TBS73500A POWEREX | Alldatasheet

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a Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (412) 925-7272

600 Volts

FORtey Inch? 475 UM WOM” PUSH-ON TYPE TERMINAL Jia ry | So i IW) “tl i a MARKING CATHODE = : SY ! TBS7 3500A Phase Control SCR

3500 Amperes Average, 600 Volts

a ou ——| \\_ ° an FoR dae ntay, anne pW Ateee ae CASE nuwaen 70 STRIKE OISTANCE = 62 INCH 18.7 WM wn Description: tage, high NOMINAL DIMENSIONS CREEPAGE DISTANCE = 1.00 INCH /25.4 UM MIN. e is a low voltage, high cur- (aw "732 [0.7 Toes [0.76 [as.e8/26.67 [356 [203 [20] thin, low profile package with improved thermal capability for increased current TBS7 3500A (Outline Drawing) capacity. Powerex Silicon Controlled Rectifiers (SCR) are designed for phase control applications. These are all-diffused, Press-Pak, hermetic Pow-R-Disc devices employ- ing the field proven amplifying gate. Features:

0 Very Low On-State Voltage

Ordering Information: High dv/dt Capabili Select the complete 12 digit part number you desire from the table below. O Hig v p ” ty Hermetic Packaging | _vottage [curt | turn-on) ——|—<Gate Curent | O Excellent Surge and 12 VorwVRRM haw) ty Lead Ratings Type (Volts) (ay (usec) Code :

1 Thin Package (26mm) for

TBS7 a 0 H HE Higher Current Capability.

06 Applications:

200v 400usec 250mA 20) Power Supplies 400V (Typical) © Motor Control 800V 0 Battery Chargers P-197

a Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (412) 925-7272 TBS7 3500A Phase Control SCR Characteristics Symbol ‘TBS7 3500A Units Non-repetitive Transient Peak Reverse Voltage VRSM VRRM + 100V Volts RMS On-state Current, Tc = 72°C : _ 't¢rms) 5600 Amperes Average Current 180° Sine Wave, To = 72°C tay 3500 ‘Amperes RMS On-state Current, Tc = 55°C "T(ems) 6595 ‘Amperes Average Current 180° Sine Wave, To = 55°C "Trav 4200 ‘Amperes Peak One Cycle Surge On-state Current (Non-repetitive) 60Hz lism 48000 ‘Amperes Peak One Cycle Surge On-state Current (Non-repetitive) 50Hz lism 44200 ‘Amperes Critical Rate-of-rise of On-state Current (Non-repetitive) dit 600 Alusec Critical Rate-of-rise of On-state Current (Repetitive) ~ difdt 100 ‘Alusec {2t (for Fusing) for One Cycle, 60Hz — rt 9.6 x 106 A2sec Peak Gate Power Dissipation Pom 250 Watts Average Gate Power Dissipation Pavav) 35 Watts Operating Temperature 7; 40 to +125°C °C Storage Temperature Tstg ~40 to +150°C °C Approximate Weight 25 ib. 14 kg Mounting Force 6000t010000s—“(<‘i 26.6 to 44.4 kN P-198

Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (412) 925-7272 TBS7 3500A Phase Control SCR Electrical Characteristics, Tj = 25°C Unless Otherwise Specified Characteristics ‘Symbol Test Conditions Min. Typ. Max. Units Repetitive Peak Reverse Leakage Current 'ARM Tj= 125°C, Va = VaRM 150 mA Repetitive Peak Forward Leakage Current lDRM Tj = 125°C, Vp = VoRM 150 mA Peak On-state Voltage VIM It = 3000A Peak 1.05 Volts Duty Cycle < 0.01% Threshold Voltage, Low-level " Vetoy1 T= 125°C, |= 18%, Ityay) 10 *IT(ay) 0.6917 Volts Slope Resistance, Low-level ™% 0.08747, ma Threshold Voltage, Highlevel Cy Tj= 125°C, l= mitayttsm ~*~ EBT Vs . Slope Resistance, High-level "12 0.06881 ma Vim Coefficients, Lowlevel SS Ws 185°C, T= 18% Tray) tomy) Ay = -0.063144 By = 0.14784 Cy = 1.161E-04 Dy = -0.009048 Vin Coeficients, Highlevel BG, To iggy pg a Ap = 9.5165 Bo = -1.3858 Cp = -2,96-05 Dp = 0.050907 Typical Delay Time “tg Switching from 140V, 20V, 109 Gate, 8 psec O.5usec Rise Time Typical Turn-off Time tq Tj = 125°C, Ir = 1000A, Vp > 50V, 400 psec Reapplied dv/dt = 20V/usec Linear to 80% VpRM Minimum Critical dviat - Linear to VDRM dvidt Tj = 125°C, Vor = 80% Rated 300 Viusec Gate Open Gate Trigger Current let Tj = 25°C, Vp = 12V 30 250 mA Gate Trigger Voltage Ver Tj = 25°C, Vp = 12V 05 40 Volts Peak Reverse Gate Voltage VGRM 10 Volts Thermal Characteristics Maximum Thermal Resistance, Double Sided Cooling Junction-to-Case Ro(j-c) 0.010 °C/W Case-to-Sink Revc-s) 0.002 °C/W oi S002 P.199

a Powerex, Inc., 200 Hillis Street, Youngwood, Pennsylvania 15697-1800 (412) 925-7272 TBS7 3500A Phase Control SCR Maximum On-State Forward Voltage Drop Maximum Transient Thermal Impedance 5 (T)=125°C) ore (Junction to Case) TT . ee 8 , pea H 5 0.009 ia pi PSD a eT a a fe it I ita BU za BU aa A i 1 Beall I 0.003 vi Fete tt CCS ee i A Saimin Lt rl 10 100 1000 10000 100000 0,001 001 o4 1 10 Instantaneous On-State Current - itm - Amperes Time - t - Seconds Maximum On-State Power Dissipation Maximum Allowable Case Temperature ‘coo (Sinusoidal Waveform) i (Sinusoidal Waveform) rTTTift¢iitf i. cap | TT yt ie eet) ibOSe ero won SS | Ze » Lt SRE Ln LEE IN Pr NNN TT YZ io Ey y r p elt | ZA lore j Yee Ngo LAT] [Pomerontoe || rT Ti <_< °o” em 1m to amo mo am se 400 © We tom 1600 ooo a00 0006004000 Average On-State Current - It(av) - Amperes. Average On-State Current - It(av) - Amperes Maximum On-State Power Dissipation Maximum Allowable Case Temperature “ST ee il y Pa OO Be eee] CSCO LLL al eT to SSS ee | 000 sor 21 AA |_| 100 SESE 4 on hNaLd CUO gZeT cr) fe HENS = MAR ® FCO OSSSSCE SE87ZZ240 eee 2° PSR SRL

2000 WAN —— fn a Po

° 600 1000 1500 2000 2500 3000 3500 4000 4500 5000 5500 6000 - aan 500 1000 1500 2000 2500 3000 3500 4000 4500 5000 5500 6000 Average On-State Current - It(av) - Amperes. Average On-State Current - It{av) - Amperes Note: Spreading losses included. Curves are for an inductive load. P-200