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PDF T16T Data sheet ( Hoja de datos )

Número de pieza T16T
Descripción logic level and standard 16A Triacs
Fabricantes STMicroelectronics 
Logotipo STMicroelectronics Logotipo



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T16T
Entry level Snubberless™, logic level and standard 16 A Triacs
Features
Medium current Triac
High static and dynamic commutation
Low thermal resistance with clip bonding
Packages is RoHS (2002/95/EC) compliant
600 V VRM
Applications
Entry level and value sensitive application
General purpose ac line load switching
Motor control circuits in power tools
Small home appliances, lighting
Inrush current limiting circuits
Overvoltage crowbar protection
Description
Available in through-hole, the T16T series of
Triacs can be used as on/off or phase angle
control function in general purpose ac switching
where high commutation capability is required.
www.DataSheet4U.com
Initially planned for power Tools (T series)
equipment, this series can be designed-in in
many value sensitive appliances thanks to the
parameters guidance provided in the following
pages.
Provides insulation rated at 2500 V rms
(TO-220AB insulated package).
A2
G
A1
A1
A2
G
TO-220AB insulated
(T16xxT-6I)
Table 1. Device summary
Order code
Symbol
T1610T-6I
IGT 3Q
logic level
T1620T-6I
T1635T-6I
IGT 3Q
Snubberless
Value
10 mA
20 / 35 mA
TM: Snubberless is a trademark of STMicroelectronics
December 2009
Doc ID 16488 Rev 1
1/9
www.st.com
9

1 page




T16T pdf
T16T
Characteristics
Figure 7.
Non repetitive surge peak on state Figure 8.
current for a sinusoidal
Relative variation of gate trigger
current and gate trigger voltage
versus junction temperature
10000 ITSM(A), I²t (A²s)
1000
dl /dt limitation: 50 A / µs
100
10
0.01
0.10
Tj initial = 25 °C
ITSM
I²t
tp(ms)
1.00
10.00
3.0 IGT, VGT[Tj] / IGT, VGT[Tj = 25 °C]
2.5
2.0 IGT Q3
IGT Q1-Q2
1.5
1.0 IGT Q1-Q2-Q3
0.5
0.0
-50
-25
0
Tj(°C)
25
50
75 100 125
Figure 9.
Relative variation of holding
Figure 10. Relative variation of critical rate of
current and latching current versus
decrease of main current versus
junction temperature
junction temperature
IH, IL[Tj] / IH, IL[Tj = 25 °C]
2.5
2.0
1.5
dV / dt [Tj] / dV / dt [Tj = 125 °C]
7
6
5
4
VD = VR = 402 V
1.0
0.5
0.0
-50
-25
Tj(°C)
0 25 50
IL
IH
75 100 125
3
2
1
0
25
1
Tj(°C)
50 75
100 125
Figure 11. Relative variation of critical rate of Figure 12. Leakage current versus junction
decrease of main current versus
www.DataSheet4U.com junction temperature
temperature for different values of
blocking voltage (typical values)
(dl / dt)c [Tj] / (dl / dt)c [Tj = 125 °C]
8
7
6
5
4
3
2
1
Tj(°C)
0
25 50 75
100
125
IDRM/IRRM [Tj; VDRM / VRRM] / IDRM/IRRM
1.0E+00
[Tj = 125 °C; 700 V]
VDRM = VRRM = 600 V
1.0E-01
VDRM = VRRM = 400 V
1.0E-02
VDRM = VRRM = 200 V
1.0E-03
25 50 75 100 125
Doc ID 16488 Rev 1
5/9

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