SSDC-D/IP Hardware Manual Contents 1 Introduction ........................3 1.1 Features ......................3 1.2 Block Diagram ....................4 1.3 Safety Instructions .....................5 2 Getting Started ......................6 2.1 Installing Software .....................7 2.2 Connecting the Drive to Your PC using Ethernet ..........8 2.3 Connecting the Power Supply ................12 2.4 Choosing a Power Supply .................13 2.4.1 Voltage .....................13 2.4.2 Current ....................14...
SSDC-D/IP Hardware Manual 1 Introduction Thank you for selecting the MOONS’ SSDC series Step-Servo drive and motor. SSDC series combines servo technology with a stepper motor to create a product with exceptional feature and broad capability. The SSDC series is a high performance, intelligent Step-Servo system with multi-axes field bus control.
SSDC-D/IP Hardware Manual 1.2 Block Diagram SSDC Block Diagram Power Supply: Filter SSDC06/10: 24-70VDC SSDC03: 12-48VDC Internal DC Input Voltage Logic Power Temp. Converter Supply Det. High Speed Input Mosfet Digital Software Optical Filter Filter Ioslation Power Amplifier Over Current Input Det.
SSDC-D/IP Hardware Manual 1.3 Safety Instructions Only qualified personnel should transport, assemble, install, operate, or maintain this equipment. Properly qualified personnel are persons who are familiar with the transport, assembly, installation, operation, and maintenance of motors, and who meet the appropriate qualifications for their jobs. To minimize the risk of potential safety problems, all applicable local and national codes regulating the installation and operation of equipment should be followed.
SSDC-D/IP Hardware Manual 2 Getting Started The following items are needed: • A 12-70VDC power supply, see the section below entitled “Choose a Power Supply” for helping to choose the right one. • A compatible SS or RS motor, please see the section below entitled “Recommended Motor” •...
SSDC-D/IP Hardware Manual 2.1 Installing Software Step-Servo Quick Tuner is the PC based software application used to configure, and perform servo tuning, drive testing and evaluation of the step-servo products. System servo control gains, drive functionality and I/O configuration are set with Step-Servo Quick Tuner. It also contains an oscilloscope function to help set the servo control gains.
SSDC-D/IP Hardware Manual 2.2 Connecting the Drive to Your PC using Ethernet The RJ45 connector of SSDC-D/IP is conformed to 100BASE-TX(100Mbps). Please use the CAT5 or CAT5e(or higher class) net cable. This process requires three steps: • Physically connect the drive to your network (or directly to the PC) •...
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SSDC-D/IP Hardware Manual From the SW1 to SWE, you can redefine the IP address by Step-Servo Quick Tuner software. SW0 fixed address “10.10.10.10”, it is a recovery address. If someone were to change the setting and not write it down or tell anyone then you will not be able to communicate with your drive.
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SSDC-D/IP Hardware Manual Option 2: Connect a Drive Directly to Your PC It doesn’t get much simpler than this: 1. Connect one end of a CAT5 Ethernet cable into the LAN card (NIC) on your PC and the other into the drive. You don’t need a special “crossover cable”; the drive will automatically detect the direct connection and make the necessary physical layer changes.
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SSDC-D/IP Hardware Manual Option 3: Use Two Network Interface Cards (NICs) This technique allows you to keep your PC connected to your LAN, but keeps the drive off the LAN, preventing possible IP conflicts or excessive traffic. 1. If you use a desktop PC and have a spare card slot, install a second NIC and connect it directly to the drive using a CAT5 cable.
SSDC-D/IP Hardware Manual 2.3 Connecting the Power Supply The SSDC series step-servo drive and motor are shipped with a power cable, 2 meters long. Connect the red wire to the positive of the power supply. Connect the black wire to the negative of the power supply.
SSDC-D/IP Hardware Manual 2.4 Choosing a Power Supply The main considerations when choosing a power supply are the voltage and current requirements for the application. 2.4.1 Voltage The SSDC drive is designed to give optimum performance between 24 and 48 Volts DC. Choosing the voltage depends on the performance needed and motor/drive heating that is acceptable and/or does not cause a drive over-temperature.
SSDC-D/IP Hardware Manual 2.4.2 Current The maximum supply currents required by the SSDC series step servo drive and motor are shown below in chats at different power supply voltage input. The SSDC drive power supply current is lower than the winding currents because it uses switching amplifiers to convert a high voltage and low current into low voltage and high current.
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SSDC-D/IP Hardware Manual AM11RS3DMA 24V Power Torque Continuous Boost Supply Current Full Load No Load Speed (rps) □ □ AM17SS1DG -N AM17RS1DM 24V Power Torque Continuous Boost Supply Current Full Load No Load Speed (rps) □ □ AM17SS1DG AM17RS1DM 48V Power Torque Continuous Boost...
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SSDC-D/IP Hardware Manual □ □ AM17SS2DG -N AM17RS2DM 24V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) □ □ AM17SS2DG -N AM17RS2DM 48V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) □ □...
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SSDC-D/IP Hardware Manual □ □ AM17SS3DG -N AM17RS3DM 48V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) □ □ AM17SS4DG -N AM17RS4DM 24V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) □ □...
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SSDC-D/IP Hardware Manual □ □ AM23SS2DG -N AM23RS2DM 24V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) □ □ AM23SS2DG -N AM23RS2DM 48V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) □ □...
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SSDC-D/IP Hardware Manual □ □ AM23SS3DG -N AM23RS3DM 24V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) □ □ AM23SS3DG -N AM23RS3DM 48V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) □ □...
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SSDC-D/IP Hardware Manual □ □ AM24SS3DG -N AM24RS3DM 24V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) □ □ AM24SS3DG -N AM24RS3DM 48V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) □ □...
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SSDC-D/IP Hardware Manual AM34SS1DGA-N AM34RS1DMA 24V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) AM34SS1DGA-N AM34RS1DMA 48V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) AM34SS1DGA-N AM34RS1DMA 70V Power Torque Continuous Boost Supply Current Full Load Full Load...
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SSDC-D/IP Hardware Manual AM34SS3DGA-N AM34RS3DMA 24V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) AM34SS3DGA-N AM34RS3DMA 48V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) AM34SS3DGA-N AM34RS3DMA 70V Power Torque Continuous Boost Supply Current Full Load Full Load...
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SSDC-D/IP Hardware Manual AM34SS5DGA-N AM34RS5DMA 24V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) AM34SS5DGA-N AM34RS5DMA 48V Power Torque Continuous Boost Supply Current Full Load Full Load Speed (rps) AM34RS5DMA AM34SS5DGA-N 70V Power Torque Continuous Boost Supply Current Full Load Full Load...
SSDC-D/IP Hardware Manual 2.5 Connecting the Motor The SS/RS motors have two cables. One is the motor power cable, the other one is the encoder feedback cable. Plug the motor power cable into the motor connector on the drive and plug the encoder feedback cable into the encoder feedback connector on the drive.
SSDC-D/IP Hardware Manual 3 Inputs and Outputs SSDC inputs and outputs include: • 8 optically isolated digital inputs,5 - 24VDC logic • 4 Optically isolated, Open Collector, 30V/100 mA max, • 2 analog inputs can be configured to 0-5V, 0-10V, ±5V or ±10V signal ranges •...
SSDC-D/IP Hardware Manual 3.1 Digital Inputs 3.1.1 X1, X2, X3 and X4 Digital Inputs X1, X2: Optically isolated, differential, 5-24VDC; Minimum pulse width = 250ns, Maximum pulse frequency = 2MHz; X3, X4: Optically isolated, differential, 5-24VDC; Minimum pulse width = 100μs, Maximum pulse frequency = 5KHz X1 can be configured as general purpose input X2 can be configured as general purpose input...
SSDC-D/IP Hardware Manual 3.1.2 X5, X6, X7 and X8 digital Inputs X5 ~ X8: Optically isolated, differential, 5-24VDC; Minimum pulse width = 100μs, Maximum pulse frequency = 5KHz; X5 can be configured as servo on input or general purpose input X6 can be configured as alarm reset signal input or general purpose input X7 can be configured as Touch Probe 1 trigger input or general purpose input X8 can be configured as Touch Probe 2 trigger input or general purpose input...
SSDC-D/IP Hardware Manual 3.2 Digital Outputs Y1, Y2, Y3 and Y4 Digital Outputs Y1 can be configured as alarm signal output. It can also be configured as static in position signal output(static, checking in position when motor is stopped) ,or as dynamic in position signal output (dynamic, checking in position all the time.) Y2 can be configured as Tach signal output, tach output produce pulsed relative to the motor position with configurable resolution.
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SSDC-D/IP Hardware Manual 5 - 24V Power Supply – Load Y1/2/3/4+ SSDC Y1/2/3/4- Connecting a sourcing output to load 5 - 24V Power Supply – Y1/2/3/4+ SSDC Y1/2/3/4- Connecting a sinking output to PLC's input 5 - 24V Power Supply –...
SSDC-D/IP Hardware Manual 3.3 Analog Inputs SSDC series drive has two analog signal inputs which can accept signal range of 0-5V, 0-10V, ±5V and ±10V. The drive can be configured to operate at velocity mode or position mode that is proportional to the analog input.
SSDC-D/IP Hardware Manual 3.5 Secondary Encoder Input SSDC series supports 2-way encoder feedback, one way connect to the motor encoder position feedback, the other way connect to the load side position feedback such as scale, connect to the ENC A+/-,ENC B+/-,ENC Z+/-, the secondary encoder input can be accepted both of single- ended and differential signal.
SSDC-D/IP Hardware Manual 4 Mounting the Drive Use the M3 or M4 screw to mount the SSDC series drive .The drive should be securely fastened to a smooth, flat metal surface will help conduct heat away from the chassis. If this is not possible, forced airflow from a fan maybe required to prevent the drive from overheating.
SSDC-D/IP Hardware Manual 6.2 Technical Specifications Power Amplifier Amplifier Type Dual H-Bridge, 4 Quadrant Current Control 4 state PWM at 20 KHz SSDC03: Continuous Current 3A max, Boost Current 4A max (1.5s), current limitation auto set-up by attached motor SSDC06: Output Current Continuous Current 6A max, Boost Current 7.5A max (1.5s), current limitation auto set-up by attached motor SSDC10:...
SSDC-D/IP Hardware Manual 7.2.3 Extended motor cable(For SSDC drive and AM11RS motor) Housing:51065-0600(Molex) Housing: 39-01-3048(Molex) Crimp:50212-8000(Molex) Crimp: 39-00-0038(Molex) Length(L) Description Model Wiring Diagram 2109-100 Standard type PIN(J1) Color (Signal) PIN(J2) 2109-300 Standard type Blue(B-) 2109-500 Standard type Red(B+) 2109-1000 Standard type Green(A-) 2109-100-C02 Flexbile type,...
SSDC-D/IP Hardware Manual 7.2.5 Extended encoder cable(For SSDC drive and AM11RS motor) Housing:501646-1200(Molex) Housing: J21DF-16V-KX-L(JST) Crimp:501648-1000(Molex) Crimp: SJ2F-002GF-P1.0(JST) Length(L) Description Model Wiring Diagram PINJ1) PIN(J2) PIN(J1) PIN(J2) 2118-100 Standard type Color (Signal) Color (Signal) 2118-300 Standard type Blue(A+) Brown(U+) 2118-500 Standard type Blue/Black(A-) Brown/Black(U-)
SSDC-D/IP Hardware Manual 7.2.7 Extended encoder cable(For SSDC drive and AM17/23/24/34RS motor) Housing: Housing: 1-1903130-6(TYCO) 501646-1600(Molex) Crimp: Crimp: 501648-1000(Molex) 1903120-1(TYCO) Model Length(L) Description Wiring Diagram PINJ1) PIN(J2) PIN(J1) PIN(J2) 2116-100 Standard type Color (Signal) Color (Signal) 2116-300 Standard type Blue(A+) Brown(U+) 2116-500 Standard type...
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