St300cpbf series, Vishay high power products – C&H Technology ST300CPbF Series User Manual

Page 5

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Document Number: 94403

4

Revision: 05-May-08

ST300CPbF Series

Vishay High Power Products

Phase Control Thyristors

(Hockey PUK Version), 650 A

Fig. 1 - Current Ratings Characteristics

Fig. 2 - Current Ratings Characteristics

Fig. 3 - Current Ratings Characteristics

Fig. 4 - Current Ratings Characteristics

Fig. 5 - On-State Power Loss Characteristics

Fig. 6 - On-State Power Loss Characteristics

Average On-state Current (A)

Maximum Allowable Heatsink Temperature (°C)

30

40

50

60

70

80

90

100

110

120

130

0

100

200

300

400

500

30°

60°

90°

120°

180°

Conduction Angle

ST300C..C Series
(Single Side Cooled)
R (DC) = 0.09 K/W

thJ-hs

Average On-state Current (A)

Maximum Allowable Heatsink Temperature (°C)

20

30

40

50

60

70

80

90

100

110

120

130

0

200

400

600

800

DC

30°

60° 90°

120°

180°

Conduction Period

ST300C..C Series
(Single Side Cooled)
R (DC) = 0.09 K/W

thJ-hs

Average On-state Current (A)

Maximum Allowable Heatsink Temperature (°C)

10

20

30

40

50

60

70

80

90

100

110

120

130

0

200

400

600

800

1000

30°

60°

90°

120°

180°

Conduction Angle

ST300C..C Series
(Double Side Cooled)
R (DC) = 0.04 K/W

thJ-hs

Average On-state Current (A)

Maximum Allowable Heatsink Temperature (°C)

20

30

40

50

60

70

80

90

100

110

120

130

0

200 400 600 800 1000 1200 1400

DC

30°

60°

90°

120°

180°

Conduction Period

ST300C..C Series
(Double Side Cooled)
R (DC) = 0.04 K/W

thJ-hs

Average On-state Current (A)

Maximum Average On-state Power Loss (W)

0

200

400

600

800

1000

1200

1400

1600

0

100 200 300 400 500 600 700

180°
120°

90°
60°
30°

RMS Limit

Conduction Angle

ST300C..C Series
T = 125 °C

J

Average On-state Current (A)

Maximum Average On-state Power Loss (W)

0

200

400

600

800

1000

1200

1400

1600

1800

0

200

400

600

800 1000 1200

DC

180°
120°

90°
60°
30°

RMS Limit

Conduction Period

ST300C..C Series
T = 125 °C

J

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