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  • J06M_A.png

J06M12S15A

● High efficiency, with low output ripple and noise.
● Ultra-wide input voltage range, 2:1
● No external components required
● Continuous short-circuit protection (self-resetting)
  • Product Description
  • Parameter Introduction
  • Precautions
  • High efficiency, low output ripple noise.
    Ultra-wide voltage input 2:1
    No external components required.
    Continuous short-circuit protection (self-resetting)
    Operating temperature range: -40°C to +85°C
    Isolation voltage up to 1500 VDC
    Metallic shielding package
    High reliability (MTTF ≥ 1 million hours)
    International standard pin configuration
    100% full-load aging
  • Model number

    Rated Input Voltage (V)

    Rated output

    Typical Efficiency (%)

    Maximum capacitive load

    (uF)

     

    Nominal

    Scope

    Maximum

    Voltage (V)

    Current (mA)

     

     

     

     

     

     

     

    Minimum

    Maximum

    Minimum

    Typical

     

    J06M05D05A

    5

    4.5~9

    10

    ±5

    0

    ±600

    79

    82

    2200

    J06M05D09A

    ±9

    0

    ±333

    80

    82

    820

    J06M05D12A

    ±12

    0

    ±250

    82

    84

    470

    J06M05D15A

    ±15

    0

    ±200

    81

    83

    220

    J06M05D24A

    ±24

    0

    ±125

    82

    84

    100

    J06M05S05A

    5

    0

    1200

    78

    80

    3300

    J06M05S09A

    9

    0

    667

    79

    81

    1000

    J06M05S12A

    12

    0

    500

    81

    84

    680

    J06M05S15A

    15

    0

    400

    82

    84

    470

    J06M05S24A

    24

    0

    250

    81

    83

    220

    J06M12D05A

    12

    9~18

    20

    ±5

    0

    ±600

    80

    82

    2200

    J06M12D09A

    ±9

    0

    ±333

    82

    84

    820

    J06M12D12A

    ±12

    0

    ±250

    83

    85

    470

    J06M12D15A

    ±15

    0

    ±200

    83

    85

    220

    J06M12D24A

    ±24

    0

    ±125

    84

    86

    100

    J06M12S03A

    3.3

    0

    1818

    76

    78

    4700

    J06M12S05A

    5

    0

    1200

    80

    82

    3300

    J06M12S09A

    9

    0

    667

    82

    84

    1000

    J06M12S12A

    12

    0

    500

    83

    85

    680

    J06M12S15A

    15

    0

    400

    84

    87

    470

    J06M12S24A

    24

    0

    250

    83

    85

    220

    J06M24D05A

    24

    18~36

    40

    ±5

    0

    ±600

    81

    83

    2200

    J06M24D09A

    ±9

    0

    ±333

    82

    84

    820

    J06M24D12A

    ±12

    0

    ±250

    83

    85

    470

    J06M24D15A

    ±15

    0

    ±200

    83

    85

    220

    J06M24D24A

    ±24

    0

    ±125

    84

    86

    100

    J06M24S03A

    3.3

    0

    1818

    77

    79

    4700

    J06M24S05A

    5

    0

    1200

    80

    82

    2200

    J06M24S09A

    9

    0

    667

    83

    84

    1000

    J06M24S12A

    12

    0

    500

    84

    87

    680

    J06M24S15A

    15

    0

    400

    84

    87

    470

    J06M24S24A

    24

    0

    250

    84

    86

    220

    J06M48D05A

    48

    36~72

    75

    ±5

    0

    ±600

    81

    83

    2200

    J06M48D09A

    ±9

    0

    ±333

    82

    84

    820

    J06M48D12A

    ±12

    0

    ±250

    83

    85

    470

    J06M48D15A

    ±15

    0

    ±200

    84

    86

    220

    J06M48D24A

    ±24

    0

    ±125

    84

    86

    100

    J06M48S03A

    3.3

    0

    1818

    78

    80

    4700

    J06M48S05A

    5

    0

    1200

    81

    83

    3300

    J06M48S09A

    9

    0

    667

    83

    85

    1000

    J06M48S12A

    12

    0

    500

    85

    87

    680

    J06M48S15A

    15

    0

    400

    85

    87

    470

    J06M48S24A

    24

    0

    250

    85

    87

    220

    Note: * The capacitive load is the same for both the positive and negative outputs.

     

     

    Output characteristics

    Project

    Conditions

    Minimum

    Typical

    Maximum

    Unit

    Output power

     

    0

     

    3

    W

    Output positive voltage accuracy

     

    ±1

    ±2

    %

    Output negative voltage accuracy

     

    ±2

    ±3

    Line regulation of voltage

    Full load, input voltage variation from low to high

    ±0.2

    ±0.5

    Load Regulation Rate

    Under nominal input conditions, the load varies from 10% to 100%.

     

    ±0.5

    ±1

     

    Temperature drift coefficient

    Under rated load

     

    ±0.03

    %/°C

    Ripple & Noise

    Bandwidth: 20 MHz, using the parallel‑line method.

     

    50

    100

    mVp-p

    Switching frequency

    Rated input voltage

     

    320

    350

    KHz

    Output short-circuit protection

      Continuous short-circuit protection (self-resetting)

    Input Filtering Type

      Pi-type filter

    Hot-swappable

      Not supported

     

     

    Input characteristics

    Project

    Conditions

    Minimum

    Typical

    Maximum

    Unit

    Input Undervoltage Protection

    5VDC input

    3

    3.8

      

    12VDC input

    6.6

    7.3

      

    24 VDC input

    13.5

    14.8

    VDC

    48VDC input

    27

    30

     

    Starting voltage

    5VDC input

     

    4

    4.5

    12VDC input

     

    8.2

    9

    24 VDC input

     

    16.2

    18

    48VDC input

    33

    36

    Impulse Voltage (1 sec. max)

    5VDC input

    -0.7

     

    12

    12VDC input

     

    25

    24 VDC input

    50

    48VDC input

     

    100

    No-load current

    5VDC input

     

    20

    30

    mA

    12VDC input

     

    8

    13

    24 VDC input

     

    4

    7

    48VDC input

     

    3

    6

     

    EMC characteristics

    EMI

    Conducted interference

    CISPR 32/EN 55032 Class B (see EMI circuit recommendations for details)

    Radiated interference

    CISPR 32/EN 55032 Class B (see EMI circuit recommendations for details)

    EMS

    Electrostatic discharge

    IEC/EN61000-4-2 CONTACT ±4KV

    Radiation immunity

    IEC/EN61000-4-3 10V/M

    Pulse group immunity

    IEC/EN 61000-4-4 ±2 kV (see EMS circuit recommendations for details)

    Surge immunity

    IEC/EN 61000-4-5 Line-to-Line ±2 kV (see EMS circuit recommendations for details)

    Conducted Emission Immunity

    IEC/EN61000-4-6 3 VR. M. S

    Immunity to voltage sags, dips, and short-duration interruptions

    IEC/EN61000-4-29 0%, 70%

     

     

    Insulation properties

    Project

    Test conditions

    Minimum

    Typical

    Maximum

    Unit

    Insulation resistance

    Input–output, insulation voltage 500 VDC

    1000

     

     

    Insulation voltage

    Input–output, test duration: 1 minute, leakage current less than 1 mA.

    1500

     

     

    VDC

    Input/Output – Enclosure, test duration: 1 minute, leakage current less than 1 mA.

    1000

      

     

    General Characteristics

    Project

    Conditions

    Minimum

    Typical

    Maximum

    Unit

    Storage humidity

    No condensation

    5

     

    95

    %

    Operating temperature

     

    -40

     

    85

     

    °C

    Storage temperature

     

    -55

     

    125

    Shell temperature rise during operation

     

     

    20

    30

    Pin soldering temperature resistance

    Solder joint is 1.5 mm from the housing; apply for 10 seconds.

     

     

    300

    MTTF

    MIL-HDBK-217F@25℃

    100

     

     

    Ten thousand hours

    Weight

     

     

    12

     

    Kerl

    Cooling method

    Natural air cooling

    Housing material

    Black metal casing

  • Avoid operating under no-load conditions whenever possible: The external capacitor C2 at the output should not have an excessively large capacitance; otherwise, it may cause overcurrent during module startup or result in poor start-up performance. The specific value should be selected based on the capacitor’s datasheet.

    The product does not support parallel operation for power boosting.

    In applications with stringent ripple‑noise requirements, an external LC filter should be used. The resonant frequency of the LC filter must be significantly lower than the switching frequency of the DC/DC converter to prevent mutual interference that could increase output ripple or damage the module, as shown in the figure.

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