To our customers, Old Company Name in Catalogs and Other Documents On April 1st, 2010, NEC Electronics Corporation merged with Renesas Technology Corporation, and Renesas Electronics Corporation took over all the business of both companies. Therefore, although the old company name remains in this document, it is a valid Renesas Electronics document. We appreciate your understanding. Renesas Electronics website: http://www.renesas.com April 1st, 2010 Renesas Electronics Corporation Issued by: Renesas Electronics Corporation (http://www.renesas.com) Send any inquiries to http://www.renesas.com/inquiry. Notice 1. 2. 3. 4. 5. 6. 7. All information included in this document is current as of the date this document is issued. Such information, however, is subject to change without any prior notice. Before purchasing or using any Renesas Electronics products listed herein, please confirm the latest product information with a Renesas Electronics sales office. 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DATA SHEET THYRISTORS 8P2SMA, 8P4SMA 8 A RESIN MOLD TYPE SCR DESCRIPTION PACKAGE DRAWING (Unit: mm) The 8P2SMA and 8P4SMA are resin mold type SCRs with an 7 0.2 2.8 0.2 1 5 0.2 APPLICATIONS * Motor speed control for household appliance * Temperature control for heater and constant temperature box * Constant voltage power source and battery charger * Automotive application such as regulator * Various solid state relay, etc. 2 3 12 0.2 * High allowable on-current when using a single unit 3.0 MAX. * 13.5 MIN. * Can be replaced with TO-220AB package 17 0.2 FEATURES 3.2 0.2 5 0.1 state voltage 200 V and 400 V. 4.7 MAX. 10.5 MAX. average on-state current 8 A (TC = 88C), repetitive peak off- 0.8 0.1 1.3 0.2 1.5 0.2 2.54 TYP. 2.54 TYP. 0.5 0.1 2.5 0.1 1: Cathode 2: Anode 3: Gate *: TC test bench-mark Standard weight: 2 g The information in this document is subject to change without notice. Before using this document, please confirm that this is the latest version. Not all products and/or types are available in every country. Please check with an NEC Electronics sales representative for availability and additional information. Document No. D17164EJ4V0DS00 (4th edition) Date Published October 2008 NS Printed in Japan The mark shows major revised points. The revised points can be easily searched by copying an "" in the PDF file and specifying it in the "Find what:" field. 1988 8P2SMA, 8P4SMA MAXIMUM RATINGS Parameter Symbol 8P2SMA 8P4SMA Unit Remarks Non-repetitive Peak Reverse Voltage VRSM 300 500 V - Non-repetitive Peak Off-state Voltage VDSM 300 500 V - Repetitive Peak Reverse Voltage VRRM 200 400 V - Repetitive Peak Off-state Voltage VDRM 200 400 V - Average On-state Current IT(AV) 8 (TC = 88C, single phase half wave, = 180) A Refer to Figure 11 Effective On-state Current IT(RMS) 12.6 A and 12. ITSM 100 (f = 50 Hz, sine half wave, 1 cycle) A Refer to Figure 2. Surge On-state Current 110 (f = 60 Hz, sine half wave, 1 cycle) Fusing Current iT2dt 45 (1 ms t 10 ms) As 2 - Critical Rate Rise of On-state Current dIT/dt 50 A/s - PGM 5 (f 50 Hz, Duty 10%) W Refer to Figure 3. PG(AV) 0.5 W Peak Gate Forward Current IFGM 2 (f 50 Hz, Duty 10%) A Peak Gate Reverse Voltage Peak Gate Power Dissipation Average Gate Power Dissipation - VRGM 10 V - Junction Temperature Tj -40 to +125 C - Storage Temperature Tstg -55 to +150 C - ELECTRICAL CHARACTERISTICS (Tj = 25C) Parameter Repetitive Peak Reverse Current Repetitive Peak Off-state Current Symbol IRRM IDRM VTM On-state Voltage Conditions MIN. TYP. MAX. Unit Remarks Tj = 25C - - 100 A - Tj = 125C - - 2 mA - Tj = 25C - - 100 A - Tj = 125C - - 2 mA - ITM = 25 A - - 1.4 V Refer to Figure 1. Refer to Figure 4. VRM = VRRM VDM = VDRM Gate Trigger Current IGT VDM = 6 V, RL = 100 - - 10 mA Gate Trigger Voltage VGT VDM = 6 V, RL = 100 - - 1.5 V VGD Tj = 125C, VDM = 1 VDRM 0.2 - - V - - 6 - mA - - 40 - V/s - - 100 - s - Gate Non-trigger Voltage IH Holding Current Critical Rate Rise of Off-state Voltage Circuit Commuted Turn-off Time dv/dt tq 2 VDM = 24 V, ITM = 25 A Tj = 125C, VDM 2 = 3 VDRM Tj = 125C, ITM = 8 A diR/dt = 15 A/s, VR 25 V, VDM = 32 VDRM, dVD/dt = 10 V/s Thermal Resistance 2 Note Rth(j-c) Junction to case DC - - 3.7 C/W Refer to Figure 13. Rth(j-a) Junction to ambient DC - - 60 C/W Data Sheet D17164EJ4V0DS 8P2SMA, 8P4SMA TYPICAL CHARACTERISTICS Figure 1. iT vs. T CHARACTERISTIC Figure 2. ITSM RATING 100 Initial Tj = 125C 140 ITSM - Surge On-state Current - A iT - On-state Current - A MAX. 10 Tj = 125C ITSM 10 ms 20 ms 120 100 60 Hz 80 50 Hz 60 40 20 25C 1 0 0 1 3 2 1 5 T - On-state Voltage - V VDM = 6 V RL = 100 VGT - Gate Trigger Voltage - V VFG - Gate Forward Voltage - V Figure 4. GATE CHARACTERISTIC 8 PGM = 5 W f 50 Hz Duty 10% 4 PG(AV) = 0.5 W 2 0 4 3 Tj = -40C 2 0C 25C 1 0 0 1.0 2.0 0 5 IFG - Gate Forward Current - A Figure 5. IGT vs. TA CHARACTERISTIC 15 20 25 30 Figure 6. VGT vs. TA CHARACTERISTIC 2.0 VGT - Gate Trigger Voltage - V 10 1 0.1 -40 10 IGT - Gate Trigger Current - mA 100 IGT - Gate Trigger Current - mA 100 5 Tj = -40 to +125C 6 50 N - Cycles Figure 3. GATE RATING 10 10 -20 0 20 40 60 80 100 1.0 0 -40 TA - Ambient Temperature - C -20 0 20 40 60 80 100 TA - Ambient Temperature - C Data Sheet D17164EJ4V0DS 3 8P2SMA, 8P4SMA Figure 7. iGT vs. CHARACTERISTIC Figure 8. GT vs. CHARACTERISTIC 1.0 1000 TA = 25C GT - Gate Trigger Voltage - V iGT - Gate Trigger Current - mA TA = 25C 100 10 1 0.1 10 100 0.4 0.2 1000 100 1000 Figure 10. PT(AV) vs. IT(AV) CHARACTERISTIC -20 0 20 40 60 80 100 PT(AV) - On-state Average Power Dissipation - W Figure 9. IH vs. TA CHARACTERISTIC 14 DC 0 12 = 180 Conduction angle 10 120 90 8 60 6 30 4 2 0 0 2 4 6 8 10 12 TA - Ambient Temperature - C IT(AV) - Average On-state Current - A Figure 11. TC vs. IT(AV) RATING Figure 12. TA vs. IT(AV) RATING 140 14 120 Conduction angle 100 80 60 = 180 30 40 DC 60 90 120 20 TA - Ambient Temperature - C 140 0 0 120 100 80 = 60 90 120 180 60 40 20 30 DC 0 0 2 4 6 8 10 12 14 IT(AV) - Average On-state Current - A 4 10 - Pulse Width - s 10 0 -40 1 - Pulse Width - s 20 IH - Holding Current - mA 0.6 0 1 TC - Case Temperature - C 0.8 0 1.0 2.0 IT(AV) - Average On-state Current - A Data Sheet D17164EJ4V0DS 8P2SMA, 8P4SMA Figure 13. Zth CHARACTERISTIC Zth - Transient Thermal Impedance - C/W 100 Junction to ambient 10 Junction to case 1 0.1 0.01 0.1 1 10 100 1000 10000 t - Time - s Data Sheet D17164EJ4V0DS 5 8P2SMA, 8P4SMA * The information in this document is current as of October, 2008. The information is subject to change without notice. For actual design-in, refer to the latest publications of NEC Electronics data sheets or data books, etc., for the most up-to-date specifications of NEC Electronics products. Not all products and/or types are available in every country. Please check with an NEC Electronics sales representative for availability and additional information. * No part of this document may be copied or reproduced in any form or by any means without the prior written consent of NEC Electronics. NEC Electronics assumes no responsibility for any errors that may appear in this document. * NEC Electronics does not assume any liability for infringement of patents, copyrights or other intellectual property rights of third parties by or arising from the use of NEC Electronics products listed in this document or any other liability arising from the use of such products. No license, express, implied or otherwise, is granted under any patents, copyrights or other intellectual property rights of NEC Electronics or others. * Descriptions of circuits, software and other related information in this document are provided for illustrative purposes in semiconductor product operation and application examples. The incorporation of these circuits, software and information in the design of a customer's equipment shall be done under the full responsibility of the customer. NEC Electronics assumes no responsibility for any losses incurred by customers or third parties arising from the use of these circuits, software and information. * While NEC Electronics endeavors to enhance the quality, reliability and safety of NEC Electronics products, customers agree and acknowledge that the possibility of defects thereof cannot be eliminated entirely. To minimize risks of damage to property or injury (including death) to persons arising from defects in NEC Electronics products, customers must incorporate sufficient safety measures in their design, such as redundancy, fire-containment and anti-failure features. * NEC Electronics products are classified into the following three quality grades: "Standard", "Special" and "Specific". The "Specific" quality grade applies only to NEC Electronics products developed based on a customerdesignated "quality assurance program" for a specific application. The recommended applications of an NEC Electronics product depend on its quality grade, as indicated below. Customers must check the quality grade of each NEC Electronics product before using it in a particular application. "Standard": Computers, office equipment, communications equipment, test and measurement equipment, audio and visual equipment, home electronic appliances, machine tools, personal electronic equipment and industrial robots. "Special": Transportation equipment (automobiles, trains, ships, etc.), traffic control systems, anti-disaster systems, anti-crime systems, safety equipment and medical equipment (not specifically designed for life support). "Specific": Aircraft, aerospace equipment, submersible repeaters, nuclear reactor control systems, life support systems and medical equipment for life support, etc. The quality grade of NEC Electronics products is "Standard" unless otherwise expressly specified in NEC Electronics data sheets or data books, etc. If customers wish to use NEC Electronics products in applications not intended by NEC Electronics, they must contact an NEC Electronics sales representative in advance to determine NEC Electronics' willingness to support a given application. (Note) (1) "NEC Electronics" as used in this statement means NEC Electronics Corporation and also includes its majority-owned subsidiaries. (2) "NEC Electronics products" means any product developed or manufactured by or for NEC Electronics (as defined above). M8E 02. 11-1