FEATURES DESCRIPTION GENERAL SPECIFICATIONS

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FEATURES The Industrial HMI line offers high performance, excellent stability, and reliability. Its Intel ATOM N450 processor allows for clock speeds up to 1.66 GHz. The CIMON line of Industrial HMIs comes in 12, 15 and 19 displays with touch operation. The industrial HMI module offers the capabilities of a PC with its VGA ports, printer port, and multiple Ethernet and Serial Ports. Capable of processing even the simplest tasks, the Industrial HMI can also easily handle complicated tasks such as data algorithm, pre-treatment operation, data storage, and connection with other systems. The ATOM processor allows the Industrial HMI to support simultaneous communication without compromising reliability. The efficient fanless design maintains inner temperature while reducing maintenance costs. Easily transfer CIMON-HMI project files using USB ports and networks or simply connect a keyboard and mouse and edit a project directly from the unit. GENERAL SPECIFICATIONS Fanless Design Dissipates Internal Heat Generated High Definition, Abundant Color TFT LCD Structure Slim and Simple Structure Fast Response and Excellent Reliability Multimedia System Various Automation Control Programs All-in-One Embedded Board Applied Windows Embedded XP POSReady 2009 P/G, the O/S Protection Utility is Installed DESCRIPTION CIMON - Industrial HMI Item Descprition Permitted Voltage 24 VDC or 100 ~ 240 VAC Ambient Temperature 0 ~ 50 C Storage Temperature -20 ~ 60 C Ambient Humidity 10% ~ 90%RH (Non-Condensing, Wet Bulb Temperature: 39 C Maximum) Storage Humidity 10% ~ 90%RH (Non-Condensing, Wet Bulb Temperature: 39 C Maximum) Air Pressure Vibration Resistance (Availment Altitude) 800 ~ 1,114hPa (Up to 2,000m/6,5000ft) Dust 0.1mg/m3 or Less Pollution Degree Less than Equal to Pollution Degree 2 Corrosive Gases Free from Corrosive Gases Vibration Resistance IEC61131-2 Compliant Occasional Vibration 10 ~ 75Hz 0.075mm, 57 ~ 150Hz 9.8m/s2 Continuous Vibration 10 ~ 57Hz 0.035mm, 57 ~ 150Hz 4.9m/s2 X,Y,Z direction for 10 cycles (80 minutes) Noise Resistance ±2kV, 1μS Electrostatic Discharge Immunity Contact Sischarge 4kV (IEC61000-4-2) Air Discharge 8kV 910 East Orangefair Ln. Anaheim, CA 92801 Tel. (714) 992-6990 Fax. (714) 992-0471 www.anaheimautomation.com

CIMON - Industrial HMI Type P12FS Touch Screen P15FP P19FP 1024 x 768 (Analog 8- Wire Resistive) 262K 1280 x 1024 16.7M Touch Controller PenMount USB Controller CPU Intel ATOM Processor N450 1.6 GHz (Fanless) RAM 1GB DDR2 SDRAM Storage 64 GB SSD (CF card 4GB, 8GB Options) Graphic Chip Intel GMA 3150 Integrated Display 12.1 TFT LCD 15 TFT LCD 19 TFT LCD CRT Output (15P DSUB) Serial COM 1: RS232C/422/485, COM 2-4: RS232C Ethernet 2 Gigabit Ethernet Ports Parallel 1 Port PS/2 Keyboard & Mouse USB 4 USB 2.0 Ports Audio 6 USB 2.0 Ports 1 Port CD-ROM None 1 Slot PCI Slot None 1 Slot Operating System Windows Embedded XP POS Ready 2009 Utility Program Enhanced Write Filter (EWF-Disk Image Safeguard) / Rescue (Factory Default Recovering Tool) Power 110~220 VAC HMI-CM-P12FS HMI-CM-P15FP HMI-CM-P15FS HMI-CM-P19FP ITEM DIMENSIONS ITEM SPECIFICATIONS Color P15FS 910 East Orangefair Ln. Anaheim, CA 92801 *All units are in mm Tel. (714) 992-6990 Fax. (714) 992-0471 www.anaheimautomation.com

HMI-CM-P15FP PANEL CUTOUT + DIMENSIONS HMI-CM-P12FS HMI-CM-P15FS HMI-CM-P19FP INTERFACE ARRANGEMENT *All units are in mm

COM1: RS232C This interface is used to connect the SCADA HMI to the host (PLC), via an RS-232C cable. When you use COM1 RS-232C port, you must not use COM1 RS-485-422 port. HOOK UP DIAGRAMS Connector Pin # Name Description 1 DCD Data Carrier Detect 2 RD Receive Data 3 TD Transmit Data 4 DTR Data Terminal Ready 5 SG Signal Ground 6 DSR Data Set Ready 7 RTS Request To Send 8 CTS Clear To Send 9 RI Ring Indicator COM1: RS-422/485 This interface is used to connect the SCADA HMI to the host (PLC) via an RS-422/485 cable. When you use COM1 RS-422/485 port, you must not use COM1 RS-232C port. Communication Switches Type Connector Pin No. Name Description Switch 1 TXD+ Transmit Data + 2 TXD- Transmit Data - 3 GND Ground 4 RXD+ Recieve Data + 5 RXD- Receive Data - RS-232 (Default) RS-485 NOTE If you connect the SCADA HMI to the host via an RS-485 cable (2 wire), you must connect the TXD+ and TXD- lines. The RS-485 of the SCADA HMI runds under auto toggle mode. To reduce the risk of damaging the RS-422 circuit, be sure to connect the SG terminal. RS-422

Ethernet This interface complies with the IEEE802.3 for Ethernet (10 Base-T / 100 Base-TX). RJ45 Front View RJ45 Side View Direct Cable: Host <-> Hub HOOK UP DIAGRAMS Host Cable Pin # Color Color Pin # Hub Cable 1 Orange/W Orange/W 1 2 Orange Orange 2 3 Green/W Green/W 3 4 Blue Blue 4 5 Blue/W Blue/W 5 6 Green Green 6 7 Brown/W Brown/W 7 8 Brown Brown 8 Direct Cable: Host <-> Host Host Cable Pin # Color Color Pin # Host Cable 1 Orange/W Green/W 1 2 Orange Green 2 3 Green/W Orange/W 3 4 Blue Blue 4 5 Blue/W Blue/W 5 6 Green Orange 6 7 Brown/W Brown/W 7 8 Brown Brown 8

Do not create Industrial HMI graphic object that could possibly endanger the safety of the equipment and personnel. Damage to the Industrial HMI can cause an output signal to remain ON or OFF continuously and can cause a major accident. Therefore, design all monitoring circuits using a limit switch to detect incorrect device movement. ESSENTIAL SAFETY PRECAUTIONS Do not create Industrial HMI graphic objects that control machine safety operations, such as an emergency stop. Switches to control machine safety operations must be installed as separated hardware switches. Design your system so that communication fault between the Industrial HMI and the controller of the equipment can not make the equipment malfunction. Do not use the Industrial HMI as a warning device for critical alarms that can cause serious operator injury, machine damage or production stoppage. The Industrial HMI is not appropriate for use with aircraft control devices, aerospace equipment, central trunk data transmission (communication) devices, nuclear power control devices, or medical life support equipment, due to these devices inherent requirements of extremely high levels of safety and reliability. When using the Industrial HMI with transportation vehicles (trains, cars and ships), disaster and crime prevention devices, various type of safety equipment, non-life support related medical devices, etc. redundant and/or fail-safe system designs should be used to ensure the proper degree of reliability and safety. After the backlight of the Industrial HMI burns out, the touch panel of the Industrial HMI is still active. if an operator does not notice that the backlight burned out and touches the panel, a potentially dangerous machine miss-operation can occur. Therefore, do not use the Industrial HMI graphic objects for the control of any equipment safety mechanisms, such as emergency stop switches, etc. that protect humans and equipment from injury and damage.

INSTALLATION Be sure to securely connect all cable connectors to the Industrial HMI. A loose connection may cause incorrect input or output. High voltage runs through the Industrial HMI do not disassemble the Industrial HMI, otherwise an electric shock can occur. Do not modify the Industrial HMI unit because a modified Industrial HMI can cause a fire or an electric shock. Do not use the Industrial HMI near flammable gasses because an explosion can occur. WIRING To prevent an electric shcok, be sure to confirm that the power cord of the Industrial HMI is not connected to the main power before connecting any cord, cables or line to the Industrial HMI. Do not use power beyond the specified voltage range of the Industrial HMI. Doing so may cause a fire or an electric shock. Ground the field ground line of the Industrial HMI separately from field ground lines of other units. Putting these field ground lines too close may cause an electric shock or unit malfunction. Be sure to use a grounding resistance of 100Ω or less and a 2 mm 2 or thicker wire, or applicable standard of your country. Correctly wire the Industrial HMI, be sure that the rated voltage and terminal layout are within the designated range. If the voltage supplied differs from the rated voltage, or incorrect wiring or grounding is performed, it may cause a fire or unit malfunction. Use only the designated torque to tighten terminal block screws of the Industrial HMI. If these screws are not tightened firmly, it may cause a short circuit, fire or Industrial HMI malfunction. Be careful that the metal filings and wiring debris do not fall into the Industrial HMI; they can cause a fire, Industrial HMI malfunction, or incorrect operation. MAINTENANCE The Industrial HMI uses a lithium battery to back up its internal clock data. If the battery is incorrectly replaced, the battery may explode. To prevent this, please do not replace the battery yourself. When the battery needs to be replaced, please contact Anaheim Automation. The LCD contains a powerful irritant and if for any reason the panel is damaged and this liquid contacts any part of your body, be sure to wash that area with running water for 15 minutes. If any of this liquid enters your eye, flush your eye for 15 minutes with running water and contact a physician.