SGS Thomson Microelectronics TYN690, TYN688, TYN685, TYN682, TYN683 Datasheet

...
FEATURES
.HIGHSURGE CAPABILITY
.HIGH ON-STATECURRENT
.HIGH STABILITYAND RELIABILITY
DESCRIPTION
TYN 682 ---> TYN 692
SCR
The TYN 682 ---> TYN 692 Family Silicon Control­led Rectifiers are high performance glass passi­vated chips technology. This general purpose Family Silicon Controlled Rectifiers is designed for power supply up to 400Hz on resistive or inductive load.
ABSOLUTE RATINGS (limiting values)
Symbol Parameter Value Unit
I
T(RMS)
I
T(AV)
I
TSM
I2tI
dI/dt Critical rate of rise of on-state current
Tstg
Tj
RMS on-state current (180° conduction angle)
Average on-state current (180° conduction angle, single phase circuit)
Non repetitive surge peak on-state current ( Tj initial = 25°C)
2
t value tp = 10 ms 310 A2s
Gate supply : IG= 100 mA diG/dt = 1 A/µs Storage and operating junction temperature range - 40 to + 150
tp = 8.3 ms 260 A
tp = 10 ms 250
TO220AB
(Plastic)
100 A/µs
- 40 to + 125
G
A
K
°C °C
Tl Maximum lead temperature for soldering during 10 s at 4.5 mm
from case
Symbol Parameter TYN Unit
682 683 685 688 690 692
V
DRM
V
RRM
March 1995
Repetitive peak off-state voltage Tj = 125 °C
50 100 200 400 600 800 V
260 °C
1/4
TYN 682 ---> TYN 692
THERMAL RESISTANCES
Symbol Parameter Value Unit
Rth (j-a) Junction to ambient 60 °C/W
Rth (j-c) DC Junction to case for DC 1.3 °C/W
GATE CHARACTERISTICS (maximum values)
P
ELECTRICAL CHARACTERISTICS
=1W PGM= 10W (tp = 20 µs) I
G (AV)
Symbol Test Conditions Value Unit
=4A(tp=20µs) V
FGM
RGM
=5V.
I
GT
V
GT
V
GD
tgt VD=V
I
L
I
H
V
TM
I
DRM
I
RRM
dV/dt Linear slope up to VD=67%V
tq VD=67%V
VD=12V (DC) RL=33 Tj=25°C MAX 25 mA VD=12V (DC) RL=33 Tj=25°C MAX 1.5 V VD=V
DRMRL DRMIG
dIG/dt = 1.5A/µs IG= 1.2 I IT= 100mA gate open Tj=25°C MAX 40 mA ITM= 50A tp= 380µs Tj=25°C MAX 1.4 V V
DRM
V
RRM
gate open
dITM/dt=30 A/µsdV
=3.3k Tj= 125°C MIN 0.2 V
= 200mA
GT
Rated Rated
DRMITM
= 50A VR= 25V
/dt= 50V/µs
D
DRM
Tj=25°C TYP 2 µs
Tj=25°C TYP 70 mA
Tj=25°C MAX 0.01 mA Tj= 125°C2 Tj= 125°C MIN 500 V/µs
Tj= 125°C TYP 70 µs
2/4
Loading...
+ 2 hidden pages