VS-T40HF..., VS-T70HF..., VS-T85HF..., VS-T110HF... Series Power Rectifiers Diodes (T-Modules), 40 A to 110 A

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1 Power Rectifiers Diodes (T-Modules), A to A FEATURES Electrically isolated base plate D-55 (T-module) Types up to V RRM 35 V RMS isolating voltage Simplified mechanical designs, rapid assembly High surge capability Large creepage distances UL E78996 approved Designed and qualified for industrial level Material categorization: for definitions of compliance please see /doc?99912 PRODUCT SUMMARY I F(AV) Type V RRM Package Circuit A to A Modules - Diode, High Voltage V to V D-55 (T-module) Single diode DESCRIPTION / APPLICATIONS These series of T-modules use standard recovery power rectifier diodes. The semiconductors are electrically isolated from the metal base, allowing common heatsink and compact assembly to be built. Applications include power supplies, battery charges, welders, motor controls and general industrial current rectification. MAJOR RATINGS AND CHARACTERISTICS SYMBOL CHARACTERISTICS THF THF T85HF THF UNITS 85 A I F(AV) T C C I F(RMS) A 5 Hz 5 I FSM A Hz I 2 t 5 Hz Hz A 2 s I 2 t A 2 s V RRM to V T J - to + C ELECTRICAL SPECIFICATIONS VOLTAGE RATINGS TYPE NUMBER VS-THF... VS-THF... VS-T85HF... VS-THF... VOLTAGE CODE V RRM, MAXIMUM REPETITIVE PEAK REVERSE VOLTAGE V V RSM, MAXIMUM NON-REPETITIVE PEAK REVERSE VOLTAGE V I RRM MAXIMUM AT T J = 25 C μa Revision: 29-Sep-15 1 Document Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT /doc?

2 FORWARD CONDUCTION VALUES PARAMETER SYMBOL TEST CONDITIONS UNITS THF THF T85HF THF Maximum average forward 85 A I F(AV) 1 conduction, half sine wave current at case temperature C Maximum RMS forward current I F(RMS) A t = ms No voltage 5 Maximum peak, one-cycle t = 8.3 ms reapplied forward, non-repetitive surge I FSM A t = ms % V current RRM Sinusoidal t = 8.3 ms reapplied half wave, t = ms No voltage initial T J = reapplied T J maximum Maximum I 2 t for fusing I 2 t = 8.3 ms t A 2 s t = ms % V RRM t = 8.3 ms reapplied Maximum I 2 t for fusing I 2 t t =.1 ms to ms, no voltage reapplied A 2 s Low level value of threshold voltage High level value of threshold voltage Low level value of forward slope resistance High level value of forward slope resistance V F(TO)1 (16.7 % x x I F(AV) < I < x I F(AV) ), T J maximum V F(TO)2 (I > x I F(AV) ), T J maximum r f1 (16.7 % x x I F(AV) < I < x I F(AV) ), T J maximum r f2 (I > x I F(AV) ), T J maximum V Maximum forward voltage drop V FM t p = μs square pulse I FM = x I F(AV), T J = 25 C, Average power = V F(TO) x I F(AV) + r f x (I F(RMS) ) 2 V m BLOCKING PARAMETER SYMBOL TEST CONDITIONS THF THF T85HF THF UNITS Maximum peak reverse leakage current I RRM T J = C ma 5 Hz, circuit to base, all terminals shorted RMS isolation voltage V ISOL T J = 25 C, t = 1 s V THERMAL AND MECHANICAL SPECIFICATIONS PARAMETER SYMBOL TEST CONDITIONS Maximum junction operating and storage temperature range Maximum thermal resistance, junction to case per junction Maximum thermal resistance, case to heatsink Mounting torque, to heatsink ± % VALUES THF THF T85HF THF T J, T Stg - to + C R thjc operation R thcs Mounting surface smooth, flat and greased Non-lubricated M3.5 mounting screws (1) 1.3 ± % terminals threads M5 screw terminals 3 ± % Nm Approximate weight See dimensions - link at the end of datasheet 54 g Case style D-55 (T-module) Note (1) A mounting compound is recommended and the torque should be rechecked after a period of about 3 hours to allow for the spread of the compound.2 UNITS K/W Revision: 29-Sep-15 2 Document Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT /doc?

3 R CONDUCTION PER JUNCTION SINUSOIDAL CONDUCTION AT T J MAXIMUM RECTANGULAR CONDUCTION AT T J MAXIMUM DEVICES 1 1 THF THF T85HF THF Note Table shows the increment of thermal resistance R thjc when devices operate at different conduction angles than UNITS K/W THF.. Serie s R () = 1.36 K/W thjc THF.. Serie s R thjc () = 1.36 K/W Fig. 1 - Current Ratings Characteristics Fig. 2 - Current Ratings Characteristics RMS Limit THF.. Serie s T = C J 1.5 K/W Maximum Allowable Ambient Temperature ( C) 2 K/ W 3 K/W 5 K/W 7 K/W K/W 1 K/W Fig. 3 - Forward Power Loss Characteristics R =.5 K/W - Delta R Revision: 29-Sep-15 3 Document Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT /doc?

4 5 3 1 RMSLimit THF.. Series T = C J 1.5 K/W 2 K/W 5 K/W K/ W K/W 3 K/W 7 K/W R =.5 K/ W - Delta R Maximum Allowable Ambient Temperature ( C) Fig. 4 - Forward Power Loss Characteristics At Any Rated Load Condition And With Rated V RRM Applied Following Surge. Initial T J = Hz.83 5 Hz. s THF.. Serie s 1 Number Of Equal Amplitude Half Cycle Current Pulses (N) Fig. 5 - Maximum Non-Repetitive Surge Current THF.. Serie s R thjc () =.69 K/ W Fig. 7 - Current Ratings Characteristics Maximum Non Repetitive Surge Current 55 Versus Pulse Train Duration. Initial T J= C 5 No Voltage Reapplied 45 Rated V RRM Reapplied THF.. Serie s Pulse Train Duration (s) Fig. 6 - Maximum Non-Repetitive Surge Current THF.. Serie s R thjc () =.69 K/ W 1 Fig. 8 - Current Ratings Characteristics Revision: 29-Sep-15 4 Document Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT /doc?

5 5 3 1 RMS Lim it THF.. Serie s T = C J 1 K/ W 1.5 K/W 2 K/ W 3 K/W 5 K/W 7 K/ W R =.3 K/ W - Delta R Maximum Allowable Ambient Temperature ( C).7 K/W.5 K/W Fig. 9 - Forward Power Loss Characteristics 1 RMS Limit THF.. Series T = C J.5K/ W.7K/W K/ W 1.5K/W 2K/W 3K/W 5K/W.3K/W R =.2 K/ W - Delta R Maximum Allowable Ambient Temperature ( C) Fig. - Forward Power Loss Characteristics 1 5 At Any Rated Load Condition And With Rated V RRM Applied Following Surge. Initial T J= Hz.83 5 Hz. s THF.. Series 3 1 Number Of Equal Amplitude Half Cycle Current Pulses (N) Fig Maximum Non-Repetitive Surge Current Maximum Non Repetitive Surge Current 1 Versus Pulse Train Duration. Initial T J = C No Voltage Reapplied Rated V RRM Reapplied 5 3 THF.. Series Pulse Train Duration (s) Fig Maximum Non-Repetitive Surge Current Revision: 29-Sep-15 5 Document Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT /doc?

6 T85HF.. Series R thjc () =.62 K/W T85HF.. Se rie s R thjc () =.62 K/ W 1 Fig Current Ratings Characteristics Fig Current Ratings Characteristics RM S Limit T85HF.. Serie s T = C J 1 K/ W 1.5 K/ W 2 K/ W 3 K/ W R =.2 K/ W - Delta R Maximum Allowable Ambient Temperature ( C).7 K/W 5 K/ W 7 K/ W.5 K/W.3 K/W Fig Forward Power Loss Characteristics 1 RMSLimit T85HF.. Serie s T = C J.5K/ W.7K/ W 1K/ W Maximum Allowable Ambient Temperature ( C).3K/W 1.5K/W 2K/W 3K/ W 5K/ W R =.2 K/ W - Delta R Fig Forward Power Loss Characteristics Revision: 29-Sep-15 6 Document Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT /doc?

7 At Any Rated Load Condition And With Rated V RRM Applied Following Surge. Initial T J= Hz.83 5 Hz. s T85HF.. Serie s 1 Number Of Equal Amplitude Half Cycle Current Pulses (N) Fig Maximum Non-Repetitive Surge Current THF.. Series R thjc () =.47 K/W 1 Fig Current Ratings Characteristics Maximum Non Repetitive Surge Current Versus Pulse Train Duration. Initial T J = C No Voltage Reapplied Rated V RRM Reapplied T85HF.. Serie s Pulse Train Duration (s) Fig Maximum Non-Repetitive Surge Current THF.. Serie s R thjc () =.47 K/ W Fig. - Current Ratings Characteristics 1 RMS Limit 5 3 THF.. Series T J = C Maximum Allowable Ambient Temperature ( C).7 K/ W 1 K/W 1.5 K/ W 2 K/W 3 K/ W 5 K/ W.5 K/W.3 K/W R =.2 K/ W - Delta R Fig Forward Power Loss Characteristics Revision: 29-Sep-15 7 Document Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT /doc?

8 1 1 1 RMS Limit THF.. Series T = C J R =.2 K/W - Delta R.3 K/W.5 K/ W.7 K/ W 1 K/ W 1.5 K/ W 2 K/ W 3 K/ W 5 K/ W Maximum Allowable Ambient Temperature ( C) Fig Forward Power Loss Characteristics At Any Rated Load Condition And With Rated V RRM Applied Following Surge. Initial T J= Hz.83 5 Hz. s THF.. Se ries 1 Number Of Equal Amplitude Half Cycle Current Pulses (N) Fig Maximum Non-Repetitive Surge Current Instantaneous Forward Current (A) T = 25 C J T = C J THF.. Serie s Instantaneous Forward Voltage (V) Fig Forward Voltage Drop Characteristics Maximum Non Repetitive Surge Current Versus Pulse Train Duration. Initial T J = C No Voltage Reapplied Rated V RRM Reapplied THF.. Serie s Pulse Train Duration (s) Fig Maximum Non-Repetitive Surge Current Instantaneous Forward Current (A) T J= 25 C T J= C THF.. Series Instantaneous Forward Voltage (V) Fig Forward Voltage Drop Characteristics Revision: 29-Sep-15 8 Document Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT /doc?

9 Instantaneous Forward Current (A) T = 25 C J T = C J T85HF.. Series Instantaneous Forward Current (A) T = 25 C J T J= C THF.. Serie s Instantaneous Forward Voltage (V) Instantaneous Forward Voltage (V) Fig Forward Voltage Drop Characteristics Fig Forward Voltage Drop Characteristics Transient Thermal Impedance Z thjc (K/W) Ste a d y Sta t e Va lue : R thjc = 1.36 K/ W THF.. Serie s R thjc =.69 K/ W THF.. Series 1 R thjc =.62 K/ W R thjc =.47 K/ W ( Operation) T85HF.. Serie s THF.. Series Square Wave Pulse Duration (s) Fig Thermal Impedance Z thjc Characteristics ORDERING INFORMATION TABLE Device code VS- T HF product 2 - Module type 3 - Current rating 4 - Circuit configuration (see Circuit Configuration table) 5 - Voltage code x = V RRM CIRCUIT CONFIGURATION CIRCUIT DESCRIPTION CIRCUIT CONFIGURATION CODE CIRCUIT DRAWING Single diode HF + - Dimensions LINKS TO RELATED DOCUMENTS /doc?95313 Revision: 29-Sep-15 9 Document Number: ARE SUBJECT TO SPECIFIC DISCLAIMERS, SET FORTH AT /doc?

10 Outline Dimensions D-55 T-Module Diode Standard and Fast Recovery DIMENSIONS in millimeters (inches) 25 ± (.93) 3 (.12) 41 (1.61) MAX. 11 (.43) 18 (.71) + 27 (1.6) 15 (.59) 3.9 (.15) 8 (.31) - M5 3 (1.18) Document Number: For technical questions, contact: indmodules@vishay.com Revision: 1-Jul-8 1

11 Legal Disclaimer Notice Vishay Disclaimer ALL PRODUCT, PRODUCT SPECIFICATIONS AND DATA ARE SUBJECT TO CHANGE WITHOUT NOTICE TO IMPROVE RELIABILITY, FUNCTION OR DESIGN OR OTHERWISE. Vishay Intertechnology, Inc., its affiliates, agents, and employees, and all persons acting on its or their behalf (collectively, 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 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 Vishay s knowledge of typical requirements that are often placed on Vishay 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 Vishay s terms and conditions of purchase, including but not limited to the warranty expressed therein. 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. Revision: 13-Jun-16 1 Document Number:

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