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S6055W Datasheet(PDF) 3 Page - Littelfuse

Part # S6055W
Description  SCRs (1 A to 70 A)
Download  12 Pages
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Manufacturer  LITTELFUSE [Littelfuse]
Direct Link  http://www.littelfuse.com
Logo LITTELFUSE - Littelfuse

S6055W Datasheet(HTML) 3 Page - Littelfuse

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Data Sheets
SCRs
©2004 Littelfuse, Inc.
E6 - 3
http://www.littelfuse.com
Thyristor Product Catalog
+1 972-580-7777
Electrical Specification Notes
(1) See Figure E6.5 through Figure E6.16 for current rating at
specified operating case temperature.
(2) See Figure E6.1 and Figure E6.2 for free air current rating.
(3) See Figure E6.19 and Figure E6.20 for instantaneous on-state
current versus on-state voltage (typical).
(4) See Figure E6.18 for IGT versus TC.
(5) See Figure E6.17 for IH versus TC.
(6) For more than one full cycle rating, see Figure E6.23.
(7) See Figure E6.22 for tgt versus IGT.
(8) See Figure E6.21 for VGT versus TC.
(9) Test conditions are as follows:
•IT = 1 A for 1 A devices and 2 A for all other devices
• Pulse duration = 50 µs, dv/dt = 20 V/µs, di/dt = -10 A/µs for 1 A
devices, and -30 A/µs for other devices
•IGT = 200 mA at turn-on
(10) See Figure E6.5 through Figure E6.10 for maximum allowable
case temperatures at maximum rated current.
(11) See package outlines for lead form configuration. When ordering
special lead forming, add type number as suffix to part number.
(12) Pulse width
≤10 µs
(13) Initial on-state current = 200 mA dc for 1 A through 16 A devices;
400 mA dc for 20 A through 70 A devices.
(14) TC = TJ for test conditions in off state.
(15) The R, K, or M package rating is intended for high surge condition
use only and not recommended for
≥50 A rms continuous current
use since narrow pin lead temperature can exceed PCB solder
melting temperature. Teccor's J package or W package is
recommended for
≥50 A rms continuous current requirements.
(16) For various durations of an exponentially decaying current
waveform, see Figure E6.3 and Figure E6.4. (tW is defined as
5 time constants.)
(17) Minimum non-trigger VGT at 125 °C is 0.2 V.
IDRM & IRRM
VTM
VGT
IH
IGM
PGM
PG(AV)
ITSM
dv/dt
I2t
di/dt
tgt
tq
(14)
mAmps
(3)
Volts
(8)
(17)
Volts
(5) (13)
mAmps
(12)
Amps
(12)
Watts
Watts
(6) (10)
Amps
Volts/µSec
Amps2Sec
Amps/µSec
(7)
µSec
(9) (10)
µSec
TC =
25 °C
TC =
100 °C
TC =
125 °C
TC =
25 °C
TC =
25 °C
60/50 Hz
TC =
100 °C
TC =
125 °C
MAX
MAX
MAX
MAX
MIN
MIN
TYP
MAX
0.01
0.2
0.5
1.6
1.5
30
1.5
15
0.3
30/25
40
20
3.7
50
2
35
0.01
0.2
0.5
1.6
1.5
30
1.5
15
0.3
30/25
40
20
3.7
50
2
35
0.01
0.2
0.5
1.6
1.5
30
1.5
15
0.3
30/25
40
20
3.7
50
2
35
0.01
0.2
0.5
1.6
1.5
30
2
20
0.5
100/83
350
250
41
100
2
35
0.01
0.2
0.5
1.6
1.5
30
2
20
0.5
100/83
350
250
41
100
2
35
0.01
0.2
0.5
1.6
1.5
30
2
20
0.5
100/83
300
225
41
100
2
35
0.01
0.2
0.5
1.6
1.5
30
2
20
0.5
100/83
250
200
41
100
2
35
0.02
3
1.6
1.5
30
2
20
0.5
100/83
100
41
100
2
35
0.01
0.2
0.5
1.6
1.5
30
2
20
0.5
100/83
350
250
41
100
2
35
0.01
0.2
0.5
1.6
1.5
30
2
20
0.5
100/83
350
250
41
100
2
35
0.01
0.2
0.5
1.6
1.5
30
2
20
0.5
100/83
300
225
41
100
2
35
0.01
0.2
0.5
1.6
1.5
30
2
20
0.5
100/83
250
200
41
100
2
35
0.02
3
1.6
1.5
30
2
20
0.5
100/83
100
41
100
2
35
0.01
0.2
0.5
1.6
1.5
30
2
20
0.5
100/83
350
250
41
100
2
35
0.01
0.2
0.5
1.6
1.5
30
2
20
0.5
100/83
350
250
41
100
2
35
0.01
0.2
0.5
1.6
1.5
30
2
20
0.5
100/83
300
225
41
100
2
35
0.02
0.5
1
1.6
1.5
30
2
20
0.5
100/83
250
200
41
100
2
35
0.02
3
1.6
1.5
30
2
20
0.5
100/83
100
41
100
2
35
0.01
0.5
1
1.6
1.5
40
2
20
0.5
120/100
350
250
60
100
2
35
0.01
0.5
1
1.6
1.5
40
2
20
0.5
120/100
350
250
60
100
2
35
0.01
0.5
1
1.6
1.5
40
2
20
0.5
120/100
300
225
60
100
2
35
0.02
0.5
1
1.6
1.5
40
2
20
0.5
120/100
250
200
60
100
2
35
0.02
3
1.6
1.5
40
2
20
0.5
120/100
100
60
100
2
35


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