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ST TYN612M 12 A SCR handbook

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1. Package information TYN612M Table 5 TO 220FPAB Dimensions Dimensions Ref Millimeters Inches Min Max Min Max A 4 4 4 6 0 173 0 181 B 2 5 2 7 0 098 0 106 H 3 D 2 5 2 75 0 098 0 108 i l __ E 0 45 0 70 0 018 0 027 a ED Dia F 0 75 1 0 030 0 039 L6 J F1 1 15 1 70 0 045 0 067 T T F2 1 15 1 70 0 045 0 067 G 4 95 5 20 0 195 0 205 gt me 7 G1 2 4 2 7 0 094 0 106 H 10 10 4 0 393 0 409 L2 16 Typ 0 63 Typ j E L3 28 6 30 6 1 126 1 205 L4 9 8 10 6 0 386 0 417 L5 2 9 3 6 0 114 0 142 L6 15 9 16 4 0 626 0 646 L7 9 00 9 30 0 354 0 366 Dia 3 00 3 20 0 118 0 126 6 8 In order to meet environmental requirements ST offers these devices in ECOPACK amp packages These packages have a lead free second level interconnect The category of second level interconnect is marked on the inner box label in compliance with JEDEC Standard JESD97 The maximum ratings related to soldering conditions are also marked on the inner box label ECOPACK is an ST trademark ECOPACK specifications are available at www st com 4 TYN612M Ordering information 4 Ordering information Ordering type Marking Package Weight Base qty Delivery mode TYN612MRG TYN612M TO 220AB 2 39 50 Tube TYN612MFP TYN612MFP TO 220AB 2 09 50 Tube Revision history Date Revision Description of Changes Sep 2002 1A Last update
2. 57 TYN612M 12 ASCR Main features Symbol Value Unit Hr RMS 12 A Vpnu VnRM 600 Y lay min max 15 5 mA Description TO 220AB TO 220FPAB TYN612MRG TYN612MFP The TYN612M SCR is suitable to fit modes of control found in applications such as voltage regulation circuits for motorbikes overvoltage Order codes crowbar protection motor control circuits in power tools and kitchen aids inrush current limiting Part Numbers Marking circuits capacitive discharge ignition TYN612MRG TYN612M The insulated fullpack package allows a back to TYN612MFP TYN612MFP back configuration Table 1 Absolute ratings limiting values Symbol Parameter Value Unit RMS on state current TO 220AB Tc 105 C 12 A T RMS 180 conduction angle TO 220FPAB Tc 70 C 12 Average on state current TO 220AB To 105 C 8 A TAV 180 conduction angle TO 220FPAB T 70 C 8 iti m t 2 8 3 ms 125 ITSM Non repetitive surge peak on state p T 25C A current tp 10 ms 120 lt l t Value for fusing tp 10 ms Tj 25 C 72 As Critical rate of rise of on state current dl dt la 2x ler t lt 100 ns F 60 Hz Tj 125 C 50 Alus lam Peak gate current tp 20 us Tj 125 C 4 A Paav Average gate power dissipation Tj 125 C 1 Tstg Storage junction temperature range 40 to 150 C Tj Operating junction temperature range
3. 10 Fev 2005 2 TO 220FPAB package added 11 Apr 2007 3 an a Added typical and minimum 17 Apr 2007 4 Added Vor curve in Figure 6 7 8 TYN612M Please Read Carefully Information in this document is provided solely in connection with ST products STMicroelectronics NV and its subsidiaries ST reserve the right to make changes corrections modifications or improvements to this document and the products and services described herein at any time without notice All ST products are sold pursuant to ST s terms and conditions of sale Purchasers are solely responsible for the choice selection and use of the ST products and services described herein and ST assumes no liability whatsoever relating to the choice selection or use of the ST products and services described herein No license express or implied by estoppel or otherwise to any intellectual property rights is granted under this document If any part of this document refers to any third party products or services it shall not be deemed a license grant by ST for the use of such third party products or services or any intellectual property contained therein or considered as a warranty covering the use in any manner whatsoever of such third party products or services or any intellectual property contained therein UNLESS OTHERWISE SET FORTH IN ST S TERMS AND CONDITIONS OF SALE ST DISCLAIMS ANY EXPRESS OR IMPLIED WARRANTY WITH RESPECT TO THE USE AND OR SALE OF ST PRODU
4. 40 to 125 VnaM Maximum peak reverse gate voltage 5 V April 2007 Rev 4 1 8 www st com Characteristics TYN612M 1 Characteristics Table 2 Electrical characteristics T 25 C unless otherwise specified Symbol Test Conditions Value Unit V y MIN 1 5 l 12 140 Q m MAX 5 MIN 0 5 V Ver Vp 12V Ri 140 Q TYP 0 7 MAX 1 3 Veo Vo Vorm Ry 3 3 ko Tj 125 C MIN 0 2 V lu Ir 500 mA Gate open MAX 20 mA IL Ig 1 2 lar MAX 40 mA dV dt Vp 67 Vornm Gate open T 125 C MIN 50 V us Vim lTM 24A to 380 us T 225 C MAX 1 6 V Vio Threshold voltage T 125 C MAX 0 85 V Rg Dynamic resistance T 125 C MAX 30 ma IDRM T 25 C 5 yA RRM T 125 C 2 mA Table 3 Thermal resistance Symbol Parameter Value Unit TO 220AB 1 3 R ndi c Junction to case DC C W TO 220FPAB 4 5 TO 220AB 55 R nl a Junction to ambient DC C W TO 220FPAB 55 Figure 1 Maximum average power Figure 2 Average and D C on state current dissipation versus average versus case temperature on state current TO 220AB P W lIr AVy A 12 14 11 F a 180 13
5. D C 10 12 9 11 10 8 9 e 7 H a 180 6 7 5 6 5 5 4 3 3 2 2 1 Ircavy A Tc C 0 4 2 3 4 5 6 7 9 0 25 50 75 100 125 2 8 ky TYN612M Characteristics Figure 3 Average and D C on state current versus case tem perature TO 220FPAB Figure 4 Relative variation of thermal impedance versus pulse duration TO 220AB K Zth Rth tr aV A Bi 13 D C 12 11 Rino 10 9 a 180 8 2 1 E 01 Ringa 4 6 5 4 3 2 1 Te C tp s 0 1 E 02 Lil d 0 25 50 75 100 125 1 E 03 1 E 02 1 E 01 1 E 00 1 E 01 1 E 02 1 E 03 Figure 5 Relative variation of thermal Figure 6 Relative variation of gate trigger impedance versus pulse duration TO 220FPAB current holding current latching current and gate trigger voltage versus junction temperature typical values K Zin Rin 1 E 00 Fi 1 E 01 Puja tp s 1 E 02 LALLI L 1 E 03 1 E 02
6. Tr25 C P lt it 2 Ordering information scheme TYN 6 12 M FP RG Standard SCR Voltage 6 600V Current 12 12A Sensitivity M 5mA Package FP TO 220FPAB Blank TO 220AB Packing mode RG Tube TO 220AB Blank Tube TO 220FPAB 418 572 TYN612M Package information 3 Package information e Epoxy meets UL94 VO Table 4 TO 220AB dimensions Dimensions Ref Millimeters Inches Min Typ Max Min Typ Max A 15 20 15 90 0 598 0 625 R o al 3 75 0 147 T me 4 I a2 18 00 14 00 0 511 0 551 TG TT B 10 00 10 40 0 393 0 409 a b1 0 61 0 88 0 024 0 034 A b2 1 23 1 32 0 048 0 051 5 C 440 4 60 0 173 0 181 TN m El ci 0 49 0 70 0 019 0 027 MIO c2 2 40 2 72 0 094 0 107 s i e 240 2 70 0 094 0 106 a 6 20 6 60 0 244 0 259 Aa A a ol 3 75 3 85 0 147 0 151 T I4 15 80 16 40 16 80 0 622 0 646 0 661 L 2 65 2 95 0 104 0 116 I2 1 14 1 70 0 044 0 066 I3 1 14 1 70 0 044 0 066 M 2 60 0 102 ky 5 8
7. 1 E 01 1 E 00 1 E 01 1 E 02 1 E 03 lor Ins I Var Tj lar Ins I Ver T 25 C 2 2 2 0 1 8 1 6 14 go T 1 2 1 0 0 8 0 6 0 4 0 2 Tj C 0 0 40 30 20 10 0 10 20 30 40 50 60 70 80 90 100 110 120 130 Figure 7 Surge peak on state current versus Figure 8 number of cycles Non repetitive surge peak on state current for a sinusoidal pulse with width tp lt 10 ms and corresponding values of Pt Itsm A 130 120 1 110 IN H MI 100 p 10m 8 L 4 Non repetitive z H i Tjinitial 25 C One cycb 80 70 60 Repetitive 50 Te 105 C 40 lacina 30 LI 20 een ix Number of cycles 0 L LI I 11111 i 10 100 1000 Itsm A Pt A s 1000 Tjinitial 25 C Itsm 100 0 01 0 10 1 00 10 00 3 8 Ordering information scheme TYN612M Figure 9 On state characteristics maximum values Irm A 100 00 Tj 125 C Tj max 10 0 85V 10 00 m
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