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C&H Technology PM25RL1A120 User Manual

Page 7

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PM25RL1A120
Intellimod™ L1-Series
Three Phase IGBT Inverter + Brake
25 Amperes/1200 Volts

6

Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com

03/10 Rev. 1

10

0

10

1

10

2

10

-1

COLLECTOR CURRENT, I

C

, (AMPERES)

SWITCHING TIME, t

c(on)

, (

µs)

SWITCHING TIME (ON) VS.

COLLECTOR CURRENT

(TYPICAL - INVERTER PART)

10

0

10

1

10

0

10

1

10

2

10

-1

COLLECTOR CURRENT, I

C

, (AMPERES)

SWITCHING TIME, t

c(off)

, (

µs)

SWITCHING TIME (OFF) VS.

COLLECTOR CURRENT

(TYPICAL - INVERTER PART)

10

0

10

1

10

0

10

1

10

2

10

-1

COLLECTOR CURRENT, I

C

, (AMPERES)

SWITCHING TIME, t

off

, (

µs)

SWITCHING TIME (OFF) VS.

COLLECTOR CURRENT

(TYPICAL - INVERTER PART)

10

0

10

1

SC (SC OF T

j

= 25°C IS NORMALIZED 1)

SHORT CIRCUIT TRIP LEVEL

CHARACTERISTICS

(TYPICAL - INVERTER PART)

CIRCUIT FREQUENCY, f

C

, (kHz)

CIRCUIT CURRENT, I

D

, (mA

)

CIRCUIT CURRENT VS.

CARRIER FREQUENCY CHARACTERISTICS

(N-SIDE - INVERTER PART)

0

25

20

15

5

10

35

30

25

15

20

10

5

0

35

30

25

15

20

10

5

0

CIRCUIT FREQUENCY, f

C

, (kHz)

CIRCUIT CURRENT, I

D

, (mA

)

CIRCUIT CURRENT VS.

CARRIER FREQUENCY CHARACTERISTICS

(P-SIDE - INVERTER PART)

0

25

V

D

= 15V

T

j

= 25°C

T

j

= 125°C

V

D

= 15V

V

D

= 15V

T

j

= 25°C

T

j

= 125°C

20

15

5

10

JUNCTION TEMPERATURE, T

j

, (°C)

SUPPLY CIRCUIT UNDER-VOLTAGE

PROTECTION, UV/UV

r

, (VOLTS

)

SUPPLY CIRCUIT UNDER-VOLTAGE

PROTECTION CHARACTERISTICS

(TYPICAL - INVERTER PART)

-50

150

UV
UV

r

100

50

0

20

12

16

8

4

0

JUNCTION TEMPERATURE, T

j

, (°C)

-40 -20

140

100 120

80

60

20 40

0

2.0

1.2

1.6

0.8

0.4

0

10

0

10

1

10

2

10

-1

COLLECTOR CURRENT, I

C

, (AMPERES)

SWITCHING TIME, t

on

, (

µs)

SWITCHING TIME (ON) VS.

COLLECTOR CURRENT

(TYPICAL - INVERTER PART)

10

0

10

1

TIME, (s)

TRANSIENT THERMAL

IMPEDANCE CHARACTERISTICS

(IGBT & FWDi - INVERTER PART)

10

1

10

-1

10

-2

10

-3

10

0

10

1

10

0

10

-1

10

-2

Z

th

= R

th

• (NORMALIZED VALUE)

NORMALIZED TRANSIENT THERMAL IMPEDANCE, Z

th

(j-c')

Single Pulse
T

C

= 25°C

Per Unit Base =
R

th(j-c)

=

0.97°C/W
(IGBT)
R

th(j-c)

=

1.60°C/W
(FWDi)

V

CC

= 600V

V

D

= 15V

INDUCTIVE LOAD

T

j

= 25°C

T

j

= 125°C

V

CC

= 600V

V

D

= 15V

INDUCTIVE LOAD

T

j

= 25°C

T

j

= 125°C

V

CC

= 600V

V

D

= 15V

INDUCTIVE LOAD

T

j

= 25°C

T

j

= 125°C

V

CC

= 600V

V

D

= 15V

INDUCTIVE LOAD

T

j

= 25°C

T

j

= 125°C