C712PB POWEREX | Alldatasheet

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Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 15697 (412)925-7272 rman porewtian teawivar | poventia. veRwina Fast Switching Thyristor | FoR ies inch 408 uw NOM 1000 Amperes/Up to 2000 Volts | . ‘PUSH-ON TYPE TERMINAL | LD } Description: | ya Powerex Silicon Controlled Rectifiers | / yes (SCR) are designed for high current, fast | if TY K | switching applications. The involute, | i laws \\\\ + | | | interdigitated gate pattern optimizes the Ht | turn-on area for high di/dt capability. WLAN Ree) | F DIA. TYP. | Features:

6 DEEP Tre = Low Switching Losses at High

rome renene | Frequency -——_ | | 1 B Dla 1 5 ™ Interdigitated, di/namic Gate Structure p80 | ee | Reverse Blocking Capability ef | SqeeeeeSSqq at | Applications: | }-_ aoa. = \\ 5 | ® Induction Heating ; fom atau, | 1 Transportation ANODE in meCEPTACLE © Inverters CASE NUMBER T96 STRIKE DISTANCE = 56 INCH / 14.7 MM MIN. NOMINAL DIMENSIONS CREEPAGE DISTANCE + 1.00 INCH / 25.4 WM MIN Lae Tc Toye TFrpte Te) [Incnes||"185 [2.90 [60 [090 [190071080 | 140 [085 207]

Ordering Information

Select the complete five or six digit device part number from the table below. Type Voltage Vora Code Vere c712 L 2000 V PN 1800 V PM 1600 V PD 1400 V PB 1200 V

Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 15697 (412)925-7272 C712 Fast Switching SCR

1000 Amperes Avg / Up to 2000 Volts

Characteristics Symbol Units AverageCurent. StCS~s‘“‘“‘;<C;CSS!SSTTTTTTTTTlCOOOCAS Gritical Rate-of-Rise of On-State Current (Non-Repetitive) ~~ ~SCSCS*é«“‘iEC*C“‘CS$<S*COOCO#*#*~;«CAWWS Gritical Rate-of- Rise of On-State Current (Repetitive) ~~ ~didt~~=~=~*«S*~C~C i PrforFusingforOneCycle = SSSSOCS~*=“‘<‘;C;*;‘;C;C;SCS;SCS!SS«i OOO CA Pook Gate PowerDissipation ~~Sst~<CS;S;<C;<;<S;<SC;<C;C;C;~S”*~é eC Storage Temperature. ===2=SOSOCS~—“—sS*~*~*S*S*S~S~S:SO”COCOCOCTTTTTTTTTTTTTTCSCSSS OO TIES MountingForee = ~~ ~SSOSO*CS*si‘S;7<T xXERPSSCSSTT BN 6O0G~C~«sSSS 22.2 - 26.6 KN

Powerex, Inc., Hillis Street, Youngwood, Pennsylvenia 15697 (412)925-7272 C712 Fast Switching SCR Bectrical Characteristics, T,= 25°C unless otherwise specified Characteristics Symbol Test Conditions Min, Typ. Max. Units Repetitive Peak Reverse Leakage Current Tema Tj=125°C, Vo=Vanw 90 mA Repetitive Peak Forward Leakage Current Tome T= 125°C, Vo=Vonm 90___—mA Peak On Stete Voltage Vim T,= 125°C, y= 1000A 1.45 Vv Duty Cycle < 0.01% Typical Deley Time w Switching from 140V, ZOV, 10 Ohm 15 ve gete, O.5ys rise time, T,= 25°C Maximum Turn-Off Time t T,=125°C, = 1000A, V,>50V 55 oy dv/dt = 400Vips linear to 80% Vow Minimum Critical dv/dt - dvidt Ty=125°C, Vonm=80% reted 500 Vips Linear to VORM Gete Open Gate Trigger Current lor T,= 25°C, Vp=10V, R.=3 Ohm 720 mA Gate Trigger Voltege Var T,=0 to 125°C, Vy=10V 3.0 Vv R,=3 Ohm Peak Reverse Gate Voltage Venu 20 Vv Thermal Characteristics Cherecteristics Symbol Min, Typ. Max. Units Meximum Thermal Resistance, Double Sided Cooling Junction to Cese Res .023 °C Cese to Sink Recs .0075 °C/W —— Ee 0p00 en a ee Fe se A SS SS SH p00 ee meee se ee sooo tJ] 4-7 F og TT

20000 COC LL FA et om mnt

7 —- eco LPT best). eet ea ‘e900 Sf a | 3e er # Seco === == SS SS 8 1 8 000 ASE dom aL ve w y z | Zz — =e== © zp00 Aweere TT TTT TT Pt eae : ee oe | q % yoo fi itt it J an Sad a A = 1 3 900 Fs | 3 ana e=S==== —— | Fa me ee 0 |

000 B 200 14 ey”

Po a LAT | Vinee | woot UT TTT ET 01 J D 2 3 4 Ly € 7 6 0 20 so [ du staTE vouTaGE diet (AMPS/usec) FORWARD CONDUCTION CHARACTERISTIC RECOVERED CHARGE (125°C) ON-STATE

Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 15697 (412/925-7272 C712 Fast Switching SCR = tH COTES _ Lo ee g(a ON NTT Be [Tir ss {

2 ANT NN aT NETTING TT

cman NUN NT SN | ete TN NT} TUT SAT nt raitin Nis | TTT i UNI NLL

3 UT 2500 TT 400] 1 mel NI NU \\/1]

© 5000 sf ih 5? 1 & 2p 7 200 {Tio0G ey | —P iil 50 100 200 400 6008001000 2000 40006000800010000 50 100 200 400 6008001000 2000 4000 6000800010000 PULSE BASE WIDTH (4 SEC) PULSE BASE WIDTH (, SEC) MAXIMUM ALLOWABLE PEAK ON-STATE MAXIMUM ALLOWABLE PEAK ON-STATE CURRENT VS. PULSE WIDTH AT Tc = 65°C CURRENT VS. PULSE WIDTH AT Tc = 90°C ff a | = PSF ENTE sore g COT NSS ¢ COS Er

2 A INA = s-UTT NT ESS

z HN NP OINSTTTE SET F HR SES E REN SE _ HSS TENTH e LE NONUINKT TPA) TRUNNION TANT & IN NI NU IN I oF JINX PN NO ETN NUNN TUNONT NI : ‘eee B TK ONENIIN So a a a A A | Cor — ae —, Ee Hace tence HE 00 TTT CO Ci] 4.000 rs | sO TT sCU TT TT Tr ‘50 100 200 $00 1,000 2,000 5,000 10,000 50 100 200 500, 1,000 2,000 5,000 10,000 PULSE BASE WIDTH (a) sec) PULSE BASE WIDTH - ( a sec) MAXIMUM ALLOWABLE PEAK ON-STATE MAXIMUM ALLOWABLE PEAK ON-STATE CURRENT FOR TRAPEZOIDAL CURRENT CURRENT FOR TRAPEZOIDAL CURRENT WAVEFORMS FOR Tc = 65°C WAVEFORMS FOR Tc = 90°C

Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 15697 (412)925-7272 C712 Fast Switching SCR NOTES:

2 If no bypass diode is used with this thyristor, the switching losses during

recovery can be significant. The actual magnitude of these losses will vary widely depending on circuit conditions and snubber design. | This curve represents typical recovery losses versus circuit di/dt, Since Fd this curve is typical, it serves primarily to alert the equipment designer fo to the possible need for special design attention. The switching losses eal 5 ee ee a ee in a given circuit may be calculated with the following equation: Ea 4 « o ~— er SLR =f, T(t) VA) ot BT TT TT nore tt is the recovery switching losses; I (t) is the recovery current Sos eT aecay; vit) is the recovery voltage; and t = 0 occurs at the peak of the x Annee recovery current. I (t) may be expressed as an exponential decay: ‘a T(t) = Ige ~ t/T) ° t a Where Ip is the peak recovery current and “ T = 2.6usec. The junction temperature rise 1) due to the recovery losses may be computed as follows: Ik 02 408060708080 100 Zoo AT)=F On" RGA tOn* 35 vit) ave (Ayu SEC) RECOVERY CURRENT Where 0 x is the recovery losses, SWITCHING LOSSES R@ sa is the DC junction to ambient thermal impedance, and F is the operating frequency. ‘04 EH a NOTES: E || | Tl mall ae 1, Add .006°C/W to account for both case to dissipator Eon <4 interfaces when properly mounted; e.9., RO Js = .029 3 atl iee 2. DC Thermal Impedance is based on average full cycle g 7 eee eS eee —— junction temperature, Instantaneous junction tempera- £ 008 Ee ture ray be calculated using the following mod 006 ae ee a +r — * z ee © end of conducting portion of cycle 2 a as — 120° °C/W along entire curve = 004 => 120° sq. wave add .0025°C/W along z [4 EL = 180° sq. wave add .0018°C/W along entire curve 5 7 | | a — 180° sine wave add .0010°C/W along entire curve S002 ~ = _| © end of full cycle FY | — any wave, subtract .001°C/W along entire curve . | lor 0204 06.08 «I 2. 4 6 8! 2. 45 TIME ~ SECONDS TRANSIENT THERMAL RESISTANCE — JUNCTION-TO-CASE

Powerex, Inc., Hillis Street, Youngwood, Pennsylvania 15697 (412/925-7272 C712 Fast Switching SCR

6 SS ES SS

a = 4 CR SSS Re CT é HSS SRR Notes: =. HSER 1, —— Switching capability and losses with bypass » e ll lq ll Aiode. e HK Ne IN ONT 2 Switching voltage from 15 Volts to 0.8 Voqm. dos Re SER SSS - Snubber discharge < 50 Amps. RC time constant goo SSS <10 He Sos CH — tp PSCOPSW SCP 4, High gate drive, 20V/10 Ohms, 0.5 psec rise time. s HO T zoo LH EE . ll | n : TEE LETH on 50 100 200 500 i900 2900 5p00 10po0 PULSE BASE WIOTH (uSEC) < ENERGY PER PULSE FOR SINUSOIDAL PULSES De ee eee] i gH SEN SSS fi g N NSN aN

3 N y i STN

g NEON ATR SA ENT notes: = LTINNON TE MNO 1, Switching voltage from 15 Volts to 0.8 Vom Fa LPN NUTR INLAND 2. DI/DT during turn-on: 100A/tsec. foe COS SS foe FPS SS 3. Reverse voltage < 50 Volts. If no bypass diode is 206 ttt s—t—t N—St S i Bos FAAS SRB used, recovery switching losses must be added. Bo HSS SSIES 4, RC snubber time constant < 10 psec. $0 TTT PSE TRS 5, High gate drive: 20V/10 Ohms, 0.5 usec rise time. @ disor Foot =" LTH TT oO. 50 100 200 500 100 PULSE GASE WOT sec) POP POO ENERGY PER PULSE FOR TRAPEZOIDAL CURRENT WAVEFORMS