V RSM = 400 V, I F(AV) = 2.0 A General-Purpose Rectifier Diode. Description. Package. Features. Applications (1) (2) (1) Cathode (2) Anode

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Transcription:

V RSM = 400 V, I F(AV) = A General-Purpose Rectifier Diode Data Sheet Description The is a 400 V, A general-purpose rectifier diode with low loss characteristics. This rectifier diode is for a commercial power supply. Package SJP Features V RSM ---------------------------------------------------- 400 V I F(AV) ------------------------------------------------------ A V F (I F = A) ----------------------------------- 0.94 V typ. Bare Lead Frame: Pb-free (RoHS Compliant) Suitable for High Reliability and Automotive Requirement Applications Rectification Circuit Reverse Battery Protection Circuit (1) (1) (2) (2) (1) Cathode (2) Anode Not to scale -DSE Rev.1.1 SANKEN ELCTRIC CO., LTD. 1

Absolute Maximum Ratings Unless otherwise specified, T A = 25 C. Parameter Symbol Rating Unit Conditions Peak Repetitive Reverse Voltage V RSM 400 V Repetitive Reverse Voltage V RM 400 V Average Forward Current I F(AV) A See Figure 1 and Figure 2 Surge Forward Current I FSM 45 A Half cycle sine wave, positive side, 10 ms, 1 shot I 2 t Limiting Value I 2 t 10.1 A 2 s 1 ms t 10ms Junction Temperature T J 40 to 150 C Storage Temperature T STG 40 to 150 C Electrical Characteristics Unless otherwise specified, T A = 25 C. Parameter Symbol Conditions Min. Typ. Max. Unit Forward Voltage Drop V F I F = A 0.94 1.10 V Reverse Leakage Current I R V R = V RM 10 µa Reverse Leakage Current Under High Temperature H I R V R = V RM, T J = 150 C 50 µa Thermal Resistance (1) R th(j-l) 20 C/W (1) R th (J-L) is thermal resistance between junction and lead. -DSE Rev.1.1 SANKEN ELCTRIC CO., LTD. 2

Forward Current, I F (A) Reverse Current, I R (A) Average Forward Current, I F(AV) (A) Average Forward Current, I F(AV) (A) Rating and Characteristic Curves 3.0 3.0 2.5 DC 2.5 DC t/t = 1/2 t/t = 1/2 1.5 t/t = 1/3, sine wave 1.5 t/t = 1/3, sine wave 1.0 t/t = 1/6 1.0 t/t = 1/6 0.5 T J = 150 C 0.5 T J = 150 C t T t T 0.0 50 75 100 125 150 0.0 50 75 100 125 150 Case Temperature, T C ( C) Case Temperature, T C ( C) Figure 1. T C vs. I F(AV) Typical Characteristics (V R = 0 V) Figure 2. T C vs. I F(AV) Typical Characteristics (V R = 400 V) 10 1.E-05 1.E-06 1 1.E-07 T J = 125 C 0.1 T J = 150 C 1.E-08 T J = 100 C 0.01 T J = 100 C 1.E-09 T J = 25 C T J = 60 C T J = 25 C 0.001 0.0 0.5 1.0 1.5 Forward Voltage, V F (V) 1.E-10 0 100 200 300 400 Reverse Voltage, V R (V) Figure 3. V F vs. I F Typical Characteristics Figure 4. V R vs. I R Typical Characteristics -DSE Rev.1.1 SANKEN ELCTRIC CO., LTD. 3

2.15 +0.1-0.2 0.05 +0.1-0.05 2.6±0.2 Physical Dimensions SJP Package 4.5±0.2 1.3±0.4 min. 1.3±0.4 1.5±0.2 NOTES: 5.0 +0.4-0.1 - Dimensions in millimeters - Bare lead frame: Pb-free (RoHS compliant) - When soldering the products, be sure to minimize the working time, within the following limits: Flow: 260 ± 5 C / 10 ± 1 s, 2 times Soldering Iron: 380 ± 10 C / 3.5 ± 0.5 s, 1 time - MSL: JEDEC LEVEL1 SJP Land Pattern Example 4.0 to 4.2 NOTE: - Dimensions in millimeters -DSE Rev.1.1 SANKEN ELCTRIC CO., LTD. 4

Marking Diagram Cathode Mark Specific Device Code (See Table 1) YMDD Lot Number: Y is the last digit of the year of manufacture (0 to 9) M is the month of the year (1 to 9, O, N, or D) DD is the day of the month (01 to 31) Table 1. Specific Device Code Specific Device Code MH4 Part Number -DSE Rev.1.1 SANKEN ELCTRIC CO., LTD. 5

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If considering use of the Sanken Products for any applications that require higher reliability (traffic signal control systems or equipment, disaster/crime alarm systems, etc.), you must contact a Sanken sales representative to discuss the suitability of such use and put your signature, or affix your name and seal, on the specification documents of the Sanken Products and return them to Sanken, prior to the use of the Sanken Products. The Sanken Products are not intended for use in any applications that require extremely high reliability such as: aerospace equipment; nuclear power control systems; and medical equipment or systems, whose failure or malfunction may result in death or serious injury to people, i.e., medical devices in Class III or a higher class as defined by relevant laws of Japan (collectively, the Specific Applications ). 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