T4 series. 4 A Triacs. Features. Applications. Description. Table 2. Device summary
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1 4 A Triacs Datasheet production data. Table 1. Main characteristics Symbol Value Unit I T(rms) 4 A V DRM, V RRM 600 to 800 V I GT 5 to 35 ma Table 2. Device summary Symbol Marking Features Three quadrants Triac 600 to 800 V V DRM /V RRM UL certified (ref. file E81734) Applications General purpose AC inductive loads Motor control circuits Small home appliances Description Based on ST s Snubberless / Logic level technology providing high commutation performances, the T4 series is suitable for use on AC inductive loads. They are recommended for applications using universal motors, electro valves, kitchen aid equipments, power tools, dishwashers. Available in a fully insulated package, the T4yy-xxxW version complies with UL standards (ref.e81734). T405-xxxB T405-xxxB-TR T405-xxxH T405-xxxT T405-xxxW T410-xxxB T410-xxxB-TR T410-xxxH see Table 12 T410-xxxT T410-xxxW T435-xxxB T435-xxxB-TR T435-xxxH T435-xxxT T435-xxxW xxx = Voltage: 600 V, 700 V or 800 V (see Table 11). February 2015 DocID7699 Rev 6 1/17 This is information on a product in full production. 17
2 Characteristics T4 series 1 Characteristics Table 3. Absolute maximum ratings (T j = 25 C unless otherwise stated) Symbol Parameter Value Unit I T(rms) I TSM On-state rms current (full sine wave) Non repetitive surge peak on-state current (full cycle, T j initial = 25 C) IPAK, DPAK, TO-220AB T c = 110 C ISOWATT220AB T c = 105 C F = 50 Hz t = 20 ms 30 F = 60 Hz t = 16.7 ms 31 4 A I ² t I ² t value for fusing t p = 10 ms 5.1 A ² s di/dt Critical rate of rise of on-state current I G = 2 x I GT, t r 100 ns F = 120 Hz T j = 125 C 50 A/µs I GM Peak gate current t p = 20 µs T j = 125 C 4 A P G(AV) Average gate power dissipation T j = 125 C 1 W T stg T j Storage junction temperature range Operating junction temperature range - 40 to to A C Table 4. Electrical characteristics (T j = 25 C, unless otherwise stated) Symbol Test conditions Quadrant Value T405 T410 T435 Unit I GT (1) V D = 12 V, R L = 30 Ω I - II - III Max ma V GT V D = 12 V, R L = 30 Ω I - II - III Max. 1.3 V V GD V D = V DRM, R L = 3.3 k Ω, T j = 125 C I - II - III Min. 0.2 V I (2) H I T = 100 ma Max ma I - III Max I L I G = 1.2 I GT II Max ma dv/dt (2) V D = 67% V DRM, gate open T j = 125 C Min V/µs (dv/dt)c = 0.1 V/µs (di/dt)c (2) (dv/dt)c = 10 V/µs T j = 125 C Min A/ms (without snubber) Minimum I GT is guaranteed at 5% of I GT max. 2. For both polarities of A2 referenced to A1 2/17 DocID7699 Rev 6
3 Characteristics Table 5. Static characteristics Symbol Test conditions Value Unit V (1) TM I TM = 8.5 A, t p = 380 µs T j = 25 C Max V (1) V t0 Threshold voltage T j = 125 C Max V R (1) d Dynamic resistance T j = 125 C Max. 120 mω I DRM T j = 25 C 5 µa V I DRM = V RRM Max. RRM T j = 125 C 1 ma 1. For both polarities of A2 referenced to A1 Table 6. Thermal resistance Symbol Parameter Value Unit R th(j-c) Junction to case (AC) IPAK, DPAK,TO-220AB 2.6 ISOWATT220AB 4.0 C/W R th(j-a) Junction to ambient (DC) Junction to ambient (DC) S (1) = 0.5 cm² DPAK 70 ISOWATT220AB, TO-220AB 60 IPAK 100 C/W 1. S = Copper surface under tab. DocID7699 Rev 6 3/17
4 Characteristics T4 series Figure 1. Maximum power dissipation versus RMS on-state current (full cycle) Figure 2. RMS on-state current versus case temperature (full cycle) P(W) I T(RMS) (A) I T(RMS) (A) T ( C) C TO-220AB / DPAK / IPAK ISOWATT220AB Figure 3. RMS on-state current versus ambient temperature (printed circuit board FR4, copper thickness: 35µm) (full cycle) Figure 4. Relative variation of thermal impedance versus pulse duration I T(RMS) (A) T ( C) C DPAK 2 (S=0.5CM ) E+0 1E-1 K=[Z th/rth] Rth(j-c) TO-220AB / DPAK / IPAK ISOWATT220AB DPAK / IPAK Rth(j-a) TO-220AB / ISOWATT220AB t p(s) 1E-2 1E-2 1E-1 1E+0 1E+1 1E+2 5E+2 Figure 5. On-state characteristics (maximum values) Figure 6. Surge peak on-state current versus number of cycles I TM(A) Tj max. V to = 0.90V R d = 120 mω I TSM(A) t=20ms One cycle 1.0 T= j Tj max. T j = 25 C Repetitive T C=110 C Non repetitive Tj initial=25 C V TM(V) Number of cycles /17 DocID7699 Rev 6
5 Characteristics Figure 7. Non-repetitive surge peak on-state current for a sinusoidal pulse with width t p < 10 ms and corresponding value of I 2 t Figure 8. Relative variation of gate trigger current, holding current and latching current versus junction temperature (typical values) I TSM(A), I t (A s) 2.5 I GT,I H,I L[T] j / I GT,I H,I L[T j=25 C] Tj initial=25 C 100 di/dt limitation: 50A/µs ITSM IGT IH & IL 10 2 I t t p(ms) T j( C) Figure 9. Relative variation of critical rate of decrease of main current versus (dv/dt)c (typical values) Figure 10. Relative variation of critical rate of decrease of main current versus junction temperature (di/dt)c [(dv/dt)c] / Specified (di/dt)c T T T (dv/dt)c (V/µs) (di/dt)c [T j ] / (di/dt)c [T j specified] T j( C) Figure 11. DPAK thermal resistance junction to ambient versus copper surface under tab (printed circuit board FR4, copper thickness: 35 µm) R th(j-a) ( C/W) S(cm²) DocID7699 Rev 6 5/17
6 Package information T4 series 2 Package information Epoxy meets UL94, V0 Lead-free package Recommended torque: 0.4 to 0.6 N m In order to meet environmental requirements, ST offers these devices in different grades of ECOPACK packages, depending on their level of environmental compliance. ECOPACK specifications, grade definitions and product status are available at: ECOPACK is an ST trademark. Figure 12. DPAK dimension definitions A E b4 c2 E1 L2 D1 D H L4 D A1 E1 e1 b c A2 V2 L Note: this package drawing may slightly differ from the physical package. However, all the specified dimensions are guaranteed. 6/17 DocID7699 Rev 6
7 Package information Ref. Table 7. DPAK dimension values Millimeters Dimensions Inches Min. Typ. Max. Min. Typ. Max. A A A b b c c D D E E e H L L L V Figure 13. Footprint (dimensions in mm) DocID7699 Rev 6 7/17
8 Package information T4 series Figure 14. ISOWATT220AB dimension definitions H A B Dia L6 L2 L7 L3 F1 D L4 F E G 8/17 DocID7699 Rev 6
9 Package information Table 8. ISOWATT220AB dimension values Dimensions Ref. Millimeters Inches Min. Typ. Max. Min. Typ. Max. A B D E F F F G G H L typ typ. L L L L Diam DocID7699 Rev 6 9/17
10 Package information T4 series Figure 15. IPAK dimension definitions L2 E b4 V1 A c2 C D L1 e b2 L A1 H b e1 c Note: this package drawing may slightly differ from the physical package. However, all the specified dimensions are guaranteed. 10/17 DocID7699 Rev 6
11 Package information Ref. Table 9. IPAK dimension values Millimeters Dimensions Inches Min. Typ. Max. Min. Typ. Max. A A b b b c c D E e e H L L L V DocID7699 Rev 6 11/17
12 Package information T4 series Figure 16. TO-220AB (NIns. & Ins. 20-up) dimension definitions B C Ø I b2 L F A I4 l3 a1 c2 l2 a2 e b1 M c1 12/17 DocID7699 Rev 6
13 Package information Table 10. TO-220AB (NIns. & Ins. 20-up) dimension values Dimensions Ref. Millimeters Inches Min. Typ. Max. Min. Typ. Max. A a a B b b C c c e F ØI I L l l M DocID7699 Rev 6 13/17
14 Ordering information T4 series 3 Ordering information Triac series Current 4 = 4A Sensitivity 05 = 5mA 10 = 10mA 35 = 35mA Voltage 600 = 600V 700 = 700V 800 = 800V Figure 17. Order information scheme T B (-TR) Package B = DPAK H = IPAK T = TO-220AB W = ISOWATT220AB Packing mode Blank = Tube -TR = Tape & reel Table 11. Product Selector Part Number Voltage (xxx) 600 V 700 V 800 V Sensitivity Type Package T405-xxxB X X X 5 ma Logic level DPAK T405-xxxB-TR X X X 5 ma Logic level DPAK T405-xxxH X X 5 ma Logic level IPAK T405-xxxT X 5 ma Logic level TO-220AB T405-xxxW X 5 ma Logic level ISOWATT220AB T410-xxxB X X 10 ma Logic Level DPAK T410-xxxB-TR X X 10 ma Logic Level DPAK T410-xxxH X X 10 ma Logic Level IPAK T410-xxxT X X X 10 ma Logic Level TO-220AB T410-xxxW X 10 ma Logic Level ISOWATT220AB T435-xxxB X X X 35 ma Snubberless DPAK T435-xxxB-TR X X X 35 ma Snubberless DPAK T435-xxxH X X 35 ma Snubberless IPAK T435-xxxT X X 35 ma Snubberless TO-220AB T435-xxxW X X 35 ma Snubberless ISOWATT220AB Blank = Unavailable 14/17 DocID7699 Rev 6
15 Ordering information Table 12. Ordering information Order code Marking Package Weight Base qty Delivery mode T B T T B T T B T T B T T B T T B T T B T T B T T B-TR T T B-TR T T B-TR T T B-TR T T B-TR T T B-TR T T B-TR T T B-TR T T H T T H T T H T T H T T H T T H T T T T T T T T T T T T T T T T T T T T T T T T T T W T W T W T W T W T W T W T W DPAK 0.3 g IPAK 0.4 TO-220AB 2.3 ISOWATT220AB Tube 2500 Tape and reel 75 Tube 50 DocID7699 Rev 6 15/17
16 Revision history T4 series 4 Revision history Table 13. Document revision history Date Revision Changes Jun Last updated. 25-Mar Layout updated0 No content change. 25-Jan Markings changed in Table May Updated DPAK and IPAK package information and reformatted to current standard. 11-Feb Updated package silhouettes in cover page. 16/17 DocID7699 Rev 6
17 IMPORTANT NOTICE PLEASE READ CAREFULLY STMicroelectronics NV and its subsidiaries ( ST ) reserve the right to make changes, corrections, enhancements, modifications, and improvements to ST products and/or to this document at any time without notice. Purchasers should obtain the latest relevant information on ST products before placing orders. ST products are sold pursuant to ST s terms and conditions of sale in place at the time of order acknowledgement. Purchasers are solely responsible for the choice, selection, and use of ST products and ST assumes no liability for application assistance or the design of Purchasers products. No license, express or implied, to any intellectual property right is granted by ST herein. Resale of ST products with provisions different from the information set forth herein shall void any warranty granted by ST for such product. ST and the ST logo are trademarks of ST. All other product or service names are the property of their respective owners. Information in this document supersedes and replaces information previously supplied in any prior versions of this document STMicroelectronics All rights reserved DocID7699 Rev 6 17/17
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