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SCS215AJ SiC Schottky Barrier Diode *1 T c =100°C, T j =150°C, Duty cycle=10% *2 T c =25°C 3) High-speed switching possible Outline Inner circuit Packaging specifications LPT(L) <TO-263AB> 2) Reduced temperature dependence 650V 15A Applications V R I F Q C Features 23nC 1) Shorter recovery time A W Symbol PFC Boost Topology Secondary Side Rectification Data Center PV Power Conditioners Parameter V V A A A V RM Embossed tape 330 Type Packaging Reel size (mm) TLL SCS215AJ Basic ordering unit (pcs) Tape width (mm) 24 1 000 Marking Packing code Unit Value Repetitive peak forward current Total power dissipation Junction temperature V R I F I FSM I FRM P D 650 650 15 60 100 52 Absolute maximum ratings (T j = 25°C) Reverse voltage (repetitive peak) Reverse voltage (DC) Continuous forward current (T c = 128°C) PW=10ms sinusoidal, T j =25°C PW=10s square, T j =25°C T j 41 Range of storage temperature T stg i 2 t value PW=10ms, T j =25°C PW=10ms, T j =150°C i 2 dt A PW=10ms sinusoidal, T j =150°C 8.4 55 to 175 200 °C 175 A 2 s A 2 s °C 14 Surge non- repetitive forward current * 1 * 2 (3) (1) (4) (2) (1) Cathode (2) N / C (3) Cathode (4) Anode (2) (3) (4) (1) www.rohm.com © 2018 ROHM Co., Ltd. All rights reserved. TSZ2211114001 1/5 TSQ50240-SCS215AJ 13.Apr.2018 - Rev.002 Datasheet

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  • SCS215AJSiC Schottky Barrier Diode

    *1 Tc=100°C, Tj=150°C, Duty cycle=10% *2 Tc=25°C

    3) High-speed switching possible

    Outline

    Inner circuit

    Packaging specifications

    LPT(L)

    2) Reduced temperature dependence

    650V15A

    Applications

    VRIF

    QC

    Features

    23nC

    1) Shorter recovery time

    A

    W

    Symbol

    ・PFC Boost Topology

    ・Secondary Side Rectification

    ・Data Center

    ・PV Power Conditioners

    Parameter

    V

    V

    A

    A

    A

    VRM

    Embossed tape

    330

    Type

    Packaging

    Reel size (mm)

    TLL

    SCS215AJ

    Basic ordering unit (pcs)

    Tape width (mm) 24

    1 000

    Marking

    Packing code

    UnitValue

    Repetitive peak forward current

    Total power dissipation

    Junction temperature

    VR

    IF

    IFSM

    IFRM

    PD

    650

    650

    15

    60

    100

    52

    Absolute maximum ratings (Tj = 25°C)

    Reverse voltage (repetitive peak)

    Reverse voltage (DC)

    Continuous forward current (Tc= 128°C)

    PW=10ms sinusoidal, Tj=25°C

    PW=10s square, Tj=25°C

    Tj

    41

    Range of storage temperature Tstg

    i2t valuePW=10ms, Tj=25°C

    PW=10ms, Tj=150°C∫i2dt

    APW=10ms sinusoidal, Tj=150°C

    8.4

    55 to 175

    200

    °C175

    A2s

    A2s

    °C

    14

    Surge non-repetitive forwardcurrent

    *1

    *2

    (3)

    (1)

    (4)

    (2)

    (1) Cathode(2) N / C(3) Cathode(4) Anode

    (2) (3) (4)

    (1)

    www.rohm.com© 2018 ROHM Co., Ltd. All rights reserved.TSZ22111・14・001 1/5

    TSQ50240-SCS215AJ13.Apr.2018 - Rev.002

    Datasheet

  • SCS215AJ

    Ws/KRth2 7.34E-01 Cth2 3.36E-03

    Rth3 5.25E-01 Cth3 6.36E-02

    Rth1 2.33E-01

    K/W

    Cth1 2.39E-03

    Typical Transient Thermal Characteristics

    Symbol Value Unit Symbol Value Unit

    Reverse current

    Total capacitance

    Total capacitive charge

    18

    nC

    Switching time tC VR=400V,di/dt=350A/s -

    IR

    C

    UnitMax.Min.

    Values

    -

    -

    1.55

    V

    - V

    -

    -

    -

    Electrical characteristics (Tj = 25°C)

    650VDC IR =3.0mA

    Parameter Conditions

    DC blocking voltage

    Forward voltage

    Typ.

    IF=15A,Tj=25°C

    Symbol

    VF IF=15A,Tj=150°C - 1.55

    A

    VR=600V,Tj=25°C

    V

    3

    1.63IF=15A,Tj=175°C

    VR=600V,Tj=175°C

    V

    300-

    -

    -

    1.35

    -

    -

    A

    45 - A

    -105

    VR=600V,Tj=150°C

    QC

    550

    VR=600V,f=1MHz -

    VR=400V,di/dt=350A/s

    -

    23 --

    pF56

    - ns

    pFVR=1V,f=1MHz

    Thermal characteristics

    Parameter Symbol ConditionsValues

    UnitMin. Typ. Max.

    1.5 °C/WThermal resistance Rth(j-c) - - 1.2

    PD

    Tj Tc

    Ta

    Rth,nRth1

    Cth1 Cth2 Cth,n

    www.rohm.com© 2018 ROHM Co., Ltd. All rights reserved.TSZ22111・15・001 2/5

    TSQ50240-SCS215AJ13.Apr.2018 - Rev.002

    Datasheet

  • SCS215AJ

    Electrical characteristic curves

     

    Fig.3 VR - IR Characteristics

    0.001

    0.01

    0.1

    1

    10

    100

    1000

    0 200 400 600

    Ta=125ºC

    Ta=175ºC

    Ta=75ºCTa=25ºC

    Ta= 25ºC

    0.001

    0.01

    0.1

    1

    10

    100

    0.0 0.5 1.0 1.5 2.0 2.5

    Pulsed

    Ta=125ºCTa=175ºC

    Ta=75ºC

    Ta=25ºC

    Ta= 25ºC

    0

    5

    10

    15

    20

    0.0 0.5 1.0 1.5 2.0 2.5

    Pulsed

    Ta=125ºC

    Ta=175ºC

    Ta=75ºC

    Ta=25ºC

    Ta= 25ºC

    1

    10

    100

    1000

    0.01 0.1 1 10 100 1000

    Ta=25ºCf=1MHz

    Fig.1 VF - IF Characteristics

    Forw

    ard

    Cur

    rent

    : I F

    [A]

    Forward Voltage : VF [V]

    Fig.2 VF - IF Characteristics

    Forw

    ard

    Cur

    rent

    : I F

    [A]

    Forward Voltage : VF [V]

    Rev

    erse

    Cur

    rent

    : I R

    [A]

    Reverse Voltage : VR [V]

    Fig.4 VR - Ct Characteristics

    Cap

    acita

    nce

    Betw

    een

    Term

    inal

    s : C

    t[p

    F]

    Reverse Voltage : VR [V]

    www.rohm.com© 2018 ROHM Co., Ltd. All rights reserved.TSZ22111・15・001 3/5

    TSQ50240-SCS215AJ13.Apr.2018 - Rev.002

    Datasheet

  • SCS215AJ

    Electrical characteristic curves

    0.01

    0.1

    1

    10

    1.E-4 1.E-3 1.E-2 1.E-1 1.E+0 1.E+1 1.E+2 1.E+3

    Ta=25ºCSingle Pulse

    0

    20

    40

    60

    80

    100

    120

    25 50 75 100 125 150 175

    0

    20

    40

    60

    80

    100

    120

    140

    25 50 75 100 125 150 175

    Duty=0.1

    Duty=0.2

    Duty=0.5

    Duty=0.8D.C.

    Fig.5 Typical Transient Thermal Resistance vs. Pulse Width

    Tran

    sien

    t The

    rmal

    Res

    ista

    nce

    : Rth

    (j-c)

    [ºC/W

    ]

    Pulse Width : PW [s]

    Fig.6 Power Dissipation

    Pow

    er D

    issi

    patio

    n [W

    ]

    Case Temperature : Tc [ºC]

    Peak

    For

    war

    d C

    urre

    nt :

    I P[A

    ]

    Case Temperature : Tc [ºC]

    0

    20

    40

    60

    80

    100

    120

    140

    25 50 75 100 125 150 175

    Duty=0.1

    Duty=0.2

    Duty=0.5

    Duty=0.8D.C.

    Fig.7*3 Maximum peak forward current derating curve IP - Tc

    Fig.8*4 Typical peak forward current derating curve IP - Tc (Not guaranteed)

    *3 Based on max Vf, max Rth(j-c)Valid for switching of above 10kHz, excluding D.C. curve.

    *4 Based on typ Vf, typ Rth(j-c)Typical value, not guaranteedValid for switching of above 10kHz, excluding D.C. curve

    Peak

    For

    war

    d C

    urre

    nt :

    I P[A

    ]

    Case Temperature : Tc [ºC]

    www.rohm.com© 2018 ROHM Co., Ltd. All rights reserved.TSZ22111・15・001 4/5

    TSQ50240-SCS215AJ13.Apr.2018 - Rev.002

    Datasheet

  • SCS215AJ

    Electrical characteristic curves

    Symplified forward characteristic model

    A

    Symbol

    a0

    Typical Value

    9.35E-01

    -1.12E-03

    2.65E-02

    6.80E-05

    Unit

    V

    30

    /°C2

    a1

    b0

    b1

    b2 7.20E-07

    V/°C

    /°C

    10

    100

    1000

    1.E-5 1.E-4 1.E-3 1.E-2

    Ta=25ºCSingle Pulse

    0

    2

    4

    6

    8

    10

    12

    14

    0 200 400 600

    Fig.9 Surge non-repetitive forward current vs. Pulse width (Sinusoidal waveform)

    Surg

    e no

    n-re

    petit

    ive

    forw

    ard

    curr

    ent :

    I FSM

    [A]

    Pulse Width : PW [s]

    Fig.10 Typical capacitance store energy

    Cap

    acita

    nce

    stor

    ed e

    nerg

    y : E

    C[

    J]

    Reverse Voltage : VR [V]

    Forw

    ard

    Cur

    rent

    : I F

    Forward Voltage : VF

    Fig.11 Equivalent forward current curve

    VF = Vth + Rdiff IF

    Vth ( Tj ) = a0 + a1 TjRdiff ( Tj ) = b0 + b1 Tj + b2 Tj2

    Vth 1/Rdiff

    Tj in ºC; -55 ºC < Tj < ºC ; IF <

    www.rohm.com© 2018 ROHM Co., Ltd. All rights reserved.TSZ22111・15・001 5/5

    TSQ50240-SCS215AJ13.Apr.2018 - Rev.002

    Datasheet

  • R1102Swww.rohm.com© 2015 ROHM Co., Ltd. All rights reserved.

    Notice

    ROHM Customer Support System http://www.rohm.com/contact/

    Thank you for your accessing to ROHM product informations. More detail product informations and catalogs are available, please contact us.

    N o t e s

    The information contained herein is subject to change without notice.

    Before you use our Products, please contact our sales representative and verify the latest specifica-tions :

    Although ROHM is continuously working to improve product reliability and quality, semicon-ductors can break down and malfunction due to various factors.Therefore, in order to prevent personal injury or fire arising from failure, please take safety measures such as complying with the derating characteristics, implementing redundant and fire prevention designs, and utilizing backups and fail-safe procedures. ROHM shall have no responsibility for any damages arising out of the use of our Poducts beyond the rating specified by ROHM.

    Examples of application circuits, circuit constants and any other information contained herein are provided only to illustrate the standard usage and operations of the Products. The peripheral conditions must be taken into account when designing circuits for mass production.

    The technical information specified herein is intended only to show the typical functions of and examples of application circuits for the Products. ROHM does not grant you, explicitly or implicitly, any license to use or exercise intellectual property or other rights held by ROHM or any other parties. ROHM shall have no responsibility whatsoever for any dispute arising out of the use of such technical information.

    The Products specified in this document are not designed to be radiation tolerant.

    For use of our Products in applications requiring a high degree of reliability (as exemplified below), please contact and consult with a ROHM representative : transportation equipment (i.e. cars, ships, trains), primary communication equipment, traffic lights, fire/crime prevention, safety equipment, medical systems, and power transmission systems.

    Do not use our Products in applications requiring extremely high reliability, such as aerospace equipment, nuclear power control systems, and submarine repeaters.

    ROHM shall have no responsibility for any damages or injury arising from non-compliance with the recommended usage conditions and specifications contained herein.

    ROHM has used reasonable care to ensur the accuracy of the information contained in this document. However, ROHM does not warrants that such information is error-free, and ROHM shall have no responsibility for any damages arising from any inaccuracy or misprint of such information.

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