Solid State/Timer H3DK-G

Brand :
OMRON

Caution

    Product Description

    Solid state timer H3DK-G

    [Features]
    · DIN22.5 mm width standard timer series for use in the control panel.
    · AC/DC free power source compatible (AC/DC24 to 240V).
    · DC12V powered type has been added every series.
    · UL, CSA, CCC acquired, EN61812-1 compatible. Compatible with the CE mark.
    · Conforms with the EMC standard EN61812-1, so can be used in an industrial environment but also in residential, sales and light industry.
    · A terminal construction with secure screw fittings that prevents against hazardous contact (EN50274 compliant).

    Specifications of solid state timer H3DK-G AC/DC24-240

    External appearance of H3DK-G

    External appearance of H3DK-G

    • Mounting method: DIN rail mounting
    • Safety Standard: cURus (UL508CSA C22.2 No. 14) / EN61812-1 / IEC60664-1 4 kV/2 / EN50274
    • Accessories: name label
    Dimensional drawing of H3DK-G

    Dimensional drawing of H3DK-G

     

    (Unit: mm)

     

    Rating

    Power Supply Voltage*1·24 to 240 V AC/DC, 50/60 Hz*2
    · 12 V DC *2
    Allowable Voltage Fluctuation Range·AC/DC24 to 240 V: 85% to 110% of rated voltage
    ·12 V DC: 90% to 110% of rated voltage
    Power Supply ResetMinimum power supply open time: 0.5 s
    Release voltage10% or less of rated voltage
    Power ConsumptionType H3DK-GAt 240 V AC: 6.6 VA or less*3
    Type H3DK-GAAt 12 V DC: 0.9 W or less
    Control outputContact output (time limit [relay], 1c [circuit], 1c [△ circuit]):
    250 V AC 5 A resistant load (cosø = 1), 30 V DC 5 A resistant load*4
    125 V DC 0.15 A max.resistant load, 125 V DC 0.1 A max. L/R = 7 ms
    Minimum compatible load: 5 V DC 10 mA (P level, reference value)
    Contact materials: Ag alloy + Au plating
    Operating Temperature Range-20 to +55°C (No freezing)
    Storage temperature range-40 to +70°C (No freezing)
    Operating ambient humidity25 to 85%
    • *1 When the power supply voltage is 24 V DC, there is an inrush current of approx. 0.25 A. Therefore, care must be taken when the power supply of the main body of the timer is switched for a non-contact output, such as a sensor.
    • *2 The ripple of DC power supply is 20% or less.
    • *3 Refer to the catalog for reference power consumption at DC.
    • *4 The control output is the rating of Type H3DK starter. When using 2 or more units in a row, refer to "Relationship Between Mounting Interval and Output Switching Capacity" in the catalog.

    Performance

    Variation in operating time±1% (percentage of maximum scale) or less
    Setting Error±10% (percentage of maximum scale) ±0.05 s or less
    Switching timeTotal error ± (25% of switching time +5 ms) or less
    Influence of voltage±0.5% (percentage of maximum scale) or less
    Variation in temperature fluctuation±2% (percentage of maximum scale) or less
    Insulation Resistance100 MΩ or more with 500 V DC ohmmeter
    Withstand Voltage2,000 V AC, 50/60 Hz, 1 min (between the charging metal part and the non-charging metal part)
    2,000 V AC, 50/60 Hz, 1 min (between the control output circuit and the operation circuit)
    1,000 V AC, 50/60 Hz, 1 min (between the discontinuous contacts)
    Impulse voltage·AC/DC 24 to 240 V: 5 kV (between the power supply terminals), 5 kV (between the conductive terminal and the exposed non-charged metal part)
    ·12 V DC: 1 kV (between the power supply terminals), 1.5 kV (between the conductive terminal and the exposed non-charged metal part)
    Noise ResistanceSquare wave noise by noise simulator (pulse width: 100 ns/1 µs, startup: 1 ns) ±1.5 kV
    Static electricity resistance4 kV (malfunction), 8 kV (destruction)
    VibrationDurability10 to 55 Hz with 0.75-mm single amplitude each in 3 directions for 2 hours each
    Malfunction10 to 55 Hz, 0.5-mm single amplitude, 3 directions, 10 min each
    ShockDurability1,000 m/s^2, 6 directions, 3 cycles each
    Malfunction100 m/s^2, 6 directions, 3 cycles each
    LifespanMechanical10 million operations min. (under no load at 1,800 operations/h)
    Electrical100,000 cycles or more (250 V AC 5 A resistant load, opening/closing frequency 360 cycles/h)
    Protective structureIP30 (IP20 for terminals)
    WeightApprox. 120 g

    Applicable Standard

    Safety StandardcURus: UL508/CSA C22.2 No. 14
    EN50274: Finger protection, hand proof vertical only
    EN61812-1: contamination degree 2; overvoltage category III
    CCC: GB/T 14,048.5 pollution degree 2; overvoltage category III *
    LR: Test Specification No. 1-2002 category ENV1.2
    EMC(EMI)
    Radiated Emissions
    Conducted Emissions
    Harmonic current
    Voltage fluctuation, flicker
    (EMS)
    Electrostatic discharge immunity
    Electric field strength immunity
    Burst noise immunity
    Surge immunity
    Conductive noise immunity
    Voltage dip / power interruption immunity
    EN61812-1
    EN55011 class B
    EN55011 class B
    EN61000-3-2
    EN61000-3-3
    EN61812-1
    IEC61000-4-2
    IEC61000-4-3
    IEC61000-4-4
    IEC61000-4-5
    IEC61000-4-6
    IEC61000-4-11

    Conditions for obtaining CCC

    Recommended fuse0216005 (250 V AC, 5 A) made by Littelfuse
    Rated operating voltage Ue
    Rated operating current Ie
    AC-15: Ue: 250 V AC, Ie: 3 A
    AC-13: Ue: 250 V AC, Ie: 5 A
    DC-13: Ue: 30 V DC, Ie: 0.1 A
    Rated Insulation Voltage250 V
    Rated impulse voltage (altitude: up to 2,000 m)4 kV (at 240 V AC)
    Conditional short circuit current1,000 A

    Relationship between the mounting interval of 2 or more H3DK units and the output switching capacity (reference value)

    See the figure below for the relationship between the mounting interval and the load current.
    Note that using the timer under higher load conditions may shorten the lifespan of internal components due to temperature rise inside the timer.

    Test method

    • Sample: Type H3DK-G
    • Applied voltage: 240 V AC
    • Mounting interval: 0 mm, 5 mm, 10 mm, and 50 mm
    Relationship between the mounting interval and the load current

    Relationship between the mounting interval and the load current

    Test method image

    Test method image

    Connection

    Internal connection diagram of H3DK-G

    Internal connection diagram of H3DK-G

    Terminal layout of H3DK-G

    Terminal layout of H3DK-G

    * The power supply terminal has no polarity.

    Names and functions of each part

    Front view of H3DK-G

    Front view of H3DK-G

    Bottom view of H3DK-G

    Bottom view of H3DK-G

     

    • *1. For terminal connections,use a single wire of 2.5 mm^2 or less or bar terminals with insulation sleeves.
    • To ensure the withstand voltage after connection, set the length of the exposed conductive portion to be inserted into the terminal to 8 mm or less.
    • *2. Screw tightening torque / recommended torque: 0.49 N⋅m, maximum torque: 0.98 N⋅m max

     

    For single wire

    For single wires of 2.5 mm^2 or less

    For bar terminals with insulation sleeves

    For bar terminals with insulation sleeves

    Cautions

    • * There is a risk of ignition or explosion due to arcing or heat generation in the relay caused by opening and closing. Do not use in an atmosphere of flammable or explosive gases.
    • * The H3DK series has a power supply transformer-less system. Note that you may get an electric shock if you touch the input terminal while the power supply is applied.
    • * The inrush current differs depending on the type of load, which affects the opening and closing frequency of the contact and the number of times it is used. Check the inrush current together with the rated current, and design the circuit with a margin.
    • * The lifespan of the output relay varies greatly depending on the switching capacity and switching conditions, so be sure to use it within the rated load and the number of electrical lifespan cycles, taking into consideration the actual usage conditions. If it is used beyond its lifespan, contact welding or burnout may occur. Be sure to use the load current below the rated value. When using a heater, etc., be sure to use a thermo switch in the load circuit.
    • * Do not remove the outer case.
    • * Mild electric shock, fire, and equipment failure may occur in rare cases. Do not disassemble, modify, repair, or touch the inside.
    • *For product information other than the above, refer to the catalog.
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