S201E TECCOR | Alldatasheet

Document overview

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Technical content

Features

  • Electrically-isolated package
  • High voltage capability — 200 V to 1000 V
  • High surge capability — up to 950 A
  • Glass-passivated chip Compak SCR
  • Surface mount package — 1 A series
  • New small profile three-leaded Compak package
  • Packaged in embossed carrier tape with 2,500 devices per reel
  • Can replace SOT-223 TO-92 *TO-218 TO-202 *TO-218X 3-lead Compak TO-252 D-Pak TO-251 V-Pak *TO-220 TO-263 D2Pak

http://www.teccor.com E6 - 2 ©2002 Teccor Electronics +1 972-580-7777 Thyristor Product Catalog Specific Test Conditions di/dt — Maximum rate-of-rise of on-state current; I GT = 150 mA with /g1630.1 µs rise time dv/dt — Critical rate of applied forward voltage I2t — RMS surge (non-repetitive) on-state current for period of 8.3 ms for fusing IDRM and IRRM — Peak off-state forward and reverse current at VDRM and VRRM Igt — dc gate trigger current; V D = 12 V dc; RL = 60 /g87 for 1 to 16 A devices and 30 /g87 for 20 to 70 A devices IGM — Peak gate current IH — dc holding current; gate open IT — Maximum on-state current ITSM — Peak one-cycle forward surge current PG(AV) — Average gate power dissipation PGM — Peak gate power dissipation tgt — Gate controlled turn-on time ; gate pulse = 100 mA; minimum width = 15 µs with rise time /g1630.1 µs tq — Circuit commutated turn-off time VDRM and VRRM — Repetitive peak off-state forward and reverse voltage Vgt — DC gate trigger voltage; V D = 12 V dc; RL = 60 /g87 for 1 to 16 A devices and 30 /g87 for 20 to 70 A devices VTM — Peak on-state voltage at maximum rated RMS current General Notes

  • All measurements are made at 60 Hz with a resistive load at an ambient temperature of +25 /g176C unless otherwise specified.
  • Operating temperature range (T J) is -65 /g176C to +125 /g176C for TO-92 devices and -40 /g176C to +125 /g176C for all other packages.
  • Storage temperature range (T S) is -65 /g176C to +150 /g176C for TO-92 devices, -40 /g176C to +150 /g176C for TO-202 and TO-220 devices, and -40 /g176C to +125 /g176C for all others.
  • Lead solder temperature is a maximum of 230 /g176C for 10 seconds maximum; /g1791/16" (1.59 mm) from case.
  • The case temperature (T C) is measured as shown on dimensional outline drawings in the “Package Dimensions” sectionof this catalog. TYPE Part Number IT VDRM & VRRM IGTIsolated Non-isolated TO-92 TO-220 TO-202 TO-220 TO-251 V-Pak Compak TO-252 D-Pak (1) (2) (15) Amps Volts (4) mAmps See “Package Dimensions” section for variations. (11) IT(RMS) IT(AV) MAX MAX MIN MIN MAX S201E S2N1 1 0.64 200 1 10 S401E S4N1 1 0.64 400 1 10 S601E S6N1 1 0.64 600 1 10 S2006L S2006F1 S2006V S2006D 6 3.8 200 1 15 S4006L S4006F1 S4006V S4006D 6 3.8 400 1 15 S6006L S6006F1 S6006V S6006D 6 3.8 600 1 15 S8006L S8006V S8006D 6 3.8 800 1 15 SK006L SK006V SK006D 6 3.8 1000 1 15 S2008L S2008F1 S2008R S2008V S2008D 8 5.1 200 1 15 S4008L S4008F1 S4008R S4008V S4008D 8 5.1 400 1 15 S6008L S6008F1 S6008R S6008V S6008D 8 5.1 600 1 15 S8008L S8008R S8008V S8008D 8 5.1 800 1 15 SK008L SK008R SK008V SK008D 8 5.1 1000 1 15 10 A S2010L S2010F1 S2010R S2010V S2010D 10 6.4 200 1 15 S4010L S4010F1 S4010R S4010V S4010D 10 6.4 400 1 15 S6010L S6010F1 S6010R S6010V S6010D 10 6.4 600 1 15 S8010L S8010R S8010V S8010D 10 6.4 800 1 15 SK010L SK010R SK010V SK010D 10 6.4 1000 1 15 12 A S2012R S2012V S2012D 12 7.6 200 1 20 S4012R S4012V S4012D 12 7.6 400 1 20 S6012R S6012V S6012D 12 7.6 600 1 20 S8012R S8012V S8012D 12 7.6 800 1 20 SK012R SK012V SK012D 12 7.6 1000 1 20 K G A K A G K A G A K A G A A A G K A G K A A K G

©2002 Teccor Electronics E6 - 3 http://www.teccor.com Thyristor Product Catalog +1 972-580-7777 Electrical Specification Notes (1) See Figure E6.5 through Figure E6.16 for current rating at specified operating case temperature. (2) See Figure E6.1 and Figure E6.2 for free air current rating. (3) See Figure E6.19 and Figure E6.20 for instantaneous on-state current versus on-state voltage (typical). (4) See Figure E6.18 for I GT versus TC. (5) See Figure E6.17 for I H versus TC. (6) For more than one full cycle rating, see Figure E6.23. (7) See Figure E6.22 for t gt versus IGT. (8) See Figure E6.21 for V GT versus TC. (9) Test conditions are as follows:

  • I T = 1 A for 1 A devices and 2 A for all other devices
  • Pulse duration = 50 µs, dv/dt = 20 V/µs, di/dt = -10 A/µs for 1 A devices, and -30 A/µs for other devices
  • I GT = 200 mA at turn-on (10) See Figure E6.5 through Fi gure E6.10 for maximum allowable case temperatures at maximum rated current. (11) See package outlines for lead form configuration. When ordering special lead forming, add type number as suffix to part number. (12) Pulse width /g16310 µs (13) Initial on-state current = 200 mA dc for 1 A through 16 A devices; 400 mA dc for 20 A through 70 A devices. (14) T C = TJ for test conditions in off state. (15) The R, K, or M package rating is intended for high surge condition use only and not recommended for /g17950 A rms continuous current use since narrow pin lead temperature can exceed PCB solder melting temperature. Teccor's J package or W package is recommended for /g17950 A rms continuous current requirements. (16) For various durations of an exponentially decaying current waveform, see Figure E6.3 and Figure E6.4. (tW is defined as 5 time constants.) (17) Minimum non-trigger V GT at 125 °C is 0.2 V. IDRM & IRRM VTM VGT IH IGM PGM PG(AV) ITSM dv/dt I2t di/dt tgt tq (14) mAmps (3) Volts (8) (17) Volts (5) (13) mAmps (12) Amps (12) Watts Watts (6) (10) Amps Volts/µSec Amps2Sec Amps/µSec (7) µSec (9) (10) µSec TC = 25 °C TC = 100 °C TC = 125 °C TC = 25 °C TC = 25 °C 60/50 Hz TC = 100 °C TC = 125 °C MAX MAX MAX MAX MIN MIN TYP MAX 0.02 3 1.6 1.5 30 2 20 0.5 100/83 100 41 100 2 35 0.02 3 1.6 1.5 30 2 20 0.5 100/83 100 41 100 2 35 0.02 3 1.6 1.5 30 2 20 0.5 100/83 100 41 100 2 35 0.02 3 1.6 1.5 40 2 20 0.5 120/100 100 60 100 2 35

http://www.teccor.com E6 - 4 ©2002 Teccor Electronics +1 972-580-7777 Thyristor Product Catalog See “General Notes” on page E6 - 2 and “Electrical Specificat ion Notes” on page E6 - 3. TYPE Part Number IT VDRM & VRRM IGT IDRM & IRRMIsolated Non-isolated TO-220 TO-218X TO-218 TO-220 TO-218X TO-218 TO-263 D2Pak (1) (15) Amps Volts (4) mAmps (14) mAmps IT(RMS) IT(AV) TC = 25 °C TC = 100 °C TC = 125 °C See “Package Dimensions” section for variations. (11) MAX MIN MIN MAX MAX 15 A S2015L 15 9.5 200 1 30 0.01 0.5 1 S4015L 15 9.5 400 1 30 0.01 0.5 1 S6015L 15 9.5 600 1 30 0.01 0.5 1 S8015L 15 9.5 800 1 30 0.02 1 2 SK015L 15 9.5 1000 1 30 0.02 3 16 A S2016R S2016N 16 10 200 1 30 0.01 0.5 1 S4016R S4016N 16 10 400 1 30 0.01 0.5 1 S6016R S6016N 16 10 600 1 30 0.01 0.5 1 S8016R S8016N 16 10 800 1 30 0.02 1 2 SK016R SK016N 16 10 1000 1 30 0.02 3 20 A S2020L 20 12.8 200 1 30 0.01 0.5 1 S4020L 20 12.8 400 1 30 0.01 0.5 1 S6020L 20 12.8 600 1 30 0.01 0.5 1 S8020L 20 12.8 800 1 30 0.02 1.0 2 SK020L 20 12.8 1000 1 30 0.02 3 25 A S2025L S2025R S2025N 25 16 200 1 35 0.01 1 2 S4025L S4025R S4025N 25 16 400 1 35 0.01 1 2 S6025L S6025R S6025N 25 16 600 1 35 0.01 1 2 S8025L S8025R S8025N 25 16 800 1 35 0.02 1.5 3 SK025L SK025R SK025N 25 16 1000 1 35 0.02 3 35 A S2035J S2035K 35 22 200 5 40 0.01 1 2 S4035J S4035K 35 22 400 5 40 0.01 1 2 S6035J S6035K 35 22 600 5 40 0.01 1 2 S8035J S8035K 35 22 800 5 40 0.02 1.5 3 SK035K 35 22 1000 5 40 0.02 3 40 A S2040R S2040N 40 25 200 5 40 0.01 1 2 S4040R S4040N 40 25 400 5 40 0.01 1 2 S6040R S6040N 40 25 600 5 40 0.01 1 2 S8040R S8040N 40 25 800 5 40 0.02 1.5 3 SK040R SK040N 40 25 1000 5 40 0.03 5 55 A S2055R S2055W S2055M S2055N 55 35 200 5 40 0.01 1 2 S4055R S4055W S4055M S4055N 55 35 400 5 40 0.01 1 2 S6055R S6055W S6055M S6055N 55 35 600 5 40 0.01 1 2 S8055R S8055W S8055M S8055N 55 35 800 5 40 0.02 1.5 3 SK055R SK055M SK055N 55 35 1000 5 40 0.03 5 65 A S2065J S2065K 65 41 200 5 50 0.02 1.5 3 S4065J S4065K 65 41 400 5 50 0.02 1.5 3 S6065J S6065K 65 41 600 5 50 0.02 1.5 3 S8065J S8065K 65 41 800 5 50 0.02 2 5 SK065K 65 41 1000 5 50 0.03 5 70 A S2070W 70 45 200 5 50 0.02 1.5 3 S4070W 70 45 400 5 50 0.02 1.5 3 S6070W 70 45 600 5 50 0.02 1.5 3 S8070W 70 45 800 5 50 0.02 2 5 K A G K A G A K GA K A G A K A G A A K A GA A A K G

©2002 Teccor Electronics E6 - 5 http://www.teccor.com Thyristor Product Catalog +1 972-580-7777 See “General Notes” on page E6 - 2 and “Electrical Specific ation Notes” on page E6 - 3. VTM VGT IH IGM PGM PG(AV) ITSM dv/dt I2t di/dt tgt tq (3) Volts (8) (17) Volts (5) (13) mAmps (12) Amps (12) Watts Watts (6) (10) (16) Amps Volts/µSec Amps2Sec Amps/µSec (7) µSec (9) (10) µSecTC = 25 °C T C = 25 °C 60/50 Hz TC = 100 °C TC = 125 °C MAX MAX MAX MIN MIN TYP MAX 1.6 1.5 40 3 30 0.6 225/188 450 350 210 125 2 35 1.6 1.5 40 3 30 0.6 225/188 450 350 210 125 2 35 1.6 1.5 40 3 30 0.6 225/188 425 325 210 125 2 35 1.6 1.5 40 3 30 0.6 225/188 400 300 210 125 2 35 1.6 1.5 40 3 30 0.6 225/188 200 210 125 2 35 1.6 1.5 40 3 30 0.6 225/188 450 350 210 125 2 35 1.6 1.5 40 3 30 0.6 225/188 450 350 210 125 2 35 1.6 1.5 40 3 30 0.6 225/188 425 325 210 125 2 35 1.6 1.5 40 3 30 0.6 225/188 400 300 210 125 2 35 1.6 1.5 40 3 30 0.6 225/188 200 210 125 2 35 1.6 1.5 40 3 30 0.6 300/255 450 350 374 125 2 35 1.6 1.5 40 3 30 0.6 300/255 450 350 374 125 2 35 1.6 1.5 40 3 30 0.6 300/255 425 325 374 125 2 35 1.6 1.5 40 3 30 0.6 300/255 400 300 374 125 2 35 1.6 1.5 40 3 30 0.6 300/255 200 374 125 2 35 1.6 1.5 50 3.5 35 0.8 350/300 450 350 510 150 2 35 1.6 1.5 50 3.5 35 0.8 350/300 450 350 510 150 2 35 1.6 1.5 50 3.5 35 0.8 350/300 425 325 510 150 2 35 1.6 1.5 50 3.5 35 0.8 350/300 400 300 510 150 2 35 1.6 1.5 50 3.5 35 0.8 350/300 200 510 150 2 35 1.8 1.5 50 3.5 35 0.8 500/425 450 350 1035 150 2 35 1.8 1.5 50 3.5 35 0.8 500/425 450 350 1035 150 2 35 1.8 1.5 50 3.5 35 0.8 500/425 425 325 1035 150 2 35 1.8 1.5 50 3.5 35 0.8 500/425 400 300 1035 150 2 35 1.8 1.5 50 3.5 35 0.8 500/425 200 1035 150 2 35 1.8 1.5 60 4 40 0.8 650/550 650 550 1750 175 2.5 35 1.8 1.5 60 4 40 0.8 650/550 650 550 1750 175 2.5 35 1.8 1.5 60 4 40 0.8 650/550 600 500 1750 175 2.5 35 1.8 1.5 60 4 40 0.8 650/550 500 475 1750 175 2.5 35 1.8 1.5 60 4 40 0.8 650/550 250 1750 175 2.5 35 1.8 2 80 5 50 1 950/800 650 550 3745 200 2.5 35 1.8 2 80 5 50 1 950/800 650 550 3745 200 2.5 35 1.8 2 80 5 50 1 950/800 600 500 3745 200 2.5 35 1.8 2 80 5 50 1 950/800 500 475 3745 200 2.5 35 1.8 2 80 5 50 1 950/800 250 3745 200 2.5 35 1.8 2 80 5 50 1 950/800 650 550 3745 200 2.5 35 1.8 2 80 5 50 1 950/800 650 550 3745 200 2.5 35 1.8 2 80 5 50 1 950/800 600 500 3745 200 2.5 35 1.8 2 80 5 50 1 950/800 500 475 3745 200 2.5 35

http://www.teccor.com E6 - 6 ©2002 Teccor Electronics +1 972-580-7777 Thyristor Product Catalog * Mounted on 1cm 2 copper foil surfac e; two-ounce copper foil Electrical Isolation Teccor’s isolated SCR packages will withstand a minimum high potential test of 2500 V ac rms from leads to mounting tab over the device's operating temperature range. The following table shows standard and optional isolation ratings. * UL Recognized File #E71639 ** For 4000 V isolation, use “V” suffix in part number. Thermal Resistance (Steady State) R/g113JC [R/g113JA] °C/W (TYP.) Pkg. Code LF F 2 R J WKM D V N Type TO-220 Isolated TO-202 Type 1 Non-isolated TO-202 Type 2 Non-isolated TO-220 Non-isolated TO-218X Isolated TO-218X Non-isolated TO-218 Isolated TO-218 Non-isolated TO-252 D-Pak Surface Mount TO-251AA V-Pak Non-isolated TO-263 D2Pak Non-isolated 1A See below 12 A 1.5 1.4 1.6 15 A 2.5 16 A 1.3 1.3 20 A 2.4 25 A 2.35 1.0 1.0 35 A 0.70 0.70 40 A 0.6 0.6 55 A 0.5 0.53 0.53 0.5 65 A 0.86 0.86 70 A 0.60 Thermal Resistance (Steady State) R/g113JC [R/g113JA] °C/W (TYP.) Package Code CE Type Compak TO-92 1A 35 * 50 [145] Electrical Isolation * from Leads to Mounting Tab VA CR M S TO-220 Isolated TO-218X Isolated TO-218 Isolated

2500 Standard Standard Standard

4000 Optional ** N/A N/A

©2002 Teccor Electronics E6 - 7 http://www.teccor.com Thyristor Product Catalog +1 972-580-7777 Figure E6.1 Maximum Allowable Ambient Temperature versus RMS On-state Current Figure E6.2 Maximum Allowable Ambient Temperature versus Average On-state Current Figure E6.3 Peak Capacitor Di scharge Current (6 A through 55 A) Figure E6.4 Peak Capacitor Discharge Current Derating (6 A through 55 A) Figure E6.5 Maximum Allowable Case Temperature versus RMS On-state Current (1 A) Figure E6.6 Maximum Allowable Case Temperature versus RMS On-state Current (6 A, 8 A, and 10 A) 100 120 CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ FREE AIR RATING RMS On-state Current [IT(RMS)] – Amps Maximum Allowable Ambient Temperature (TA) – ˚C 8 A TO-220 (Non-isolated)

6 A TO-220 (Isolated) and

6 A TO-202 (Types 1 and 3)

1 A TO-92

6 A TO-202

(Types 2 and 4) and 6 A TO-251 100 120 Maximum Allowable Ambient Temperature (TA) – ˚C Average On-state Current [IT(AV)] – Amps

8 A TO-220 (Non-isolated)

6 A TO-202 (Types 1 and 3)1 A TO-92

(Types 2 and 4) and 6 A TO-251 CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ FREE AIR RATING 0.5 1.0 2.0 5.0 10 20 50 100 200 300 1000 Pulse Current Duration (tw) – ms Peak Discharge Current (ITM) – Amps tw ITM tw = 5 times constants

6 A to 10 A Devices

12 A Devices

25 A Devices

55 A Devices

15 A and 16 A

0.2 0.4 0.6 0.8 1.0 Case Temperature (TC) – ˚C Normalized Peak Current 100 110 120 130 RMS On-state Current [IT(RMS)] – Amps Maximum Allowable Case Temperature (TC) – ˚C 0 0.4 0.8 1.2 0.6 CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ CASE TEMPERATURE: Measure as shown on dimensional drawing 1.00.2

1 A Devices

CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180º CASE TEMPERATURE: Measure as shown on dimensional drawings RMS On-state Current [IT(RMS)] – Amps Maximum Allowable Case Temperature (TC) – ˚C

8 A TO-220 (Isolated)

6 A Devices

10 A TO-220 (Isolated)

http://www.teccor.com E6 - 8 ©2002 Teccor Electronics +1 972-580-7777 Thyristor Product Catalog Figure E6.7 Maximum Allowabl e Case Temperature versus RMS On-state Current (1 0 A, 12 A, 16 A, and 20 A) Figure E6.8 Maximum Allowabl e Case Temperature versus RMS On-state Current (25 A and 35 A) Figure E6.9 Maximum Allowabl e Case Temperature versus RMS On-state Current (40 A through 70 A) Figure E6.10 Maximum Allowable Case Temperature versus RMS On-state Current (55 A and 65 A) Figure E6.11 Maximum Allowable Case Temperature versus Average On-state Current (1 A) Figure E6.12 Maximum Allowable Case Temperature versus Average On-state Current (8 A, 10 A, and 12 A) 04 81 2 1 6 2 0 100 110 120 130 RMS On-state Current [IT(RMS)] – Amps Maximum Allowable Case Temperature (TC) – ˚C CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ CASE TEMPERATURE: Measure as shown on dimensional drawing

10 A TO-220

(Non-isolated)

15 A TO-220

(Isolated)

20 A TO-220 (Isolated)

16 A TO-220 (Non-isolated)

10 A TO-251 and 10 A TO-252

12 A TO-220 (Non-isolated)

0 4 8 1 21 62 02 42 83 23 6 100 110 120 130 CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ CASE TEMPERATURE: Measure as shown on dimensional drawings RMS On-state Current [IT(RMS)] – Amps Maximum Allowable Case Temperature (TC) – ˚C 35 A TO-218 (Isolated)

25 A TO-220

(Non-isolated) and TO-263 (Isolated) 0 1 02 03 04 05 06 07 0 100 110 120 130 RMS On-state Current [IT(RMS)] – Amps Maximum Allowable Case Temperature (TC) – ˚C

65 A TO-218X

(Isolated)

55 A TO-218X

(Non-isolated) CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ CASE TEMPERATURE: Measure as shown on dimensional drawings

40 A TO-220

(Non-isolated) and TO-263

70 A TO-218X

(Non-isolated) 01 02 0 3 04 0 100 110 120 130 RMS On-state Current [IT(RMS)] – Amps Maximum Allowable Case Temperature (TC) – ˚C 50 60 70 75 CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ CASE TEMPERATURE: Measure as shown on dimensional drawings * The R, K or M package rating is intended only for high surge condition use and is not recommended for >50 A rms continuous current use, since narrow pin lead temperature can exceed PCB solder melting temperature. J or W packages are recommended for >50 A rms continuous current requirements.

65 A TO-218AC

(Isolated) *

55 A TO-218AC

(Non-isolated) *

55 A TO-220

(Non-isolated) and TO-263 * 0 0.2 0.4 0.6 0.8 100 110 120 130 CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ CASE TEMPERATURE: Measure as shown on dimensional drawings Average On-state Current [IT(AV)] – Amps Maximum Allowable Case Temperature (TC) – ˚C Average On-state Current [IT(AV)] – Amps Maximum Allowable Case Temperature (TC) – ˚C CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ CASE TEMPERATURE: Measure as shown on dimensional drawings

6 A TO-220

6 A TO-251

6 A TO-252

8 A TO-202

8 A TO-220

(Non-isolated)

10 A TO-251

10 A TO-252

(Non-isolated)

©2002 Teccor Electronics E6 - 9 http://www.teccor.com Thyristor Product Catalog +1 972-580-7777 Figure E6.13 Maximum Allowabl e Case Temperature versus Average On-state Current (10 A through 20 A) Figure E6.14 Maximum Allowabl e Case Temperature versus Average On-state Current (25 A and 35 A) Figure E6.15 Maximum Allowabl e Case Temperature versus Average On-state Current (40 A through 70 A) Figure E6.16 Maximum Allowable Case Temperature versus Average On-state Current (55 A and 65 A) Figure E6.17 Normalized dc Holding Current versus Case Temperature Figure E6.18 Normalized DC Gate-Trigger Current versus Case Temperature 02468 1 0 1 2 1 4 100 110 120 130 Average On-state Current [I T(AV)] – Amps Maximum Allowable Case Temperature (TC) – ˚C CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ CASE TEMPERATURE: Measured as shown on dimensional drawings

20 A TO-220

(Isolated) (Isolated) (Non-isolated)

16 A TO-220 (Non-isolated) and TO-263

0 .4 8 12 16 20 24 100 110 120 130 Average On-state Current [IT(AV)] – Amps Maximum Allowable Case Temperature (TC) – ˚C CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ CASE TEMPERATURE: Measure as shown on dimensional drawings

35 A TO-218 (Non-isolated)

35 A TO-218 (Isolated)

25A TO-220 (Non-isolated) and TO-263 25A TO-220 (Isolated) 0 1 02 03 04 05 0 100 110 120 130 Average On-state Current [IT(AV)] – Amps Maximum Allowable Case Temperature (TC) – ˚C CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ CASE TEMPERATURE: Measure as shown on dimensional drawings (Non-isolated)40 A TO-220 (Non-isolated) and TO-263 (Non-isolated) (Isolated) 0 1 02 03 04 05 0 100 110 120 130 Average On-state Current [I T(AV)] – Amps Maximum Allowable Case Temperature (TC) – ˚C CURRENT WAVEFORM: Sinusoidal LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ CASE TEMPERATURE: Measure as shown on dimensional drawings

55 A TO-218AC (Non-isolated) *

  • The R, K, or M package rating is intended only for high surge condition use and is not recommended for >32 A (AV) continuous current use since narrow pin lead temperature can exceed PCB solder melting temperature. J or W packages are recommended for >32 A (AV) continuous current requirements.

(Non-isolated) and TO-263 (Isolated) * -40 -15 +25 +65 +105 +125 1.0 1.5 2.0 Case Temperature (TC) – ˚C Ratio of IH IH (TC = 25 ˚C) INITIAL ON-STATE CURRENT = 200 mA dc for 1 A to 20 A Devices and 400 mA dc for 25 A to 70 A Devices -40 -15 +25 +65 +105 +125 0.5 1.0 1.5 2.0 Case Temperature (TC) – ˚C Ratio of IGT IGT (TC = 25 ˚C)

http://www.teccor.com E6 - 10 ©2002 Teccor Electronics +1 972-580-7777 Thyristor Product Catalog Figure E6.19 Instantaneous On-state Current versus On-state Voltage (Typical) (6 A through 25 A) Figure E6.20 Instantaneous On-state Current versus On-state Voltage (Typical) (35 A through 70 A) Figure E6.21 Normalized DC Gate-trigger Voltage versus Case Temperature Figure E6.22 Typical Turn-on Time versus Gate-trigger Current Instantaneous On-state Voltage (vT) – Volts Instantaneous On-state Current (iT) – Amps TC = 25˚C

15 A to 20 A Devices

Instantaneous On-state Voltage (v T) – Volts Instantaneous On-state Current (iT) – Amps TC = 25˚C

65 A and 70 A Devices

35 A to 40 A Devices

-40 -15 +25 +65 +105 +125 0.5 1.0 1.5 Case Temperature (TC) – ˚C Ratio of VGT VGT (TC = 25 ˚C) 10 20 30 40 50 60 80 100 200 Turn-on Time (tgt) – µs DC Gate Trigger Current (IGT) – mA

6 A to 12 A Devices

40 A to 70 A Devices

15 A to 35 A Devices

TC = 25˚C

©2002 Teccor Electronics E6 - 11 http://www.teccor.com Thyristor Product Catalog +1 972-580-7777 Figure E6.23 Peak Surge Current versus Surge Current Duration Figure E6.24 Power Dissipation (Typical) versus RMS On-state Current (1 A) Figure E6.25 Power Dissipation (Typical) versus RMS On-state Current (6 A through 20 A) 1000 100 200 300 400 500 600 800 1 23 5 4 6 7 8 10 20 30 40 60 80100 200 300400 600 1000 Surge Current Duration – Full Cycles

70 A Devices

65 A TO-

35 A Devices

20 A Devices

16 A Devices

15 A Devices

10 A Devices

SUPPLY FREQUENCY: 60 Hz Sinusoidal LOAD: Resistive RMS ON-STATE CURRENT: [IT(RMS)]: Max- Rated Value at Specified Case Temperature Notes: 1) Gate control may be lost during and immediately following surge current interval. 2) Overload may not be repeated until junction temperature has returned to steady-state rated value.

8 A Devices

Peak Surge (Non-repetitive) On-state Current (ITSM) – Amps

40 A Devi

0 0.2 0.4 0.6 0.8 0.4 0.8 1.0 0.2 RMS On-state Current [IT(RMS)] – Amps Average On-state Power Dissipation [PD(AV)] – Watts CURRENT WAVEFORM: Half Sine Wave LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚

1.0 A Devices

1.0 0.6 04 8 1 2 1 6 RMS On-state Current [IT(RMS)] – Amps Average On-state Power Dissipation [PD(AV)] – Watts CURRENT WAVEFORM: Half Sine Wave LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ 2 6 10 14 18

http://www.teccor.com E6 - 12 ©2002 Teccor Electronics +1 972-580-7777 Thyristor Product Catalog Figure E6.26 Power Dissipation (Typical) versus RMS On-state Current (25 A and 35 A) Figure E6.27 Power Dissipation (Typ ical) versus RMS On-state Current (40 A through 70 A) 0 8 16 24 32 RMS On-state Current [IT(RMS)] – Amps Average On-state Power Dissipation [PD(AV)] x– Watts 41 2 2 0 2 8 3 6

25 A TO-2

20 Devices

35 A Devi

CURRENT WAVEFORM: Half Sine Wave LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚ RMS On-state Current [IT(RMS)] – Amps Average On-state Power Dissipation [PD(AV)] – Watts 0 1 02 03 04 05 06 07 0

65 A and 70 A D

CURRENT WAVEFORM: Half Sine Wave LOAD: Resistive or Inductive CONDUCTION ANGLE: 180˚

40 A and 55 A Devices