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T610H-6T;中文规格书,Datasheet资料

May 2009Doc ID 15713 Rev 11/9

T610H

High temperature 6 A sensitive TRIACs

Features

■Medium current TRIAC ■Logic level sensitive TRIAC ■150 °C max. T j turn-off commutation ■Clip bounding

RoHS (2002/95/EC) compliant package

Applications

■The T610H is designed for the control of AC actuators in appliances and industrial systems.■

The multi-port drive of the microcontroller can control the multiple loads of such appliances and systems through this sensitive gate TRIAC.

Description

Specifically designed to operate at 150 °C, the new 6 A T610H TRIAC provides an enhanced performance in terms of power loss and thermal dissipation. This allows the optimization of the heatsink size, leading to space and cost effectiveness when compared to electro-mechanical solutions.

Based on ST logic level technology, the T610H offers an I GT lower than 10 mA and specified minimal commutation and high noise immunity levels valid up to the T j max.

Table 1.

Device summary

Symbol Value Unit I T(RMS)

6A V DRM /V RRM 600V I GT MAX

10

mA

https://www.sodocs.net/doc/7613957151.html,

Characteristics T610H

2/9 Doc ID 15713 Rev 1

1 Characteristics

Table 2.

Absolute maximum ratings

Symbol Parameter

Value Unit I T(RMS)On-state rms current (full sine wave)T c = 138 °C 6A I TSM Non repetitive surge peak on-state current (full cycle, T j initial = 25 °C) F = 60 Hz t = 16.7 ms 63A F = 50 Hz t = 20 ms

60I 2t I 2t Value for fusing

t p = 10 ms 24A 2s dI/dt Critical rate of rise of on-state current I G = 2 x I GT , t r ≤ 100 ns

F = 120 Hz T j = 150 °C 50A/μs V DSM /V RSM

Non repetitive surge peak off-state voltage

t p = 10 ms T j = 25 °C V DRM /V RRM

+ 100

V I GM Peak gate current

t p = 20 μs

T j = 150 °C 4A P G(AV)Average gate power dissipation T j = 150 °C 1W T stg T j

Storage junction temperature range Operating junction temperature range

- 40 to + 150- 40 to + 150

°C

Table 3.

Electrical characteristics (T j = 25 °C, unless otherwise specified)

Symbol Test conditions

Quadrant Min.Max.Unit I GT V D = 12 V R L = 33 ΩI - II - III 1

10mA V GT I - II - III 1.0

V V GD V D = V DRM , R L = 3.3 k ΩI - II - III

0.15

V I H (1)I T = 100 mA 25mA I L I G = 1.2 I GT

I - III 30mA II

35

dV/dt (1)V D = 67% V DRM, gate open, T j = 150 °C 75V/μs (dI/dt)c (1)

Logic level, 0.1 V/μs, T j = 150 °C 8.7A/ms

Logic level, 15 V/μs, T j = 150 °C

2.3

1.For both polarities of A2 referenced to A1.

T610H Characteristics

Doc ID 15713 Rev 13/9

Table 4.

Static characteristics

Symbol Test conditions

Value Unit V T (1)I TM = 8.5 A, t p = 380 μs T j = 25 °C MAX. 1.5V V t0 (1)Threshold voltage T j = 150 °C MAX.0.8V R d (1)

Dynamic resistance T j = 150 °C MAX.62m ΩI DRM I RRM

V DRM = V RRM

T j = 25 °C MAX.5μA

T j = 150 °C

MAX. 2.7mA V D /V R = 400 V (at peak mains voltage)T j = 150 °C MAX. 2.2V D /V R = 200 V (at peak mains voltage)T

j = 150 °C

MAX.

1.8

1.for both polarities of A2 referenced to A1.

Table 5.

Thermal resistance

Symbol Parameter

Value Unit R th(j-c)Junction to case (AC) 1.8 °C/W

R th(j-a)

Junction to ambient

60

Figure 1.

Maximum power dissipation versus Figure 2.On-state rms current versus case

Figure 3.

On-state rms current versus ambient temperature (free air Figure 4.

Relative variation of thermal

impedance, versus pulse duration

Characteristics

T610H

4/9 Doc ID 15713 Rev 1

Figure 5.

Relative variation of gate trigger current and voltage versus junction

Figure 6.Relative variation of holding and latching current versus junction

Figure 7.

Surge peak on-state current versus number of cycles

Figure 8.

Non-repetitive surge peak on-state current and corresponding value 2

Figure 9.

On-state characteristics (maximum values)

Figure 10.Relative variation of critical rate of

decrease of main current versus

T610H

Characteristics

Doc ID 15713 Rev 15/9

Figure 11.Relative variation of critical rate of decrease of main current versus

Figure 12.Relative variation of static dV/dt

immunity versus junction Figure 13.Variation of leakage current versus junction temperature for different

Figure 14.Acceptable case to ambient thermal

resistance versus repetitive peak

Ordering information scheme T610H 2 Ordering information scheme

6/9 Doc ID 15713 Rev 1

T610H Package information

Doc ID 15713 Rev 17/9

3 Package information

●Epoxy meets UL94, V0

Recommended torque 0.4 to 0.6 N·m

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: https://www.sodocs.net/doc/7613957151.html, . ECOPACK ? is an ST trademark.

Ordering information T610H

8/9 Doc ID 15713 Rev 1

4 Ordering information

5 Revision history

Table 7.

Ordering information

Order code Marking Package Weight Base qty

Delivery mode

T610H-6T

T610H 6T

TO-220AB

2.3 g

50

T ube

Table 8.

Document revision history

Date Revision

Changes

15-May-2009

1

First issue.

T610H

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Doc ID 15713 Rev 19/9

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T610H-6T

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