27 V
6 A
23 nC
73 W
TO-220-2
650 V
6 A
Gen 6
1.27 V
6 A
23 nC
69 W
QFN
650 V
8 A
Gen 6
1.27 V
8 A
29 nC
85 W
TO-252-2
650 V
8 A
Gen 6
1.27 V
8 A
29 nC
92.6 W
TO-220-2
650 V
8 A
Gen 6
1.27 V
8 A
29 nC
92 W
QFN
650 V
10 A
Gen 6
1.27 V
10 A
34 nC
99 W
TO-252-2
650 V
10 A
Gen 6
1.27 V
10 A
35 nC
109 W
TO-220-2
650 V
10 A
Gen 6
1.27 V
10 A
34 nC
119 W
QFN
650 V
16 A
Gen 6
1.27 V
16 A
29 nC
100 W
TO-247-3
650 V
20 A
Gen 6
1.27 V
20 A
35 nC
116 W
TO-247-3

Reference Designs to Accelerate Your Time to Market

Wolfspeed not only offers the solutions to bring your design into the future of automotive technology, but our Reference Designs can help you accelerate your design cycle process. Reference Designs include full system design resource package with schematics, BOM, and more.

Featured Reference Designs for Uninterruptible Power Supplies

Featured Reference Designs for Uninterruptible Power Supplies

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Featured Reference Designs for Uninterruptible Power Supplies

Name
Buy Online
Topology
Status
Package
Designed By
Product SKU
View Product
AC to DC
Paper Design Only
FM3
Wolfspeed
CRD25AD12N-FMC
DC to AC
Available for Purchase
XM3
Wolfspeed
CRD300DA12E-XM3
DC to AC
Available for Purchase
XM3
Wolfspeed
CRD250DA12E-XM3
DC to AC
Available for Purchase
XM3
Wolfspeed
CRD200DA12E-XM3
DC to AC
Available for Purchase
XM3
Wolfspeed
CRD600DA12E-XM3
DC to DC
Paper Design Only
TO-247-4
Wolfspeed
CRD-22DD12N
DC to DC
Paper Design Only
TO-247-3
Wolfspeed
CRD-06600DD065N

Wolfspeed: Disruptive by Design

From its inception, Wolfspeed has been focused on the future, and that silicon carbide power is the technology that can bring your business forward.

Wolfspeed has more 30 years of experience in silicon carbide power and 7+ trillion installed field hours. We have invested in the future of silicon carbide technology and are expanding our capacity thirtyfold to support your business’s growth. With more than 20 years of diode and MOSFET production, we are equipped to supply the components that enable the future of Uninterruptible Power Supplies.

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Wolfspeed modules enable Sinexcel to shrink power quality solutions by 50% and improve peak efficiency to 99%

Wolfspeed is working with Shenzhen Sinexcel Electric Co., a global leading supplier of energy internet core power equipment and solutions, to supply Wolfspeed WolfPACK silicon carbide power modules for next generation Active Power Filter (APF) and Static Var Generator (SVG) of Power Quality Solutions.
Continue Reading  Case Study

Understanding Wolfspeed’s WolfPACK™ Power Module Family: Your Questions Answered!

Wolfspeed WolfPACK™ modules are a great choice for designers who want to increase efficiency and power density in a compact, industry-standard footprint. The family of modules provides an excellent solution for fast design implementation, scalability, long-term design support, and lower assembly overhead.
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