JEDEC JESD66-1999 Transient Voltage Suppressor Standard for Thyristor Surge Protective Device Rating Verification and Characteristic Testing《半导体闸流管电涌保护设备分级认证和特征测试的瞬时电压抑止器标准》.pdf
《JEDEC JESD66-1999 Transient Voltage Suppressor Standard for Thyristor Surge Protective Device Rating Verification and Characteristic Testing《半导体闸流管电涌保护设备分级认证和特征测试的瞬时电压抑止器标准》.pdf》由会员分享,可在线阅读,更多相关《JEDEC JESD66-1999 Transient Voltage Suppressor Standard for Thyristor Surge Protective Device Rating Verification and Characteristic Testing《半导体闸流管电涌保护设备分级认证和特征测试的瞬时电压抑止器标准》.pdf(79页珍藏版)》请在麦多课文档分享上搜索。
1、JEDEC STANDARD Transient Voltage Suppressor Standard for Thyristor Surge Protective Device Rating Verification and Characteristic Testing JESD66 NOVEMBER 1999 (Reaffirmed: NOVEMBER 2006) ELECTRONIC INDUSTRIES ALLIANCE JEDEC Solid State Technology Association NOTICE This JEDEC standard is considered
2、to have international standardization implications, but the International Electrotechnical Commission or the International Organization for Standardization activity has not progressed to the point where a valid comparison between the JEDEC standard and the IEC or the ISO document can be made. JEDEC
3、standards and publications contain material that has been prepared, reviewed, and approved through the JEDEC Board of Directors level and subsequently reviewed and approved by the EIA General Counsel. JEDEC standards and publications are designed to serve the public interest through eliminating misu
4、nderstandings between manufacturers and purchasers, facilitating interchangeability and improvement of products, and assisting the purchaser in selecting and obtaining with minimum delay the proper product for use by those other than JEDEC members, whether the standard is to be used either domestica
5、lly or internationally. JEDEC standards and publications are adopted without regard to whether or not their adoption may involve patents or articles, materials, or processes. By such action JEDEC does not assume any liability to any patent owner, nor does it assume any obligation whatever to parties
6、 adopting the JEDEC standards or publications. The information included in JEDEC standards and publications represents a sound approach to product specification and application, principally from the solid state device manufacturer viewpoint. Within the JEDEC organization there are procedures whereby
7、 an JEDEC standard or publication may be further processed and ultimately become an ANSI/EIA standard. No claims to be in conformance with this standard may be made unless all requirements stated in the standard are met. Inquiries, comments, and suggestions relative to the content of this JEDEC stan
8、dard or publication should be addressed to JEDEC Solid State Technology Association, 2500 Wilson Boulevard, Arlington, VA 22201-3834, (703)907-7560/7559 or www.jedec.org Published by JEDEC Solid State Technology Association 2006 2500 Wilson Boulevard Arlington, VA 22201-3834 This document may be dow
9、nloaded free of charge, however EIA retains the copyright on this material. By downloading this file the individual agrees not to charge or resell the resulting material. Printed in the U.S.A. All rights reserved PLEASE! DON”T VIOLATE THE LAW! This document is copyrighted by the JEDEC Solid State Te
10、chnology Association and may not be reproduced without permission. Organizations may obtain permission to reproduce a limited number of copies through entering into a license agreement. For information, contact: JEDEC Solid State Technology Association 2500 Wilson Boulevard Arlington, Virginia 22201
11、-3834 or call (703) 907-7559 JEDEC Standard No. 66- i-TRANSIENT VOLTAGE SUPPRESSOR STANDARD FOR THYRISTOR SURGEPROTECTIVE DEVICE RATING VERIFICATION AND CHARACTERISTIC TESTINGCONTENTSPageForeword v1 Introduction 12 Scope 13 Device definition 13.1 Thyristor surge protective device (TSPD) 13.1.1 Off s
12、tate of a TSPD 13.1.2 Breakdown region of a TSPD 23.1.3 On state of a TSPD 23.2 Classes of thyristor surge protective devices 33.2.1 Forward-conducting diode TSPD 33.2.2 Forward-conducting triode TSPD 43.2.3 Reverse-blocking diode TSPD 43.2.4 Reverse-blocking triode TSPD 53.2.5 Bidirectional TSPD 53
13、.2.6 Unidirectional TSPD 53.2.7 Negative-breakdown-resistance TSPD 53.2.8 Positive-breakdown-resistance TSPD 63.3 Definitions of characteristics, rating, and parameter 63.3.1 Characteristic 63.3.2 Rating 63.3.3 Parameter 73.4 Thyristor surge protective device parameters 73.4.1 Electrical parameters
14、applicable to all device types 83.4.2 Thermal parameters applicable to all device types 103.4.3 Additional electrical parameters for positive-breakdown-resistance types 123.4.4 Additional parameters for negative-breakdown-resistance types 133.4.5 Additional parameters for reverse-blocking types 153.
15、4.6 Additional parameters for forward-conducting types 153.4.7 Additional parameters for triode, gate accessible device types 163.4.8 Common telecommunications impulse waveform definitions 184 Rating verification tests 194.1 Maximum repetitive off-state voltage (V DR M ) 194.1.1 Introduction (V DRM
16、) 194.1.2 Test method (V DRM ) 194.2 Nonrepetitive on-state surge current (I TSM ) 21JEDEC Standard No. 66-ii-TRANSIENT VOLTAGE SUPPRESSOR STANDARD FOR THYRISTOR SURGEPROTECTIVE DEVICE RATING VERIFICATION AND CHARACTERISTIC TESTINGCONTENTS (continued)page4.2.1 Introduction (I TSM ) 214.2.2 Test meth
17、od for I TSM 224.3 Nonrepetitive peak impulse current (I PPS ) 234.3.1 Introduction (I PPS ) 234.3.2 Test method for I PPS testing 235 Characteristic tests 265.1 Off-state current (I D ) testing 265.1.1 I D test method 265.1.2 Reverse gate current test, adjacent terminal open (triodes), I GAO , I GK
18、O 275.1.3 Reverse gate current test, adjacent terminal shorted (triodes), I GAS , I GKS 285.1.4 On-state reverse gate current test (triodes), I GAT , I GKT 295.1.5 Forward-conducting state reverse gate current test, (triodes), I GAF , I GKF 305.1.6 Peak off-state gate current test for triode devices
19、 (I GDM ) 315.2 Breakover voltage V (BO) testing 325.2.1 AC V (BO) test method (all device types) 325.2.2 Impulse V (BO) test method (all device types) 355.3 Breakover current (I (BO) ) testing 375.3.1 AC I (BO) test method (positive resistance types) 375.3.2 Impulse I (BO) test method (all device t
20、ypes) 395.4 Gate switching current (I GSM ) and charge (Q GS ) testing 405.4.1 Gate switching current (I GSM ) test method, triode types 405.4.2 Gate switching current (Q GS ) test method, triode types 425.5 Holding current (I H ) testing 435.5.1 I H test circuit (impulse method) 455.5.2 I H test ci
21、rcuit (ramp method) 465.6 On-state voltage (V T ) testing 475.6.1 Pulsed dc on-state voltage (V T ) test method 485.6.2 Impulse on-state voltage (V T ) test method 495.6.3 AC on-state voltage (V T ) test method 505.7 Off-state capacitance (C O ) testing 525.7.1 Two terminal TSPD capacitance (C O ) t
22、est method 535.7.2 DC voltage-biased multi-terminal TSPD capacitance (C O ) test method 555.8 Critical rate of rise of off-state voltage ( dv/ dt) test 565.8.1 Description ( dv/ dt) 565.8.2 Test method ( dv/ dt) 595.9 Critical rate of rise of on-state current ( di/ dt) 605.9.1 Description ( di/ dt)
23、605.9.2 Test method ( di/ dt) 615.10 Peak forward recovery voltage (V FRM ) test 63JEDEC Standard No. 66-iii-TRANSIENT VOLTAGE SUPPRESSOR STANDARD FOR THYRISTOR SURGEPROTECTIVE DEVICE RATING VERIFICATION AND CHARACTERISTIC TESTINGCONTENTS (continued)page5.10.1 Description (V FRM ) 635.10.2 Test meth
24、od (V FRM ) 65Figures1 Symbols and terms for a forward-conducting positive-breakdown-resistance TSPD 22 Symbols and terms for a forward-conducting negative-breakdown-resistance TSPD 33 Symbols and terms for a gated TSPD 44 Symbols and terms for a reverse-blocking negative-breakdown-resistance TSPD 5
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