BTA10-600B ,10A TRIACSFEATURES:A2Symbol Value UnitGI10 AT(RMS)A1V /V600 and 800 VDRM RRMA2IGT (Q ) 25 to 50 mA1DESCRIPTIO ..
BTA10-600BRG ,10A TRIACSFEATURES:A2Symbol Value UnitGI10 AT(RMS)A1V /V600 and 800 VDRM RRMA2IGT (Q ) 25 to 50 mA1DESCRIPTIO ..
BTA10-600BW ,10A TRIACSBTA/BTB10 Series®SNUBBERLESS™ & STANDARD 10A TRIACS MAIN
BTA10-600BWRG ,10A TRIACSABSOLUTE MAXIMUM RATINGSSymbol Parameter Value UnitI RMS on-state current TO-220AB Tc = 105°C AT(RM ..
BTA10-600C ,10A TRIACSABSOLUTE MAXIMUM RATINGSSymbol Parameter Value UnitI RMS on-state current TO-220AB Tc = 105°C AT(RM ..
BTA10-600CRG ,10A TRIACSABSOLUTE MAXIMUM RATINGSSymbol Parameter Value UnitI RMS on-state current TO-220AB Tc = 105°C AT(RM ..
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BTA10/600B-BTA10-600B-BTA10-600BW-BTA10-600C-BTA10-600CW-BTA10-800CW-BTB10-600B-BTB10-600BW-BTB10-600C-BTB10-800BW
10A TRIACS
1/6
BTA/BTB10 Series
SNUBBERLESS™ & STANDARD 10A TRIACS
April 2002 - Ed: 5A
MAIN FEATURES:
DESCRIPTIONAvailable either in standard or snubberless
version, the BTA/BTB10 triac series is suitable for
general purpose AC switching. They can be used
as an ON/OFF function in applications such as
static relays, heating regulation, induction motor
starting circuits... or for phase control operation in
light dimmers, motor speed controllers, ...
The snubberless version (W suffix) is specially
recommended for use on inductive loads, thanks
to their high commutation performances.
By using an internal ceramic pad, the BTA series
provides voltage insulated tab (rated at 2500 V
RMS) complying with UL standards (File ref.:
E81734).
ABSOLUTE MAXIMUM RATINGS
BTA/BTB10 Series2/6
ELECTRICAL CHARACTERISTICS (Tj = 25°C, unless otherwise specified) SNUBBERLESS™ (3 Quadrants) STANDARD (4 Quadrants)
STATIC CHARACTERISTICS
Note 1: minimum IGT is guaranted at 5% of IGT max.
Note 2: for both polarities of A2 referenced to A1
BTA/BTB10 Series3/6
THERMAL RESISTANCES
PRODUCT SELECTORBTB: Non insulated TO-220AB package
OTHER INFORMATION
Note: xxx = voltage, y = sensitivity, z = type
BTA/BTB10 Series4/6
Fig. 1: Maximum power dissipation versus RMSon-state current (full cycle).
Fig. 2: RMS on-state current versus case
temperature (full cycle).
Fig. 3: Relative variation of thermal impedance
versus pulse duration.
Fig. 4: On-state characteristics (maximum
values).
Fig. 5: Surge peak on-state current versus
number of cycles.
Fig. 6: Non-repetitive surge peak on-state
current for a sinusoidal pulse with width< 10ms, and corresponding value of I²t.
BTA/BTB10 Series5/6
Fig. 7: Relative variation of gate trigger current,holding current and latching current versus
junction temperature (typical values).
Fig. 8: Relative variation of critical rate of decreaseof main current versus (dV/dt)c (typical values).
Fig. 9: Relative variation of critical rate of
decrease of main current versus junction
temperature.
BTA/BTB10 Series6/6
PACKAGE MECHANICAL DATATO-220AB (Plastic)
. consequences
of use of such information nor for any infringement of patents or other rights of third parties which may result from its use. No license is granted
by implication or otherwise under any patent or patent rights of STMicroelectronics. Specifications mentioned in this publication are subject
to change without notice. This publication supersedes and replaces all information previously supplied. STMicroelectronics products are not
authorized for use as critical components in life support devices or systems without express written approval of STMicroelectronics.
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© 2002 STMicroelectronics - Printed in Italy - All Rights Reserved
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