MAC15 GESS | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 4
Technical content
G E SOLID STATE o1 Def) 2875081 gOL7?781 3 I
3875081 G E SOLID STATE _ > ote 17781 DP T2575
MAC15, MAC15A Series File Number 1086 15-A Silicon Triacs : Three-Lead Plastic Types for Power-Control | and Power-Switching Applications ‘ Features: = B00V, 125 Deg. C T, Operating TERMINAL DESIGNATIONS High dv/at and di/at Capability ® Low Switching Losses cave = High Pulse Current Capability —— = Low Forward and Reverse Leakage coli —— ‘= Sipos Oxide Glass Multilayer Passivation System _ Fe
8 Advanced Unisurface Construction on
‘ ——— = Precise lon Implanted Diffusion Source TOP VIEW an s208-39010 The RCA-MAC15 and MAC15A series triacs are gate-con- trolled full-wave silicon switches utilizing a plastic case with YEDEC TO-220AB . three leads to facilitate mounting on printed-circuit boards. ‘They are intended for the control of a¢ loads in such appll- cations as motor controls, light dimmers, heating controls, and power-switching systems. These devices are designed to switch from an off-state to an ‘on-state for either polarity of applied voltage with positive or negative gate triggering voltages. They have an on-state Current rating of 12-A at To = 95°C and 15-A at Te = 80°C and repetitive off-state voltage ratings, of 200, 400, 600, and 800 volts, The plastic package design provides not only ease of mounting but also low thermal impedance, which allows operation at high case temperatures and permits reduced heat-sink size. . MAXIMUM RATINGS, Absolute-Maximum Values: ! MACIS-4 MACIS-6 MACIS-8 = MAC15-10 i MACI5A-4 MACISA-6 MACISA-8 MAC15A-10 Vonom® Ty= 4010 125°C wseseeeccereseesreeeeeeccenes 200 400 600, 800 v
1 Try = 960":
ne? Br more than one full cycte of applied principal voltage, : at current and temperature ehown above for Iypuss GONE (SGLOIUE) veneers csesceeet cnet ceeeeee et A SOHZ (SiNUSOIal) .. 0.066 0e cece eee eeee erste eneenes 140 A di/dt: Vo = Vorons Igr= 200 MA, ty = 0.1 8 seecereee cece eee 700 —__ As lore FOF 1 US MAX. cece eee eee cece eenee nese nent eee ee ee me 2 A ' Pam (For 1 ys max. lam S4A) ..cceceeseeereceeeeeereee —— 0 w Pow ve ecceecceneneaneeen tennessee ene eee eee e eee ———— 05 — Ww Tht ec eeeeneeennaeeeescereaeeer ener eeseaeen enn e eee 40 to 150 To ceccceseetececeeeesnuaeneneneeanaetennene eee eeee _— -40 to 125 —_ ‘Tr (During soldering for 10 $ MAX.) ...++2+eeeeeeeeeereeee 0 ee be lari Vinal. with to main terminal 1. SF5r SURet PSL of gute Sago te) with rotaRea to main arial fe . ; ves 1 1324 D-03
G E SOLID STATE Ob Def) 3875081 couzzse s Qr | a =
3875081 G E SOLID STATE oie 17702 op TASS
——— Triacs . MAC15, MAC15A Series
ELECTRICAL CHARACTERISTICS
At Meximum Ratings Unless Otherwise Specitied, and at Indicated Temperatures LIMITS For All Types ' CHARACTERISTIC Ennept a1 Specified [ min. [Tyee] Max: | 'prom® | Vprom = Max. rated value, Te = 125°C ‘TM? Te = 28°C, it = 214 (peak) v THo® Gate open, Initial principal current = 200 mA (de) vp =12V. T= 25°C mA dv/dt® (Commutating) vp = VpROM: it = 21A (peak) di/dt = 8 A/ms, To = 80°C V/us IgT@™ vp = 12V (de), Ry = 100% Te=25°C Mode Vut2 Va 1+ + + 60 WwW - - 50 1- + = MACIBAseriesonly 8 111+ = + MACIBAseries ont 75 Voret vp = 12V (de), Ry = 1000 Te= 26°C Mode Vtg VG - wo + 09 W1— - - WwW 1- + = MACIBAseriesonly 09 111+ = __+_MACI&Aseriesonly 14 v Te = 110°C vp = VpRom: RL = 10k2 woot 0.2 : W1- - = 0.2 i 1- + = MACIEAseriesonly [0.2 111+ = + _MACIBAseriesonty 10.2 tat i vp = Voom: gt = 120mA, ty = 0.1 us, i= 17A (peck, Te= 25°C cS =f 2 [ro] © For either polarity of main termine! 2 voltage (Vpqy2) with reference to main terminal 1, «For either polarity of gate voltage (Vig) with rafarence to main termine! 1. i j nn 789 j 1325. D-04
G E SOLID STATE Ol DEG 3875081 0017783 7 ' 3875081 G E SOLID STATE o1e 17783) De SIS Triacs J MAC15, MAC15A Series Fig. 1 ~ Principal votagecurentcharacterete Fig. 2~ Power disipation asa fonction of on stato : cument. le Mola or renee cre HRHEHEiH 14 faeeeereccomen|_ Rm Ops cree es ON STATE CORRE [True] —A nae coment ourarin—ras cress” , Tesone ‘come | Fig.'3- Maximum allowable case-temperature a5 @ Fig. 4 — Peok surge on-state current as @ function of | function of on-state current, surge current duration. a | a a : BCA APNE . aL A Ty tT | Ee] ‘ a # \\| we} 48 ee oe os Hi foo i N — BBIFEEEEER)PECESCETH i 6 CHE rr d NS FEE : PCPS Ps 0 tee ee Set oth seo Ho TORE EEGRSATO oo Pa A Tega Fig. 8 Onstatecurent ara function of onstato Fig. 6~ DC holding current a9 function of eae | voltage ° temperature yg ! 790 j 1326 0-05
G E SOLID STATE 01 DE} 3875081 Oo17784 4 t : 3875081 G E SOLID STATE ote 17784 «0 TeSIS Tela, MAC15, MAC15A Series pI Poe PINT TAT ALCS PEER REECE Fan K ie t THe (SeREEReS le Fig. 7 ~ Normalized got tigger current at function Fo Me tnparacara eee enon Of eotetompertone. ” [Reser P| wefan ep --7- : PS oe a =| I i A SCOOT ee 1 RECOM Ty | oa TOI ALTE T woe | Unset BCCI TINT amt. --- SCOTT ae 1 ! H ACACIA 1 i CECT ar ee oor I ort tee! at Bh comaurar i, ' Fie 9 Neral cence tel etace watt | ual! ' principal current (inductive load) showing | reference points for definition of commu- | % tating voltage (dv/dt). | taetacte | te oe ' ty bo Tr red —~ a iY _ . ts 7 ° eae + a htt otra ft vor ! 4 7 ce senses Fe ate curont and gateerge oleae 7 Fig. 11 — Rate-of-change of on-state current showing reference points for definition with time (defining di/dt). of turn-on time tte). | y3928 26