Example: stock market

PTVS1-380C-TH High Voltage, High Current TVS Diodes

Features Applications *. NT. n 1 kA, 8/20 s surge capability n AC line protection EN & LIA. *. P. E*. OM n Low clamping voltage under surge n Protection of power supplies used in RE. C. F. exposed and harsh environments HS. n Bidirectional TVS. Ro G. LO. n SPDs and dongles HA. n Excellent performance over temperature n RoHS compliant* and halogen free**. TN. IA. PL. PTVS1-380C-TH high voltage , high Current TVS Diodes OM. C. S. oH. *R. General Information The Model PTVS1-380C-TH high voltage , bidirectional TVS Diodes are designed for use in AC line and high power DC bus clamping applications. E. RE. F. AD. LE. The devices are RoHS* compliant. They also meet IEC 61000-4-5 8/20 s Current surge requirements. Absolute Maximum Ratings (@ TA = 25 C Unless Otherwise Noted). PL AR IA E OM S E. *. C ION FRE. NT. HS RS D Ro VE LEA. Rating Symbol Value Unit Repetitive Standoff voltage VWM 380 V.

The Model PTVS1-380C-TH high voltage, bidirectional TVS diodes are designed for use in AC line and high power DC bus clamping applications. The devices are RoHS* compliant.

Tags:

  High, Current, Voltage, High voltage, High current

Information

Domain:

Source:

Link to this page:

Please notify us if you found a problem with this document:

Other abuse

Advertisement

Transcription of PTVS1-380C-TH High Voltage, High Current TVS Diodes

1 Features Applications *. NT. n 1 kA, 8/20 s surge capability n AC line protection EN & LIA. *. P. E*. OM n Low clamping voltage under surge n Protection of power supplies used in RE. C. F. exposed and harsh environments HS. n Bidirectional TVS. Ro G. LO. n SPDs and dongles HA. n Excellent performance over temperature n RoHS compliant* and halogen free**. TN. IA. PL. PTVS1-380C-TH high voltage , high Current TVS Diodes OM. C. S. oH. *R. General Information The Model PTVS1-380C-TH high voltage , bidirectional TVS Diodes are designed for use in AC line and high power DC bus clamping applications. E. RE. F. AD. LE. The devices are RoHS* compliant. They also meet IEC 61000-4-5 8/20 s Current surge requirements. Absolute Maximum Ratings (@ TA = 25 C Unless Otherwise Noted). PL AR IA E OM S E. *. C ION FRE. NT. HS RS D Ro VE LEA. Rating Symbol Value Unit Repetitive Standoff voltage VWM 380 V.

2 Peak Current Rating per 8/20 s IEC 61000-4-5 IPPM 1 kA. Operating Junction Temperature Range TJ -55 to +125 C. Storage Temperature Range TS -55 to +150 C. Lead Temperature, Soldering (10 s) 260 C. Electrical Characteristics (@ TA = 25 C Unless Otherwise Noted). Parameter Test Conditions Min. Typ. Max. Unit ID Standby Current VD = VWM 10 A. V(BR) Breakdown voltage IBR = 10 mA 401 422 443 V. VC Clamping voltage (1) IPP = 1 kA 520 V. V(BR) Temperature Coefficient %/ C. F = 10 kHz, C Capacitance nF. Vd = 1 Vrms (1) V measured at the time which is coincident with the peak surge Current . C. Asia-Pacific: Tel: +886-2 2562-4117 Email: EMEA: Tel: +36 88 520 390 Email: The Americas: Tel: +1-951 781-5500 Email: WARNING Cancer and Reproductive Harm - * RoHS Directive 2002/95/EC Jan. 27, 2003 including annex and RoHS Recast 2011/65/EU June 8, 2011. ** Bourns considers a product to be halogen free if (a) the Bromine (Br) content is 900 ppm or less; (b) the Chlorine (Cl) content is 900 ppm or less; and (c) the total Bromine (Br).

3 And Chlorine (Cl) content is 1500 ppm or less. Specifications are subject to change without notice. Users should verify actual device performance in their specific applications. The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at PTVS1-380C-TH high voltage , high Current TVS Diodes 16. Performance Graphs 14. 1216. of VBR Change V-I Characteristic Typical V BR vs. Junction Temperature 1014. 16. 812. 1616. BR Change 14. 61014. 1214 25 C. 4 812. of VChange 1012. Percent of VBR Change VChange 28610. ofPercent 10 25 C. 064 8. BR. 8. 6 25 C. -4462. Percent 25 C. of VBR. 4. -6240 25 C. Percent 2. -80-4. 20. Percent -40 -20 0. -4-6 20 40 60 80 100 120 140 160. 0-4. -6. -8 Junction Temperature (TJ) - C. -4-6. -8 -40 -20 0 20 40 60 80 100 120 140 160. -8 -20 0.

4 -6-40 20 40 60 80 100 120 140 160. -40 -20 Junction 0 20 Temperature (TJ120. 40 60 80 100 ) - C. 140 160. -8 Junction Temperature (TJ) - C. -40 -20 Junction 0 20 Temperature 40 60 80(T100J) - C. 120 140 160. Junction Temperature (TJ) - C. 120 120. )) of IPP). 110 Typical Surge Current Derating Current 8/20 s Waveform per Test IECW aveform 61000-4-5. Parameters tt tt = 8 s 100. 100 td = 20 s PP(%. 120 120 120. 120. TestTest Waveform Waveform Parameters Parameters of IIPP. 90 110120 120. Current 110 80. IPP Peak Pulse Current (% of IPP). Value Value t t tt tet t=Test =Waveform 8tt s 8 s Parameters (% of 110 100. 100 tt 80. 100 100 100 t td = 20 t = 8 s td = s20 s IPP) (%. 120 100 60. 120 td = 20 s 7090 90. Current 8080. Percent of Rated Value Pulse (% Current of Rated 90 80 et etTest Waveform Parameters Percent of Rated Value 110. 6080 80 tt et tt = 8 s of 80 40.

5 100. 100 70 60 td = t|IPP. td /2. Peak 5070 6060 = 20 s IPP Pulse 70. Pulse Rated 90 60 20. IPP Current 40 40. 80. ofValue 60 60 td = t|IPPet/2. Percent Peak 50 4040. 80 tdtd==t|tI|PPIPP. /2/2. PP Peak 3050 40 50 20. 0. 60. 70. 20 2020. IPP Peak IPulse 40 40. of Rated 30 0 5 10 15 20 25 30. Percent Percent 60. 10 30 0. 30 4000. 50. 20 0 5 10 ttd =15 Time t|IPP/2( s). 20 25 30. 020 10 20 00 55 10. 10. t Time 15. 15. ( s). 20. 20 25 25 30 30. 400 1025 50 75 100 125 150 175 20. 10 0 t Time ( s). t Time ( s). 30. 0. 00 25 Ambient 50 Temperature 75 100 ( C) 125 150 175. 0. 0 25 50 75 100 125 150 175. 20 0 25 50 Ambient 75 Temperature 100 ( C) 150. 125 175 0 5 10. Ambient Temperature ( C) Typical Waveform Under Surge 15 20 25 30. 10 Ambient Temperature ( C) t Time ( s). 0 This graph shows the typical device surge Current derating 0 versus 25 ambient 50 temperature 75 when 100 subjected 125 to the 1508/20 s 175 Current Current waveform per theTemperature IEC 61000-4-5 specification.

6 + +. Ambient ( C). This device is not intended for continuous operation at +. temperatures above 125 C. + Exposed Exposed voltage DC Exposed DC. DC. + Power Exposed Power Power Interface DCInterface Interface Power Exposed - -Interface - DCnotice. Specifications are subject to change without Power Users should verify actual device performance in their specific applications. 0 10 20 30 40 50. - document are subject to specific legal The products described herein and this Interface disclaimers as set forth on the last page of this document, and at t Time ( s). - PTVS1-380C-TH high voltage , high Current TVS Diodes Product Dimensions Epoxy encapsulation materials conform to UL 94V-0. Silver plated lead finish conforms to the solderability requirements of JESD22-B102, Pb free solder. Package dimensions are shown below: G F Dim. PTVS1-380C-TH .

7 A. ( ). D B. ( ). C. C. ( ). D Max. ( ). H. E. ( ). B F Max. E. MM. ( ). A DIMENSIONS: (INCHES) G Max. ( ). H. ( ). Typical Part Marking How to Order PTVS 1 - 380 C - T H. Series PTVS = Power TVS high Current Diode Environmental Specifications Peak Current Rating Moisture Sensitivity 1 = 1 kA. ESD Classification (HBM)..N/A Repetitive Standoff voltage 380 = 380 V. Suffix C = Bidirectional Device Package T = Through-Hole Temperature H = high Temperature Series REV. 10/12/18. Specifications are subject to change without notice. Users should verify actual device performance in their specific applications. The products described herein and this document are subject to specific legal disclaimers as set forth on the last page of this document, and at Legal Disclaimer Notice This legal disclaimer applies to purchasers and users of Bourns products manufactured by or on behalf of Bourns, Inc.

8 And its affiliates (collectively, Bourns ). Unless otherwise expressly indicated in writing, Bourns products and data sheets relating thereto are subject to change without notice. Users should check for and obtain the latest relevant information and verify that such information is Current and complete before placing orders for Bourns products. The characteristics and parameters of a Bourns product set forth in its data sheet are based on laboratory conditions, and statements regarding the suitability of products for certain types of applications are based on Bourns' knowledge of typical requirements in generic applications. The characteristics and parameters of a Bourns product in a user application may vary from the data sheet characteristics and parameters due to (i) the combination of the Bourns product with other components in the user's application, or (ii) the environment of the user application itself.

9 The characteristics and parameters of a Bourns . product also can and do vary in different applications and actual performance may vary over time. Users should always verify the actual performance of the Bourns product in their specific devices and applications, and make their own independent judgments regarding the amount of additional test margin to design into their device or application to compensate for differences between laboratory and real world conditions. Unless Bourns has explicitly designated an individual Bourns product as meeting the requirements of a particular industry standard ( , ISO/TS 16949) or a particular qualification ( , UL listed or recognized), Bourns is not responsible for any failure of an individual Bourns product to meet the requirements of such industry standard or particular qualification. Users of Bourns products are responsible for ensuring compliance with safety-related requirements and standards applicable to their devices or applications.

10 Bourns products are not recommended, authorized or intended for use in nuclear, lifesaving, life-critical or life-sustaining applications, nor in any other applications where failure or malfunction may result in personal injury, death, or severe property or environmental damage. Unless expressly and specifically approved in writing by two authorized Bourns representatives on a case-by-case basis, use of any Bourns products in such unauthorized applications might not be safe and thus is at the user's sole risk. Life-critical applications include devices identified by the Food and Drug Administration as Class III. devices and generally equivalent classifications outside of the United States. Bourns expressly identifies those Bourns standard products that are suitable for use in automotive applications on such products' data sheets in the section entitled Applications.


Related search queries