15KE68A VISHAY | Alldatasheet

Document overview

  • Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
  • PDF pages: 6

Technical content

1.5KE6.8A thru 1.5KE540A, 1N6267A thru 1N6303A www.vishay.com Vishay General Semiconductor Revision: 21-Sep-2020 1 Document Number: 88301 For technical questions within your region: DiodesAmericas@vishay.com, DiodesAsia@vishay.com, DiodesEurope@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 TRANSZORB® Transient Voltage Suppressors DEVICES FOR BIDIRECTION APPLICATIONS For bidirectional types, use CA suffix (e.g. 1.5KE220CA) Electrical characteristics apply in both directions.

FEATURES

  • Glass passivated chip junction
  • Available in unidirectional and bidirectional
  • 1500 W peak pulse power capability with a 10/1000 μs waveform, repetitive rate (duty cycle): 0.01 %
  • Excellent clamping capability
  • Very fast response time
  • Low incremental surge resistance
  • AEC-Q101 qualified available
  • Solder dip 275 °C max. 10 s, per JESD 22-B106
  • Material categorization: fo r definitions of compliance please see www.vishay.com/doc?99912 TYPICAL APPLICATIONS Use in sensitive electronics protection against voltage transients induced by inductive load switching and lighting on ICs, MOSFET, signal lines of sensor units for consumer, computer, industrial, automotive, and telecommunication. MECHANICAL DATA Case: molded epoxy body over passivated junction Molding compound meets UL 94 V-0 flammability rating Base P/N-E3 - RoHS compliant, commercial grade Base P/NHE3_X - RoHS compliant, and AEC-Q101 qualified Terminals: matte tin plated leads, solderable per J-STD-002 and JESD 22-B102 E3 suffix meets JESD 201 class 1A whisker test, HE3 suffix meets JESD 201 class 2 whisker test Note
  • 1.5KE250A to 1.5KE540A are commercial grade only
  • Bidirectional is av ailable from 1.5KE6.8CA to 1.5KE220CA only Polarity: for unidirectional types the color band denotes cathode end, no marking on bidirectional types Notes (1) Non-repetitive current pulse, per fig. 3 and derated above TA = 25 °C per fig. 2 (2) Measured on 8.3 ms single half sine-wave or equivalent square wave, duty cycle = 4 pulses per minute maximum (3) VF = 3.5 V for 1.5KE220A and below; VF = 5.0 V for 1.5KE250A and above PRIMARY CHARACTERISTICS VBR unidirectional 6.8 V to 540 V VBR bidirectional 6.8 V to 220 V VWM unidirectional 5.8 V to 459 V VWM bidirectional 5.8 V to 185 V PPPM 1500 W PD 6.5 W IFSM (unidirectional only) 200 A TJ max. 175 °C Polarity Unidirectional, bidirectional Package 1.5KE Case Style 1.5KE MAXIMUM RATINGS (TA = 25 °C unless otherwise noted) PARAMETER SYMBOL VALUE UNIT Peak pulse power dissipation with a 10/1000 μs waveform (1) (fig. 1) P PPM 1500 W Peak pulse current with a 10/1000 μs waveform (1) I PPM See next table A Power dissipation on infinite heatsink at TL = 75 °C (fig. 5) P D 6.5 W Peak forward surge current 8.3 ms single half sine-wave unidirectional only (2) IFSM 200 A Maximum instantaneous forward voltage at 100 A for unidirectional only (3) VF 3.5/5.0 V Operating junction and storage temperature range T J, TSTG -55 to +175 °C

1.5KE6.8A thru 1.5KE540A, 1N6267A thru 1N6303A www.vishay.com Vishay General Semiconductor Revision: 21-Sep-2020 2 Document Number: 88301 For technical questions within your region: DiodesAmericas@vishay.com, DiodesAsia@vishay.com, DiodesEurope@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 Notes (1) Pulse test: tp  50 ms (2) S urge current waveform per fig. 3 and derate per fig. 2 (3) All terms and symbols are consistent with ANSI/IEEE CA62.35 (4) For bidirectional types with VR 10 V and less the ID limit is doubled (+) Underwriters laboratory recognition for the classification of protectors (QVGQ2) under the UL standard for safety 497B and file number E136766 for both unidirectional and bidirectional devices ELECTRICAL CHARACTERISTICS (TA = 25 °C unless otherwise noted) JEDEC® TYPE NUMBER GENERAL SEMICONDUCTOR PART NUMBER BREAKDOWN VOLTAGE VBR AT IT (1) (V) TEST CURRENT IT (mA) STAND-OFF VOLTAGE VWM (V) MAXIMUM REVERSE LEAKAGE AT VWM ID (4) (μA) MAXIMUM PEAK PULSE CURRENT IPPM (2) (A) MAXIMUM CLAMPING VOLTAGE AT IPPM VC (V) MAXIMUM TEMPERATURE COEFFICIENT OF VBR (%/°C)MIN. MAX.

1.5KE6.8A thru 1.5KE540A, 1N6267A thru 1N6303A www.vishay.com Vishay General Semiconductor Revision: 21-Sep-2020 3 Document Number: 88301 For technical questions within your region: DiodesAmericas@vishay.com, DiodesAsia@vishay.com, DiodesEurope@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 Notes (1) AEC-Q101 qualified RATINGS AND CHARACTERISTICS CURVES (TA = 25 °C unless otherwise noted) Fig. 1 - Peak Pulse Power Rating Curve Fig. 2 - Pulse Power or Current vs. Initial Junction Temperature Fig. 3 - Pulse Waveform Fig. 4 - Typical Junction Capacitance THERMAL CHARACTERISTICS (TA = 25 °C unless otherwise noted) PARAMETER SYMBOL VALUE UNIT Typical thermal resistance, junction to ambient R JA 75 °C/ WTypical thermal resistance, junction to lead R JL 15.4 ORDERING INFORMATION (Example) PREFERRED PIN UNIT WEIGHT (g) PREFERRED PA CKAGE CODE BASE QUANTITY DELIVERY MODE 1.5KE6.8A-E3/54 0.968 54 1400 13" diameter paper tape and reel 1.5KE6.8AHE3_A/C (1)(2) 0.968 C 1400 13" diameter paper tape and reel 0.1 100 0.1 µs 1.0 µs 10 µs 100 µs 1.0 ms 10 ms td - Pulse Width (s) P PPM - Peak P ulse Po wer (kW) 100 0 25 50 75 100 125 150 175 200 Peak P ulse P ower (P PP ) or C urrent (I PP Derating in Percentage, % TJ - Initial Temperature (°C) 100 150 tr = 10 µs Peak Value IPPM Half Value - IPPM IPP td 10/1000 µs Waveform as defined by R.E.A. 0 1.0 2.0 3.0 4.0 t - Time (ms) IPPM - Peak P ulse C urrent, % IRSM TJ = 25 °C Pulse Width (td) is defined as the Point where the Peak Current decays to 50 % of I PPM 5 10 100 500 100 1000 10 000 Uni-Directional Bi-Directional VR = 0 VR = Rated Stand-Off Voltage TJ = 25 °C f = 1.0 MHz V sig = 50 mVp-p VBR - Breakdown Voltage (V) C J - Capacitance (pF)

1.5KE6.8A thru 1.5KE540A, 1N6267A thru 1N6303A www.vishay.com Vishay General Semiconductor Revision: 21-Sep-2020 4 Document Number: 88301 For technical questions within your region: DiodesAmericas@vishay.com, DiodesAsia@vishay.com, DiodesEurope@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 Fig. 5 - Power Derating Curve Fig. 6 - Maximum Non-Repetitive Forward Surge Current Unidirectional only Fig. 7 - Incremental Clamping Voltage Curve (Unidirectional) Fig. 8 - Incremental Clamping Voltage Curve (Unidirectional) Fig. 9 - Incremental Clamping Voltage Curve (Bidirectional) Fig. 10 - Incremental Clamping Voltage Curve (Bidirectional) 8.0 7.0 6.0 5.0 4.0 3.0 2.0 1.0 0 25 50 75 100 125 150 175 200 P D - Po wer Dissipation (W) TL - Lead Temperature (°C) Lead Lengths 1 10 100 100 200 TJ = TJ max. 8.3 ms Single Half Sine-Wave Number of Cycles at 60 Hz Peak For ward S urge C urrent (A) 0.5 1 2 10 20 50 0.1 0.2 1.0 2.0 100 Waveform: 8/20 µs Impulse 1.5KE200 1.5KE6.8 1.5KE9.1 1.5KE18 1.5KE12 1.5KE130 1.5KE100 1.5KE75 1.5KE39 1.5KE33 IPP - Peak Pulse Current (A) ΔVC - Incremental Clamping Voltage ΔVC = VC - VBR 0.5 1 2 10 50 0.1 0.2 1.0 2.0 100 ΔVC - Incremental Clamping Voltage Waveform: 10/1000 µs Impulse ΔVC = VC - VBR 1.5KE200 1.5KE130 1.5KE75 1.5KE39 1.5KE33 1.5KE6.8 1.5KE9.1 IPP - Peak Pulse Current (A) 0.5 1 2 10 20 50 1.5KE200C 1.5KE75C 1.5KE39C 1.5KE15C 11C 1.5KE7.5C 1.5KE30C 0.1 0.2 1.0 2.0 100 Waveform: 8/20 µs Impulse IPP - Peak Pulse Current (A) /g39VC - Incremental Clamping Voltage /g39VC = VC - VBR 0.5 1 2.0 10 20 50 1.5KE200C 1.5KE75C 1.5KE39C 1.5KE15C 1.5KE11C 1.5KE7.5C 1.5KE30C 0.1 0.2 100 IPP - Peak Pulse Current (A) Waveform: 10/1000 µs Impulse /g39VC - Incremental Clamping Voltage /g39VC = VC - VBR

1.5KE6.8A thru 1.5KE540A, 1N6267A thru 1N6303A www.vishay.com Vishay General Semiconductor Revision: 21-Sep-2020 5 Document Number: 88301 For technical questions within your region: DiodesAmericas@vishay.com, DiodesAsia@vishay.com, DiodesEurope@vishay.com THIS DOCUMENT IS SUBJECT TO CHANGE WITHOUT NOTICE. THE PRODUCTS DESCRIBED HEREIN AND THIS DOCUMENT ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT www.vishay.com/doc?91000 Fig. 11 - Instantaneous Forward Voltage Characteristics Curve Fig. 12 - Typical Transient Thermal Impedance PACKAGE OUTLINE DIMENSIONS in inches (millimeters) APPLICATION NOTES

  • This series of Silicon Transient Suppressors is used in applications where large voltage transients can permanently damage voltage-sensitive components.
  • The TVS diode can be used in applications where induced lightning on rura l or remote transmission lines presents a hazard to electronic circuitry
  • This Transient Voltage Su ppressor diode has a pulse power rating of 1500 W for 1 ms. The response time of TVS diode clamping action is effectively instantaneous (1 x 10 -9 s bi-directional); therefore, they can protect integrated circuits, MOS de vices, hybrids, and other voltage sensitive semiconductors and components. TVS diodes can also be used in series or parallel to increase the peak power ratings. 0.1 100 Instantaneous Forward Current (A) Instantaneous Forward Voltage (V) TJ = 25 °C Pulse Width = 300 µs 1 % Duty Cycle 100 0.1 0.001 0.01 0.1 1 10 100 1000 tp - Pulse Duration (s) Transient Thermal Impedance (°C/W) 1.0 (25.4) MIN. 1.0 (25.4) MIN. 0.375 (9.5) 0.285 (7.2) 0.210 (5.3) 0.190 (4.8) DIA. 0.042 (1.07) 0.038 (0.96) DIA. Case Style 1.5KE

www.vishay.com Vishay Revision: 01-Jan-2022 1 Document Number: 91000 Disclaimer ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA AR E SUBJECT TO CHANGE WITH OUT NOTICE TO IMPROVE RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE. Vishay Intertechnology, Inc., its affiliates, agents, and employee s, and all persons acting on it s or their behalf (collectivel y, “Vishay”), disclaim any and all liability for any errors, inaccuracies or incompleteness contained in any datasheet or in any other disclosure relating to any product. Vishay 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, Vishay disclaims (i) any and all liability arising out of the application or use of any product , (ii) any and all liability, including without limitation specia l, consequential or incidental damages, and (iii) any and all implied warranties, incl uding warranties of fitness for particular purpose, non-infringement and merchantability. Statements regarding the suitability of pro ducts for certain types of applications are based on Vishay's knowledge of typical requirements that are often placed on Vishay products in ge neric 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 specificat ions 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 Vishay's terms and conditions of purchase, including but not limited to the warranty expressed therein. Hyperlinks included in this datasheet may direct users to third-party websites. These links are provided as a convenience and for informational purposes only. Inclusion of these hyperlinks does not constitute an endorsement or an approval by Vishay of any of the products, services or opinions of the corporation, organization or individual associated with the third-party website. Vishay disclaims any and all liability and bears no responsibility for the accuracy, legality or content of the third-party web site or for that of subsequent links. Except as expressly indicated in writing, Vishay 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 Vishay product could result in personal injury or death. Customers using or selling Vishay products not expressly indicated for use in such applications do so at their own risk. Please contact authorized Vishay 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 Vishay. Product names and markings noted herein may be trademarks of their respective owners. © 2022 VISHAY INTERTECHNOLOGY, INC. ALL RIGHTS RESERVED