Features Applications n 3 kA, 8/20 s surge capability n AC line protection n Low clamping voltage under surge n High power DC bus protection n Bidirectional TVS n Excellent performance over temperature PTVS3-xxxC-TH Series High Voltage, High Current TVS Diodes General Information The Model PTVS3-xxxC-TH high voltage, bidirectional TVS diode series is designed for use in AC line and high power DC bus clamping applications. The devices are RoHS* compliant. They also meet IEC 61000-4-5 8/20 s current surge requirements. Absolute Maximum Ratings ( T = 25 C Unless Otherwise Noted) A Rating Symbol Value Unit PTVS3-380C-TH 380 Repetitive Standoff Voltage V V WM PTVS3-430C-TH 430 Peak Current Rating per 8/20 s IEC 61000-4-5 I 3 kA PPM Operating Junction Temperature Range T -55 to +125 C J Storage Temperature Range T -55 to +150 C S Lead Temperature, Soldering (10 s) 260 C Electrical Characteristics ( T = 25 C Unless Otherwise Noted) A Parameter Test Conditions Min. Typ. Max. Unit I Standby Current V = V 10 A D D WM PTVS3-380C-TH 401 422 443 V Breakdown Voltage I = 10 mA V (BR) BR PTVS3-430C-TH 440 465 490 PTVS3-380C-TH 520 (1) V Clamping Voltage I = 3 kA V C PP PTVS3-430C-TH 580 V Temperature Coefficient 0.1 %/C (BR) F = 10 kHz, PTVS3-380C-TH 0.35 C Capacitance nF V = 1 Vrms PTVS3-430C-TH 0.40 d (1) V measured at the time which is coincident with the peak surge current. C Asia-Pacific: Tel: +886-2 2562-4117 Fax: +886-2 2562-4116 EMEA: Tel: +36 88 520 390 Fax: +36 88 520 211 The Americas: Tel: +1-951 781-5500 Fax: +1-951 781-5700 www.bourns.com *RoHS Directive 2002/95/EC Jan. 27, 2003 including annex and RoHS Recast 2011/65/EU June 8, 2011. Specifications are subject to change without notice. Users should verify actual device performance in their specific applications. The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf. *RoHS COMPLIANT VERSIONS AVAILABLE *RoHS COMPLIANT LEAD FREE LEAD FREE VERSIONS ARE RoHS COMPLIANT*3.5 140 3.5 140 T Current Current 3 3 120 120 3.5 140 3.5 140 T Current Current 2.5 100 2.5 100 3 3 120 120 3.5 140 3.5 140 T 80 80 2 2 2.5 100 2.5 100 Current Voltage Current 3.5 140 3.5 140 T 3 120 3 120 3.5 Voltage140 3.5 140 T Current Current 1.5 60 1.5 60 80 80 3 2 Current 3 2 Current 120 120 Voltage 3 3 120 120 2.5 2.5 100 100 Voltage 1 40 2.5 1 100 40 2.5 100 1.5 60 1.5 60 2.5 100 2.5 100 80 80 2 2 Voltage 80 80 2 20 2 0.5 20 0.5 Voltage 1 40 1 Voltage 40 80 80 2 2 Voltage Voltage 1.5 60 1.5 60 Voltage 1.5 60 1.5 60 0 0 0 0 20 0.5 20 0.5 1.5 60 1.5 60 1 40 1 40 1 40 1 40 1 40 1 -0.5 40 -0.5 0 -200 0 -200 20 20 0.5 0.5 04 8112 6 20 24 28 32 36 40 04 8112 6 20 24 28 32 36 40 20 0.5 20 0.5 20 0.5 20 0.5 -0.5 -20 -0.5 -20 Time (s) Time (s) 0 0 0 0 0 0 0 0 04 8112 6 20 24 28 32 36 40 04 8112 6 20 24 28 32 36 40 0 0 0 0 Time (s) Time (s) -0.5 -20 -0.5 -0.5 -20 -20 -0.5 -20 -0.5 -20 -0.5 -20 04 8112 6 20 24 28 32 36 40 04 8112 6 20 24 28 32 36 40 04 8112 6 20 24 28 32 36 40 04 8112 6 20 24 28 32 36 40 043.5 8112 6 20 24 28 32 36 40 04 8112 6 20 24 28 32 36 40 PTVS3-xxxC-TH Series High Voltage, High Current TVS Diodes 3.5 700 Time (s) Time (s) Time (s) Time (s) Time (s) Time (s) 3.0 16 3.0 600 3.5 Current 3.5 700 14 Performance Graphs 500 2.5 2.5 3.0 1216 3.0 600 3.5 3.5 Current 700 V-I Characteristic Typical V vs. Junction Temperature 2.0 400 14BR 3.5 3.5 2.0 10 3.5 3.5 700 700 Voltage 500 2.5 2.5 16 3.0 3.0 600 12 8 3.0 1.5 300 16 3.0 Current 600 3.0 16 3.0 600 14 1.5 2.0 400 Current 10 2.0 500 6 2.5 2.5 Current 14 Voltage 14 12 500 200 2.5 2.5 1.0 25 C 500 2.5 2.5 8 4 12 1.0 1.5 300 2.0 400 12 10 2.0 1.5 Voltage 2.0 400 2.0 0.5 100 610 2 Voltage 2.0 400 8 10 2.0 1.5 300 200 25 C 1.0 Voltage 0.5 1.5 8 4 1.5 300 0 1.0 6 0 1.5 0 8 1.5 300 200 1.0 6 25 C 1.5 0.5 100 2 -44 0 200 25 C 1.0 1.0 6 0.5 4 1.0 -0.5 -100 1.0 200 25 C 0.5 100 0 -62 0 0 4 1.0 0.5 100 2 0.5 05 10 15 20 25 30 35 40 -0.5 0 -4 0.5 0 0 -8 0 0.5 100 2 0 0 200 400 600 0 0 -0.5 -100 -40 -20 0 20 40 60 80 100 120 140 160 Time (s) -4 0 0.5 -6 0 -4 0 -0.5 05 10 15 20 25-100 30 35 40 0 0 -0.5 -6 Voltage (V) Junction Temperature (T ) - C -0.5 -100 -8 J 05 10 15 20 25 30 35 40 -6 -4 -0.5 0 0 200 400 600 -40 -20 0 20 40 60 80 100 120 140 160 05 10 15 20 25 30 Time (s)35 40 -8 -0.5 -0.5 -100 0 200 400 600 -8 -40 -20 0 20 40 60 80 100 120 140 160 Time (s) -6 0 200 400 600 -40 -20 0 20 40 60 80 100 120 140 160 Voltage (V) 05Time (s)10 15 20 25 30 35 40 Junction Temperature (T ) - C J -0.5 Voltage (V) Junction Temperature (T ) - C -8 J 0 Voltage (V)200 400 600 Junction Temperature (T ) - C -40 -20 0 20 40 60 80 100 120 140 160 J Time (s) 3.5 3.5 700 Voltage (V) Junction Temperature (T ) - C J 3.0 600 3.0 Current 120 120 3.5 3.5 700 3.5 3.5 700 2.5 500 Test Waveform Parameters Typical Surge Current Derating Current 8/20 s Waveform per IEC 61000-4-5 3.5 2.5 3.5 700 110 tt 3.0 600 tt = 8 s 3.0 600 3.0 3.0 2.0 400 100 Current 3.0 Current 600 100 3.0 120 120 120 td = 20 s 120 2.0 2.5 2.5 Current 500 500 3.5 Test Waveform ParametersTest Waveform Parameters 3.5 700 120 120 2.5 1.5 300 90 2.5 110 2.5 500 110 80 tt Test Waveform Parameters tt tt = 8 st tt = 8 s 2.5 Voltage e 110 100 2.0 400 100 1.5 2.0 400 3.0 600 tt 80 100 tt = 8 s 100 3.0 td = 20 s 2.0 1.0 400 200 100 2.0 td = 20 s 2.0 100 Current td = 20 s 60 1.5 300 120 90 120 2.0 70 1.5 300 90 80 2.5 500 1.0 t 80 Test Waveform Parameters 1.5 Voltage 300 90 e 0.5 100 t 1.5 2.5 80 Voltage e 110 80 t 1.5 60 1.0 Voltage 200 tt e 80 tt = 8 s 1.5 80 40 1.0 200 100 2.0 400 60 1.0 200 70 td = t IPP/2 100 0.5 0 0 60 td = 20 s 1.0 50 70 60 2.0 0.5 100 70 1.0 1.0 0.5 100 60 0.5 1.5 100 300 90 20 40 40 80 60 60 -0.5 -100 td = t IPPt/2 0 0.5 0 0 Voltage e 50 4040 1.5 80 tdt = td = tIPPIPP/2/2 0.5 0.5 0 0 0 1.0 010520 30 0 40 0 200 30 50 50 20 40 0 60 -0.5 -100 0 70 -0.5 20 20 40 20 1.0 40 035 10 15 20 25 0 -0.5 -100 0 -0.50.5 Time (s) 100-100 30 010520 30 40 0 0 0 100 200 300 400 500 600 60 0 30 010520 30 40 0 10 30 40 -0.5 010520 30 40 0 20 t Time (s) 0 035 10 td = t15 IPP/220 25 0 Time (s) 0 0.5 0 0 -0.5 50 20 0 100 200 300 Voltage (V)400 500 600 035 10 15 20 25 0 -0.5 0 Time (s) 20 10 035 10 15 20 25 0 Time (s) t Time (s) 0 100 200 300 400 500 600 20 40 10 0 100 200 300 400 500 600 0 25 50 75 100 125 150 175 -0.5 -100 t Time (s) 0 Voltage (V) 10 0 t Time (s) Voltage (V) 0 30 0 25 50 75 100 125 150 175 010520 30 40 0 Ambient Temperature (C) Voltage (V) 0 0 0 25 50 75 100 125 150 175 -0.5 20 Ambient Temperature (C) 0 25 50 75 100 125 150 175 035 10 15 20 25 0 Time (s) Typical Waveform Under Surge Ambient Temperature (C) 0 100 200 300 400 500 600 10 t Time (s) Ambient Temperature (C) Voltage (V) 0 This graph shows the typical device surge current derating 0 versus ambient temperature when subjected to the 8/20 s 25 50 75 100 125 150 175 Current current waveform per the IEC 61000-4-5 specification. Ambient Temperature (C) + This device is not intended for continuous operation at + temperatures above 125 C.+ + Exposed Exposed Voltage Exposed DC DC DC Power ExposedPower + Power Interface Interface DC Interface Power Exposed Interface - - DC - Power 0510 20 30 40 0 Interface - t Time (s) Specifications are subject to change without notice. Users should verify actual device performance in their specific applications. The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at www.bourns.com/docs/legal/disclaimer.pdf. - Percent of Rated Value Percent of Rated Value Percent of Rated Value Percent of Rated Value Percent of Rated Value Percent of V Change IPP Peak Pulse Current (% of IPP) Percent of V Change BR IPP Peak Pulse Current (% of IPP) Percent of V Change BR IPP Peak Pulse Current (% of IPP) Percent of V Change IPP Peak Pulse Current (% of IPP) BR BR Percent of V Change IPP Peak Pulse Current (% of IPP) BR Current (kA) Current (kA) Current (kA) Current (kA) Current (kA) Current (kA) Current (kA) Current (kA) Current (kA) Current (kA) Current (kA) Current (kA) Current (kA) Current (kA) Current (kA) Voltage (V) Voltage (V) Current (kA) Current (A) Current (kA) Current (kA) Current (A) Current (kA) Voltage (V) Voltage (V) Voltage (V) Current (kA) Current (kA) Current (A) Current (kA) Current (kA) Current (A) Current (A) Current (kA) Current (kA) Voltage (V) Voltage (V) Voltage (V) Voltage (V) Voltage (V) Voltage (V) Voltage (V) Voltage (V) Voltage (V) Voltage (V) Voltage (V) Voltage (V) Voltage (V) Voltage (V) Voltage (V)