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TYN640, TYN840
40 A standard SCRs
Datasheet - production data

Description

A

These standard SCRs are suitable for
applications where in-rush current conditions are
critical, such as overvoltage crowbar protection
circuits in power supplies, in-rush current limiting
circuits, solid state relays (in back to back
configuration), welding equipment, high power
motor control circuits.

G

Using clip assembly technology, they provide a
superior performance in high surge current
capabilities.

K
A

Table 1. Device summary
Order code

K

600 V

35 mA

TYN840RG

G

Sensitivity

TYN640RG

A

Voltage

800 V

35 mA

TO-220AB

Features
 On-state rms current, IT(RMS): 40 A
 Repetitive peak off-stat voltage, VDRM, VRRM:
– 600 V
– 800 V
 Triggering gate current, IGT: 35 mA

November 2013
This is information on a product in full production.

DocID6944 Rev 6

1/8
www.st.com

Characteristics

1

TYN640, TYN840

Characteristics
Table 2. Absolute ratings (limiting values)
Symbol

Parameter

Value

Unit

On-state rms current (180° conduction angle)

Tc = 95 °C

40

A

IT(AV)

Average on-state current (180° conduction angle)

Tc = 95 °C

25

A

ITSM

Non repetitive surge peak on-state
current

IT(RMS)

I²t

I²t Value for fusing

tp = 8.3 ms
tp = 10 ms
tp = 10 ms

480
Tj = 25 °C
Tj = 25 °C

A
460
1060

A2S

dI/dt

Critical rate of rise of on-state current
F = 60 Hz
IG = 2 x IGT, tr  100 ns

Tj = 125
°C

50

A/µs

IGM

Peak gate current

Tj = 125
°C

4

A

Tj = 125
°C

1

W

PG(AV)

tp = 20 µs

Average gate power dissipation

Tstg
Tj

Storage junction temperature range
Operating junction temperature range

- 40 to + 150
- 40 to + 125

°C

VRGM

Maximum peak reverse gate voltage

5

V

Table 3. Electrical Characteristics (Tj = 25 °C, unless otherwise specified)
Symbol

Test Conditions

Value

Unit

MIN.
IGT

MAX.
MAX.

RL = 3.3 kΩ

IH

IT = 500 mA

Gate open

IL

V

MIN.

0.2

V

75

mA

MAX.

VD = VDRM

1.3

MAX.

VGT
VGD

35

150

mA

mA

RL = 33 Ω

VD = 12 V

3.5

Tj = 125 °C

IG = 1.2 x IGT

dV/dt

VD = 67% VDRM Gate open

Tj = 125 °C

MIN.

1000

V/µs

VTM

ITM = 80 A

Tj = 25 °C

MAX.

1.6

V

Vt0

Threshold voltage

Tj = 125 °C

MAX.

0.85

V

Rd

Dynamic resistance

Tj = 125 °C

MAX.

10



5

µA

4

mA

Value

Unit

IDRM
IRRM

tp = 380 µs

Tj = 25 °C

VDRM = VRRM

Tj = 125 °C

MAX.

Table 4. Thermal resistance
Symbol

Parameter

Rth(j-c)

0.8

°C/W

Rth(j-a)

2/8

Junction to case (DC)
Junction to ambient (DC)

60

°C/W

DocID6944 Rev 6

TYN640, TYN840

Characteristics

Figure 1. Maximum average power dissipation
versus average on-state current

Figure 2. Average and DC on-state current
versus case temperature
IT(AV)(A)

P(W)
50

40
α = 180°

35

DC

40

30
25

30

α = 180°

20
20

15
360°

10

10

5

α

IT(AV)(A)

Tcase(°C)

0

0

0

5

10

15

20

25

30

Figure 3. Relative variation of thermal
impedance versus pulse duration

0

25

50

75

100

125

Figure 4. Relative variation of gate trigger
current, holding current and latching current
versus junction temperature

K=[Zth/Rth]

IGT,IH,IL[Tj] / IGT,IH,IL[Tj=25°C]

1.00

2.5
Zth(j-c)

2.0

1.5
0.10

IGT

Zth(j-a)

1.0

IH & IL

0.5

tp(s)

Tj(°C)

0.01
1E-3

1E-2

1E-1

1E+0

1E+1

1E+2

5E+2

0.0
-40

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0

20

40

60

80

100

120

140

3/8
8

Characteristics

TYN640, TYN840

Figure 5. Surge peak on-state current versus
number of cycles
500

Figure 6. Non-repetitive surge peak on-state
current for a sinusoidal pulse with width
tp & lt; 10 ms, and corresponding values of I²t

ITSM(A)
ITSM(A), I2t (A2s)
5000

450

Tj initial = 25°C
tp=10ms

400
350

One cycle

Non repetitive
Tj initial=25 °C

300

ITSM
I2t

1000

250
200
150

dI/dt limitation

100
Repetitive
TC=95°C

50

tp(ms)

Number of cycles

100

0
1

10

100

0.01

1000

0.10

1.00

Figure 7. On-state characteristics (maximum values)
ITM(A)
500

Tj max.:
Vt0=0.85V
Rd=10mΩ

100

Tj=max

10

Tj=25°C

VTM(V)
1
0.0

4/8

0.5

1.0

1.5

2.0

2.5

3.0

DocID6944 Rev 6

3.5

4.0

4.5

5.0

10.00

TYN640, TYN840

2

Package information

Package information


Epoxy meets UL94, V0



Lead-free package

In order to meet environmental requirements, ST offers these devices in different grades of
ECOPACK® packages, depending on their level of environmental compliance. ECOPACK®
specifications, grade definitions and product status are available at: www.st.com.
ECOPACK® is an ST trademark.
Figure 8. TO-220AB dimension definitions

C

B
ØI

b2
L
F
A

I4
l3
c2

a1
l2

a2

M
b1

c1

e

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8

Package information
Table 5.

TYN640, TYN840
TO-220AB dimension values
Dimensions

Ref.

Millimeters
Min.

A

Typ.

Max.

Min.

15.90

15.20

a1

Inches

0.598

3.75

Typ.

Max.
0.625

0.147

a2

13.00

14.00

0.511

0.551

B

10.00

10.40

0.393

0.409

b1

0.61

0.88

0.024

0.034

b2

1.23

1.32

0.048

0.051

C

4.40

4.60

0.173

0.181

c1

0.49

0.70

0.019

0.027

c2

2.40

2.72

0.094

0.107

e

2.40

2.70

0.094

0.106

F

6.20

6.60

0.244

0.259

ØI

3.75

3.85

0.147

0.151

I4

15.80

16.80

0.622

L

2.65

2.95

0.104

0.116

l2

1.14

1.70

0.044

0.066

l3

1.14

1.70

0.044

0.066

M

6/8

16.40

2.60

DocID6944 Rev 6

0.646

0.102

0.661

TYN640, TYN840

3

Ordering information

Ordering information
Figure 9. Ordering Information Scheme

TYN

x

40

RG

Standard SCR series
Voltage
6 = 600V
8 = 800V
Current
40 = 40A
Packing mode
RG = Tube

Table 6. Ordering Information
Ordering type
TYN640RG

TYN640

TYN840RG

Package

Weight

TO-220AB

4

Marking

2.3 g

Base qty Delivery mode

TYN840

50

Tube

Revision history
Table 7. Document revision history
Date

Revision

Changes

Apr-2002

4A

13-Feb-2006

5

TO-220AB delivery mode changed from bulk to tube.
ECOPACK statement added.

05-Nov-2013

6

Updated Figure 5.

Last update.

DocID6944 Rev 6

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TYN640, TYN840

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