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Vishay high power products – C&H Technology 104MT..KPbF Series User Manual

Page 6

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Document Number: 94351

For technical questions, contact: [email protected]

www.vishay.com

Revision: 05-May-08

5

54-94-104MT..KPbF Series

Three Phase AC Switch

(Power Modules), 50 A to 100 A

Vishay High Power Products

Fig. 4 - Maximum Non-Repetitive Surge Current

Fig. 5 - Maximum Non-Repetitive Surge Current

Fig. 6 - Current Ratings Characteristic

Fig. 7 - Forward Voltage Drop Characteristics

Fig. 8 - Total Power Loss Characteristics

325

350

300

275

250

225

200

175

150

Peak Half

S

ine Wave

On-

S

tate Current (A)

Number of Equal Amplitude Half

Cycle Current Pulses (N)

10

100

1

at 60 Hz 0.0083 s
at 50 Hz 0.0100 s

At any rated load condition and with

rated V

RRM

applied following surge.

54MT..K Series

Per junction

Initial T

J

= 125 °C

350

300

250

200

150

400

Peak Half

S

ine Wave

On-

S

tate Current (A)

Pulse Train Duration (s)

0.1

1

0.01

Maximum non-repetitive surge current

versus pulse train duration. Control

of conduction may not be maintained.

54MT..K Series

Per junction

No voltage reapplied
Rated V

RRM

reapplied

Initial T

J

= 125° C

90

80

70

60

50

100

110

120

130

Maximum Allowable Ca

s

e

Temperature (°C)

RMS Output Current (A)

20

40

60

80

120

100

0

94MT..K Series
Device fully turned-on

Per single AC switch

For all conduction angles

I

RMS

~

1

10

100

1000

In

s

tantaneou

s

On-

S

tate Current (A)

Instantaneous On-State Voltage (V)

1

2

4

5

3

0

T

J

= 25 °C

94MT..K Series

Per junction

T

J

= 125 °C

50

450

350

400

300

250

150

200

100

0

Maximum Total Power Lo

ss

(W)

(Per Total Module)

RMS Output Current (A)

30

10

20

40

50

90 100

60

70

80

0

180°
120°

90°
60°
30°

94MT..K Series
T

J

= 125 °C

Device fully
turned-on

Conduction angle

Ш

Ш

0

50

350

400

450

300

250

200

150

100

Maximum Total Power Lo

ss

(W)

(Per Total Module)

Maximum Allowable Ambient

Temperature (°C)

75

100

125

50

25

0

0.05 K/W

0.15 K/W

0.3

K/W

0.5 K/W

0.7 K/W

1.0 K/W

1.5 K/W

R

th

S

A

= 0.0

3 K/W -

Δ

R