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Samsung Ht As700 User Manual

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    Connection example with AC input device 
    Contact output type
    Non-contact output type
    Cautions when using lead switch with LED 
    Even when using input contact with embedded serial LED such as lead 
    switch with LED, make sure to supply voltage higher than ON voltage 
    to the PLC input terminal. Pay extra attention, in particular, when 
    connecting multiple switches in serial. 
    Input 
    terminal
    COM 
    terminal AC input unit
    Input 
    terminal
    COM 
    terminal AC input unit
    Lead switch with LED 
    ON voltage error  LED
    contact Input 
    terminal
    COM 
    terminal DC input unit
    Input power
     
    						
    							62
    Cautions when using 2 wired type
    Use a breeder resistor as below when the leakage current from 2 wired 
    type photoelectric switch or proximity switch keeps flowing into the 
    PLC.
    DC 12-24V type input unit
    (OFF voltage 2.5V, input impedance 3 
    KΩ)
    2 wired sensor
    DC input unit
    Since the OFF voltage of input is 2.5V, determine the R 
    value to set the voltage between COM terminal and input 
    terminal to be 2.5V or less.
    Input impedance is 3 
    KΩ
    For the resistor, W can be calculated as follows: 
    (Power supply voltage) 
    2
    W = RUse 3 to 5 times larger value.
    Breeder 
    resistor
    Internal CircuitInput 
    terminal
    COM 
    terminal
     7. 5
    R ≤ (KΩ)
    3I-2.5 3R
    I x≤ 2.5, 
    3 + R 
    I: Leakage current (mA)
    R: Breeder resistance (KΩ)
     
    						
    							63
    Cautions when using limit switch with LED 
    Use a breeder resistor as below when the leakage current from limit 
    switch with LED keeps flowing into the PLC or LED is accidentally 
    turned on. 
    Limit switch with LED DC 12-24V type input unit
    (OFF voltage 2.5V, input impedance 3 KΩ)
    r: Internal resistance of limit switch (KΩ)
    R: Breeder resistance (KΩ)
    Since the OFF voltage of the input is 2.5V, set R to get the following 
    current, 
    when the power supply voltage is 24V. Once calculating I, follow the 
    same steps as those for 2 wired sensors described on the previous 
    page.
    DC input unit
    Breeder 
    resistor
    Internal CircuitInput 
    terminal
    COM 
    terminal
     24 - 2.5
    I = or more 
    R 
     7. 5
    R ≤(KΩ)
    3I-2.5  (Power supply voltage) 2
    W = x (3 to 5 times)
    R
     
    						
    							64
    Output wiring
    Checkpoints for output unit wiring 
    NThere can be limits on the number of points that can be 
    simultaneously turned on or load current, based on the unit type. 
    Refer to the specification of each unit. Pay extra attention, in 
    particular, when ambient temperature is high.
    NConnect protection circuit to inductive load or capacity load, etc. as 
    below. 
    NThere can be current limitation per Common for output units, so 
    make sure not to exceed the allowed range. 
    Protection circuit for inductive load
    NConnect protection circuit in parallel with the inductive load.
    NIn particular, when switching the DC inductive load with relay 
    output type, the protection circuit dramatically affects the lifetime of 
    a system. Make sure to connect diodes at both sides of the load.
    AC load (Relay output type) 
    DC load
    Surge absorber
    Output unit
    Load
    Example of surge absorber 
    Resistance 50 
    Ω Capacity 0.47µF
    ATTENTION) For SSR output type unit, use only a 
    resistor to prevent huge delay with switching to OFF. Load Va r i s t o r
    Output 
    terminal
    COM 
    terminalOutput 
    terminal
    COM 
    terminal Output unit
    Diode
    Load
    Rated 
    diode 
    ratingReverse withstand 
    voltage3 times of load 
    voltage or more
    Average rectified 
    currentLoad current 
    error
    Output unit
    Output 
    terminal
    COM 
    terminal
     
    						
    							65
    Cautions when using capacity load
    Use protection circuit as below to minimize the effect of a load with 
    high inrush current. 
    Use an external fuse to protect against overload 
    NUnits embedded with fuse can prevent damages in case of output 
    shortage. 
    NSince the unit with embedded fuse cannot protect all the 
    components against overload, it is recommended that you use an 
    external fuse for every point. 
    NThe components of output unit may not be protected in case of 
    shortage.
    Cautions for leakage current
    A low-current load may not be OFF due to leakage current in the SSR 
    output unit. In such a case, connect a resistor in parallel with the load. 
    Common cautions for I/O module
    Input/output/motor cables should be separated from each other. 
    Separate input/output wirings from power wirings as far as possible. 
    Do not let them pass the same duct and do not bind them together. 
    Separate I/O and motor cables from high-voltage cables at least 
    100mm.
    Load
    Load Inductance Resistor Output unit
    Output 
    terminal
    COM 
    terminal
    Output unit
    Output 
    terminal
    COM 
    terminal
    Load Resistor
    Output unit
    Output 
    terminal
    COM 
    terminal
     
    						
    							66
    Terminal Block Type Module Wiring
    Compressed terminal, M3.0
    The terminal base for the NX70 PLC I/O modules (Terminal Type) uses 
    M3.0 terminal screw. Use the following compressed terminals for 
    terminal wiring. 
    Open terminal  Circular terminal
    Removable terminal block 
    NTerminal block of this type of I/O unit can be separated from the unit 
    with wires connected, by unfastening the screws on both ends.
    NMake sure to refasten the screws after wiring. 
    7. 0 m m
    or less 7. 0 m m
    or less 
    Screws
    Terminal block
     
    						
    							67
    Connector Type Module Wiring
    Wiring
    Wiring method 
    Both NX700 32-point I/O module (NX-X32D, NX-Y32RV, NX-Y32T) and 
    64-point I/O module (NX-X64D, NX-Y64T) use 40-pin MIL type 
    connectors. To connect to external devices,
    1. Insert each pin into socket
     
    2. or, use harness with flat cables.
     (Available on the market) 
    Connecting PIN type 
    PIN type connection. Insert each PIN into a socket. Detail wirings are 
    shown on the next page.
     Product name Catalog numberProduct specifications
    I/O connector 
    ASSY (Pin type) NX-PIN40 (CPL8890)40 pins
     40 Pins
     Connector hood
     Sockets are included.
    Applied products
    32 pointsNX-X32D (DC IN 32 points)
    NX-Y32T (TR OUT 32 points)
    NX-Y32RV (Relay OUT 32 points)
    64 pointsNX-X64D (DC IN 64 points)
    NX-Y64T (TR OUT 64 points)
     
    						
    							68
    Connecting with harness (Using flat cable connector) 
    40-pin flat cable connector is used, and 20 crimped terminals are 
    connected at the end. Its total length is 1.5m. Direct connection to the 
    unit.
     Product nameCatalog numberProduct specifications
    Flat cable ASSYNX-CBLDCDC IN 32 points, 64 points
    Connectors harness cable 1.5m
    NX-CBLTRTR OUT 32 points, 64 points
    Connectors harness cable 1.5m
    NX-CBLRYRelay OUT 32 points
    Connectors harness cable 1.5m
    Applied products
    32 pointsNX-X32D (DC IN 32 points)
    NX-Y32T (TR OUT 32 points)
    NX-Y32RV (Relay OUT 32 points)
    64 pointsNX-X64D (DC IN 64 points)
    NX-Y64T (TR OUT 64 points)
     
    						
    							69
    Pressure welding socket for PIN type connection 
    Direct pressure welding with clothings on saves wiring time and 
    efforts.
    Wiring 
    1. Bend the contact part at a carrier, and set it into the pressure welding 
    device. 
    2. Insert both cables with case on until touching each other, and hold the 
    pressure welder slightly.
    3. Insert the cables into the housing once welding is done.
    Contact removal pin for wiring failure.
    In case of wiring failure or cable pressure welding failure, use the 
    contact removal pin with the welder to remove the contact
    (Matsushita Electric Industrial Co.: AXY52000) 
    Press the housing onto the 
    pressure welder for this part to 
    contact the contact removal pin.
     
    						
    							70
    Wiring flat cable connector
    Cautions when using flat cable connector 
    When a flat cable connector is used for direct connection, the mapping 
    between cable No. and I/O No. is as follows:
    Connecting 32-point unit (NX-X32D, NX-Y32T, NX-Y32RV)
    Mapping table between flat cable No. and I/O (32 points) 
    NC: No Connection
    2
    391
    40DC INNX-X32D
     Product 
    nameCatalog 
    numberSpecifications
    Flat cable 
    (1.5m)NX-CBLDCDC IN 32 points
    (NX-X32D)
    NX-CBLTRTR OUT 32 points
    (NX-Y32T)
    NX-CBLRYRelay OUT 32 points 
    (NX-32RV) 
    Symbols on the unit 
    surface (Connector side) Flat cable 
    Symbols 
    on the unit 
    surface
    NX-X32DNX-Y32TNX-Y32RV
    1
    2
    3
    4
    5
    6
    7
    8
    9
    10
    11
    12
    13
    14
    15
    16
    17
    18
    19
    20X 0 
    X 1 
    X 2 
    X 3 
    X 4 
    X 5 
    X 6 
    X 7 
    X 8 
    X 9 
    X A
    X B
    X C
    X D
    X E
     X F 
    X 10 
    X 11 
    X 12 
    X 13 Y 0
    Y 1
    Y 2
    Y 3
    Y 4
    Y 5
    Y 6
    Y 7
    Y 8
    Y 9
    Y A
    Y B
    Y C
    Y D
    Y E
     Y F 
    Y 10
    Y 11
    Y 12
    Y 13Y 0
    Y 1
    Y 2
    Y 3
    Y 4
    Y 5
    Y 6
    Y 7
    Y 8
    Y 9
    Y A
    Y B
    Y C
    Y D
    Y E
     Y F 
    Y 10
    Y 11
    Y 12
    Y 13
    Symbols on 
    the unit 
    surface
    NX-X32DNX-Y32TNX-Y32RV
    21
    22
    23
    24
    25
    26
    27
    28
    29
    30
    31
    32
    33
    34
    35
    36
    37
    38
    39
    40X 14 
    X 15 
    X 16 
    X 17 
    X 18 
    X 19 
    X 1A
    X 1B
    X 1C
    X 1D
    X 1E
    X 1F
    NC 
    NC
    NC 
    NC 
    COM
    COM
    COM
    COMY 14
    Y 15
    Y 16
    Y 17
    Y 18
    Y 19
    Y 1A
    Y 1B
    Y 1C
    Y 1D
    Y 1E
    Y 1F
    NC 
    NC
    NC
    NC
    V DC+
     V DC+ 
     V DC- 
     V DC- Y 14
    Y 15
    Y 16
    Y 17
    Y 18
    Y 19
    Y 1A
    Y 1B
    Y 1C
    Y 1D
    Y 1E
    Y 1F
    COM
    COM
    COM
    COM
    24V DC+
     24V DC+
     24V DC- 
     24V DC- 
     
    						
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