TLC111A STMICROELECTRONICS | Alldatasheet
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IS] 7 SGS-THOMSON MICROELECTRONICS TLC 111 A>TLC 381A Sa nea ES S G S=-THOMSON SENSITIVE GATE TRIACS = GLASS PASSIVATED CHIP « HIGH SURGE CURRENT DESCRIPTION ™ Low power triacs suited for 50 and 60 Hz up to a 380 Vams.
APPLICATIONS
m= CONTROL SPEED FOR LITTLE MOTORS ; TL ELECTRIC PUMP OR VENTILATOR, SEWING (Plastic) MACHINE a RELAY, DETECTOR, ALARM SYSTEM » ELECTRONIC STARTER FOR LAMP = HIGH POWER TRIAC DRIVER, ABSOLUTE RATINGS (limiting values) [-symbot [Parameter Value [| unit | RMS on-state Current (360° conduction angle) 1 Tras) | RMS on-state Current on Printed Circuit Ta =25°C O77 A (860° conduction angle) Irsm | Non Repetitive Surge Peak on-state Current [t=83ms | 16 | |e _ | tValueforFusing ft tome [a5 | ate | Critical Rate of Rise of on-state Current (1) _| Repetitive 10 Teta | Storage and Operating Junction Temperature Range = 40 to 150 c T, = 40 to 110 c [-Symbor [___ “Parameter Leva afreazia]recaaia[vicsaral Un | Fepatve Peak ot-stte votage(@ | 200 | «00 oo | 700 |v _| ()lo= 250 mA did = 1 Aus (2) T= 110°C. THERMAL RESISTANCES [-Symbor [Parameter | ~vawe | unit] Rin g-a) | Junction to Ambient on Printed Circuit 75 "ow Rinwn__| Junction-leads for 360° Conduction Anglo (F = 50 Hz) 45 ow February 1989 14 sit
GATE CHARACTERISTICS (maximum values) SG S-THOMSON Pam = 2.W (tp= 10 ts) lam =1 A (tp = 10 us) ———S Pa cay) = 0.1 W Vem = 16 V (tp = 10 pts) T +25 -)3
ELECTRICAL CHARACTERISTICS
‘Symbol Test Conditions fauadrants| win. | typ. [ max. | unit | ler [T= 26° Voni2v—=asa@ [| [| [10 | ma Pulse Duration > 20 us WV a ee Ver T,= 25°C Vp = 12 V Ry =33.Q2 HII-IV. v Pulse Duration > 20 1s T=t0C Vo=Vomw RL =aaka | Hem | o2 | [|v | [wt [t= 26°C t1=100mA Gato Open [| | as Tima | I Ty = 25°C Vo =12V Iq = 50 mA HAU-IV mA Pulse Duration > 20 ys T= 25 Iw=i4A tp=toms [| 8 Tv Vor Specitied Ty= 250 [|| 001 [ma Tj=110 °C [tf ors | dvd? | T, = 110°C Gate Open Vis Linear Slope up to Vp = 67 % Voam. (dv/dt).* | T)= 40°C Vo = Vorm Ip=14A Vis (di/dt). = 0.4 Alms Ty = 25°C Vo =Vorm Ipst4A I-IV ns la = 100 mA. dig/dt = 1 Aus * For either polarity of electrode Az voltage with reference to electrode Ay. PACKAGE MECHANICAL DATA TL Plastic 425 955 495 125 755 || 175 8,05 Va : — H 675 | vy y 45 max. 0,75 0,85 |
1 Po Fs
12,7 min. 2,54 £05 2,54 £05 Woe :123=A)A26 ‘Cooling method : by convection (method A) ‘Marking : type number Weight : 0.8 9. 214 (yy SGs:THomson SY inorcansiawes
1.62 =~ (si/dt}, limitation P tw) T 25-8 Tread (°C) NPL ees RETIN = cme ee) PRN CETTE fe oof fens INU poeta | BRERSERGE | {| |f% = ee | HENNEY Fo out 1 eget | LEE ENACT PP aateeen OEE EEPASEE 00 > ae) CPN Fig. ~ Moximum wean pover dissipation Fig.2 - Correlation between naximun wean power versus AMS on-state current (F = 80 Hz). dissipation and maximum allowable temperatures Trpws)_ (A) too Zthica_& Aen) to LIN ETF] | op a] aan Yt t COI eH ESSERE CTech yf -eE| HR ECA 08 a j Rote EEA ee COAT) 0.4 lV “FT 4-FREELE CCIE Ly 2X Ee] ETD et 02 L , PT det FAH LT HT HH YRS a ee | EFT UI TT ire te a TY Fig.3 - AMS on-state current versus lead Fig.4 - Thermal transient impedance junc- temperature. tai to ambient veraus pulee duration. Igr (Tj) . Iylty)
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SEE [| ES I oe CPRELEELEPEE TL ECAH HK oI ano SaNESEEE 1 a ost PEL NOT EHH "EEPBENGEEER ETRE IN 5 ii < EHTS AT EEL Ds re FOB RS EEHflie of PH to Ll [TT TASS ° EEE) monte oF cyctes [PTH “40 20 0 25 1 10 we 403 Fig.8 - Relotive variation af gate trigger Fig.0 ~ Non repetitive surge peak on state current and holding current versus: current versus number of cycles. junction temperature.
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