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BTA316-800E PDF预览

BTA316-800E

更新时间: 2024-04-09 18:59:30
品牌 Logo 应用领域
瑞能 - WEEN /
页数 文件大小 规格书
13页 231K
描述
Planar passivated high commutation three quadrant triac in a SOT78 plastic package. This "series E" triac balances the requirements of commutation performance and gate sensitivity. The "sensitive gate" "series E" is intended for interfacing with low power drivers including microcontrollers.

BTA316-800E 数据手册

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BTA316-800E  
3Q Hi-Com Triac  
12 September 2018  
Product data sheet  
1. General description  
Planar passivated high commutation three quadrant triac in a SOT78 plastic package. This "series  
E" triac balances the requirements of commutation performance and gate sensitivity. The "sensitive  
gate" "series E" is intended for interfacing with low power drivers including microcontrollers.  
2. Features and benefits  
3Q technology for improved noise immunity  
Direct interfacing with low power drivers and microcontrollers  
Good immunity to false turn-on by dV/dt  
High commutation capability with sensitive gate  
High voltage capability  
Planar passivated for voltage ruggedness and reliability  
Triggering in three quadrants only  
3. Applications  
Electronic thermostats (heating and cooling)  
High power motor controls e.g. washing machines and vacuum cleaners  
4. Quick reference data  
Table 1. Quick reference data  
Symbol  
Parameter  
Conditions  
Min  
Typ  
Max  
Unit  
VDRM  
repetitive peak off-  
state voltage  
-
-
800  
V
IT(RMS)  
ITSM  
RMS on-state current  
full sine wave; Tmb ≤ 101 °C; Fig. 1;  
Fig. 2; Fig. 3  
-
-
-
-
-
-
-
-
16  
A
non-repetitive peak on- full sine wave; Tj(init) = 25 °C;  
state current  
140  
150  
125  
A
tp = 20 ms; Fig. 4; Fig. 5  
full sine wave; Tj(init) = 25 °C;  
tp = 16.7 ms  
A
Tj  
junction temperature  
°C  
Static characteristics  
IGT gate trigger current  
VD = 12 V; IT = 0.1 A; T2+ G+;  
Tj = 25 °C; Fig. 7  
-
-
-
-
-
-
10  
10  
10  
mA  
mA  
mA  
VD = 12 V; IT = 0.1 A; T2+ G-;  
Tj = 25 °C; Fig. 7  
VD = 12 V; IT = 0.1 A; T2- G-;  
Tj = 25 °C; Fig. 7  
 
 
 
 

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