ADD-A-PAK Generation VII Power Modules Thyristor/Diode and Thyristor/Thyristor, 45 A/60 A

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1 ADD-A-PAK Generation II Power Modules Thyristor/Diode and Thyristor/Thyristor, 45 A/6 A FEATURES High voltage Industrial standard package Low thermal resistance UL approved file E78996 Designed and qualified for industrial level Material categorization: For definitions of compliance please see ADD-A-PAK PRODUCT SUMMARY I T(A) or I F(A) 45 A/6 A Type Modules - Thyristor, Standard BENEFITS Excellent thermal performances obtained by the usage of exposed direct bonded copper substrate Up to 16 High surge capability Easy mounting on heatsink MECHANICAL DESCRIPTION The ADD-A-PAK generation II, new generation of ADD-A-PAK module, combines the excellent thermal performances obtained by the usage of exposed direct bonded copper substrate, with advanced compact simple package solution and simplified internal structure with minimized number of interfaces. ELECTRICAL DESCRIPTION These modules are intended for general purpose high voltage applications such as high voltage regulated power supplies, lighting circuits, temperature and motor speed control circuits, UPS, and battery charger. MAJOR RATINGS AND CHARACTERISTICS SYMBOL CHARACTERISTICS S-SK.41 S-SK.56 UNITS I T(A) or I F(A) 85 C 45 6 I O(RMS) As AC switch 135 I TSM, 5 Hz I FSM 6 Hz A I 2 t 5 Hz Hz ka 2 s I 2 t ka 2 s RRM Range 4 to 16 4 to 16 T Stg -4 to 125 C T J -4 to 125 C Revision: 21-Mar-14 1 Document Number: 9463 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

2 ELECTRICAL SPECIFICATIONS OLTAGE RATINGS TYPE NUMBER S-SK.41 S-SK.56 OLTAGE CODE RRM, MAXIMUM REPETITIE PEAK REERSE OLTAGE RSM, MAXIMUM NON-REPETITIE PEAK REERSE OLTAGE DRM, MAXIMUM REPETITIE PEAK OFF-STATE OLTAGE, GATE OPEN CIRCUIT I RRM, I DRM AT 125 C ma 15 ON-STATE CONDUCTION PARAMETER SYMBOL TEST CONDITIONS SK.41 SK.56 UNITS Maximum average on-state current (thyristors) I T(A) conduction, half sine wave, Maximum average forward current (diodes) I F(A) T C = 85 C 45 6 Maximum continuous RMS on-state current, as AC switch Maximum peak, one-cycle non-repetitive on-state or forward current Notes (1) I 2 t for time t x = I 2 t x t x (2) Average power = T(TO) x I T(A) + r t x (I T(RMS) ) 2 (3) 16.7 % x x I A < I < x I A (4) I > x I A or I O(RMS) 135 I TSM or I FSM t = 1 ms No voltage Sinusoidal t = 8.3 ms reapplied half wave, t = 1 ms % RRM initial T J = 715 t = 8.3 ms reapplied T J maximum t = 1 ms No voltage t = 8.3 ms reapplied Maximum I 2 t for fusing I 2 Initial T J = t ka T J maximum 2 s t = 1 ms % RRM t = 8.3 ms reapplied Maximum I 2 t for fusing I 2 t (1) t =.1 ms to 1 ms, no voltage reapplied ka T J = T J maximum 2 s Low level (3) Maximum value or threshold voltage (2) T(TO) T J = T J maximum High level (4) Maximum value of on-state slope resistance Low level (3) r (2) t T J = T J maximum High level (4) TM I TM = x I T(A) Maximum peak on-state or forward voltage T J = 25 C FM I FM = x I F(A) Maximum non-repetitive rate of rise of T J = 25 C, from.67 DRM, di/dt 15 A/μs turned on current I TM = x I T(A), I g = 5 ma, t r <.5 μs, t p > 6 μs T J = 25 C, anode supply = 6, Maximum holding current I H 2 resistive load, gate open circuit ma Maximum latching current I L T J = 25 C, anode supply = 6, resistive load 4 4 I (RMS) I (RMS) A m Revision: 21-Mar-14 2 Document Number: 9463 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

3 TRIGGERING PARAMETER SYMBOL TEST CONDITIONS S-SK.41 S-SK.56 UNITS Maximum peak gate power P GM 1 Maximum average gate power P G(A) 2.5 W Maximum peak gate current I GM 2.5 A Maximum peak negative gate voltage - GM 1 Maximum gate voltage required to trigger GT T J = 25 C Anode supply = 6 resistive load 2.5 T J = -4 C 4. T J = 125 C 1.7 T J = 25 C Anode supply = 6 resistive load 15 ma T J = -4 C 27 T J = 125 C 8 Maximum gate voltage that will not trigger GD T J = 125 C, rated DRM applied.25 Maximum gate current that will not trigger I GD T J = 125 C, rated DRM applied 6 ma BLOCKING PARAMETER SYMBOL TEST CONDITIONS S-SK.41 S-SK.56 UNITS Maximum peak reverse and off-state leakage current at RRM, DRM I RRM, I DRM T J = 125 C, gate open circuit 15 ma Maximum RMS insulation voltage INS 5 Hz 3 (1 min) 36 (1 s) Maximum critical rate of rise of off-state voltage d/dt T J = 125 C, linear to.67 DRM /μs THERMAL AND MECHANICAL SPECIFICATIONS PARAMETER SYMBOL TEST CONDITIONS S-SK.41 S-SK.56 UNITS Junction operating and storage T J, T Stg -4 to 125 C temperature range Maximum internal thermal resistance, R thjc DC operation junction to case per leg C/W Typical thermal resistance, Mounting surface flat, smooth and R thcs.1 case to heatsink per module greased Mounting torque ± 1 % to heatsink A mounting compound is recommended 4 and the torque should be rechecked after a period of 3 hours to allow for the spread busbar 3 of the compound. Approximate weight 75 g 2.7 oz. Case style JEDEC AAP GEN II (TO-24AA) Nm R CONDUCTION PER JUNCTION DEICES SINE HALF WAE CONDUCTION RECTANGULAR WAE CONDUCTION SK SK UNITS C/W Note Table shows the increment of thermal resistance R thjc when devices operate at different conduction angles than DC Revision: 21-Mar-14 3 Document Number: 9463 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

4 Maximum allowable case temperature ( C) SK.41 Series RthJC (DC) =.44 C/W Maximum average on-state power loss (W) RMS limit DC 2 SK.41 Series, Fig. 1 - Current Ratings Characteristics Fig. 4 - On-State Power Loss Characteristics Maximum allowable case temperature ( C) SK.41 Series RthJC (DC) =.44 C/W DC Fig. 2 - Current Ratings Characteristics Peak half sine wave on-state current (A) At any rated load condition and with rated rrm applied following surge Initial Tj = Tj 6 Hz.83 5 Hz.s Number of equal amplitude half cycle current pulses (N) Fig. 5 - Maximum Non-Repetitive Surge Current Maximum average on-state power loss (W) RMS limit 1 SK.41 Series, Fig. 3 - On-State Power Loss Characteristics Peak half sine wave on-state current (A) Maximum Non-repetitive Surge Current ersus Pulse Train Duration. Control of conduction may not be maintaned. Initial No oltage Reapplied Rated rrm reapplied Pulse train duration (s) Fig. 6 - Maximum Non-Repetitive Surge Current Revision: 21-Mar-14 4 Document Number: 9463 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

5 Maximum total on-state power loss (W) SK.41 Series 2 Per module Total RMS output current (A) Fig. 7 - On-State Power Loss Characteristics RthSA =..3 C/W.5 C/W.7 C/W 1.5 C/W 2 C/W 3 C/W 5 C/W Maximum total power loss (W) (sine) (rect) 2 x SK.41 Series 5 single phase bridge connected Total output current (A) Fig. 8 - On-State Power Loss Characteristics RthSA =..2 C/W.3 C/W.5 C/W.7 C/W 1.5 C/W Maximum total power loss (W) (rect) 3 x SK.41 Series three phase bridge connected Total output current (A) Fig. 9 - On-State Power Loss Characteristics RthSA =..2 C/W.3 C/W.5 C/W.7 C/W Revision: 21-Mar-14 5 Document Number: 9463 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

6 Maximum allowable case temperature ( C) RthJC (DC) =.35 C/W Maximum average on-state power loss (W) RMS limit DC, Fig. 1 - Current Ratings Characteristics Fig On-State Power Loss Characteristics Maximum allowable case temperature ( C) RthJC (DC) =.35 C/W DC Fig Current Ratings Characteristics Peak half sine wave on-state current (A) At any rated load condition and with rated rrm applied following surge Initial Tj = Tj 6 Hz.83 5 Hz.s Number of equal amplitude half cycle current pulses (N) Fig Maximum Non-Repetitive Surge Current Maximum average on-state power loss (W) RMS limit 2, Fig On-State Power Loss Characteristics Peak half sine wave on-state current (A) Maximum Non-repetitive Surge Current ersus Pulse Train Duration. Control of conduction may not be maintained. Initial No oltage Reapplied Rated rrm reapplied Pulse train duration (s) Fig Maximum Non-Repetitive Surge Current Revision: 21-Mar-14 6 Document Number: 9463 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

7 Maximum total on-state power loss (W) Per module Total RMS output current (A) Fig On-State Power Loss Characteristics RthSA =..2 C/W.3 C/W.4 C/W.5 C/W.7 C/W 1.5 C/W 2 C/W 4 C/W Maximum total power loss (W) (sine) (rect) 2 x single phase bridge connected Total output current (A) Fig On-State Power Loss Characteristics RthSA =..2 C/W.3 C/W.5 C/W.7 C/W 2 C/W Maximum total power loss (W) (rect) 3 x three phase bridge connected Total output current (A) Fig On-State Power Loss Characteristics RthSA =..2 C/W.3 C/W.5 C/W.7 C/W Revision: 21-Mar-14 7 Document Number: 9463 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

8 Instantaneous on-state current (A) 1 SK. 41 Series Tj = 25 C Instantaneous on-state current (A) 1 SK. 56 Series Tj = 25 C Instantaneous on-state voltage () Instantaneous on-state voltage () Fig On-State oltage Drop Characteristics Fig. 2 - On-State oltage Drop Characteristics Transient thermal impedance Z thjc ( C/W) 1.1 Steady state value RthJC =.44 C/W RthJC =.35 C/W (DC operation) SK.41 Series Square wave pulse duration (s) Fig Thermal Impedance Z thjc Characteristics Instantaneous gate voltage () 1 1 Rectangular gate pulse a)recommended load line for rated di/dt: 2, 3 ohms tr =.5 µs, tp >= 6 µs b)recommended load line for <= 3% rated di/ dt: 2, 65 ohms tr = 1 µs, tp >= 6 µs (a) (b) TJ = 125 C TJ = 25 C TJ = -4 C (1) PGM = W, tp = 5 µs (2) PGM = 5 W, tp = 1 ms (3) PGM = 2 W, tp = 25 ms (4) PGM = 1 W, tp = 5 ms (4) (3) (2) (1) GD IGD.1 SK. IRK.41../.56.. Series Freq uenc y Limit ed b y PG(A) Instantaneous gate current (A) Fig Gate Characteristics Revision: 21-Mar-14 8 Document Number: 9463 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

9 ORDERING INFORMATION TABLE Device code S-S K T 56 / 16 Note To order the optional hardware go to CIRCUIT CONFIGURATION product 2 - Module type 3 - Circuit configuration (see Circuit configuration table) 4 - Current code 5 - oltage code (see oltage Ratings table) 41 = 45 A 56 = 6 A CIRCUIT DESCRIPTION CIRCUIT CONFIGURATION CODE CIRCUIT DRAWING (1) ~ SKT 1 Two SCRs doubler circuit T 2 + (2) (3) G1 K1 K2 G2 (4) (5) (7) (6) (1) ~ SKH 1 SCR/diode doubler circuit, positive control H 2 + (2) (3) G1 K1 (4) (5) (1) ~ SKL 1 SCR/diode doubler circuit, negative control L 2 + (2) (3) K2 G2 (7) (6) (1) - SKN 1 SCR/diode common anodes N 2 + (2) (3) G1 K1 (4) (5) Dimensions LINKS TO RELATED DOCUMENTS Revision: 21-Mar-14 9 Document Number: 9463 ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT

10 ADD-A-PAK Generation II - Thyristor Outline Dimensions DIMENSIONS in millimeters (inches) Fast-on tab 2.8 x.8 (.11 x.3) 35 REF. 3 ±.5 (1.18 ±.2) 29 ±.5 (1 ±.2) iti M5 x.8 Screws M5 x.8 18 (.7) REF ±.5 (.6 ±.2) 6.7 ±.3 (.26 ±.12) 24 ±.5 (1 ±.2) 3 ± 1 (1.18 ±.39) 8 ±.3 (3.15 ±.12) 22.6 ±.2 (.89 ±.8) 6.3 ±.2 (.248 ±.8) ±.5 (.59 ±.2) 2 ±.5 (.79 ±.2) 2 ±.5 (.79 ±.2) 92 ±.75 (3.6 ±.3) 5.8 ±.25 (.228 ±.1) 4 ±.2 (.157 ±.8) Document Number: For technical questions, contact: indmodules@vishay.com Revision: 11-Nov-8 1

11 Legal Disclaimer Notice ishay Disclaimer ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROE RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE. ishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively, ishay ), disclaim any and all liability for any errors, inaccuracies or incompleteness contained in any datasheet or in any other disclosure relating to any product. ishay makes no warranty, representation or guarantee regarding the suitability of the products for any particular purpose or the continuing production of any product. To the maximum extent permitted by applicable law, ishay disclaims (i) any and all liability arising out of the application or use of any product, (ii) any and all liability, including without limitation special, consequential or incidental damages, and (iii) any and all implied warranties, including warranties of fitness for particular purpose, non-infringement and merchantability. Statements regarding the suitability of products for certain types of applications are based on ishay s knowledge of typical requirements that are often placed on ishay products in generic applications. Such statements are not binding statements about the suitability of products for a particular application. It is the customer s responsibility to validate that a particular product with the properties described in the product specification is suitable for use in a particular application. Parameters provided in datasheets and / or specifications may vary in different applications and performance may vary over time. All operating parameters, including typical parameters, must be validated for each customer application by the customer s technical experts. Product specifications do not expand or otherwise modify ishay s terms and conditions of purchase, including but not limited to the warranty expressed therein. Except as expressly indicated in writing, ishay products are not designed for use in medical, life-saving, or life-sustaining applications or for any other application in which the failure of the ishay product could result in personal injury or death. Customers using or selling ishay products not expressly indicated for use in such applications do so at their own risk. Please contact authorized ishay personnel to obtain written terms and conditions regarding products designed for such applications. No license, express or implied, by estoppel or otherwise, to any intellectual property rights is granted by this document or by any conduct of ishay. Product names and markings noted herein may be trademarks of their respective owners. 217 ISHAY INTERTECHNOLOGY, INC. ALL RIGHTS RESERED Revision: 8-Feb-17 1 Document Number: 9

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