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HMIGTO6315FW
Schneider Electric HMIGTO6315FW is a stainless steel operator dialogue touchscreen HMI and Programmable Terminal (PT) designed for industrial applications. It features a 12.1" SVGA TFT display with 65K colors and LED backlight, offering a resolution of 800x600 pixels. The unit is equipped with a variety of connection options including a USB mini-B port, a USB type A port, two RJ45 ports, and a 9-pin D-Sub connector. It supports multiple communication protocols such as Modbus, Modbus TCP/IP, Uni-TE, RS-232C, RS-485, and Ethernet TCP/IP. This HMI operates on a 24Vdc supply voltage and is designed for flush mounting. It operates within an ambient air temperature range of 0 to +55°C and offers a storage temperature range of -20 to +60°C. The HMIGTO6315FW is protected to IP66K and NEMA 4X standards, ensuring durability in harsh environments. It has a memory capacity of 96MB for applications and allows for expansion with a 4GB SD card. The device can manage 32 groups of 64 recipes, comprising up to 1024 ingredients, and features recipe curves with a log alarm log and a built-in real-time clock. The electrical durability of the backlight is rated at 50,000 hours, and it runs on the Magelis operating system.
Schneider Electric
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HMIGTO5315FW
Schneider Electric HMIGTO5315FW is an HMI / Display unit designed for operator dialogue through a touchscreen interface and serves as a Programmable Terminal (PT) with a stainless steel frame. It supports up to 32 groups of 64 recipes, allowing for a maximum of 1024 ingredients, and includes recipe curves with a log alarm log and a built-in real-time clock. For connectivity, it features a USB mini-B port, a USB type A port, two RJ45 ports, and a 9-pin D-Sub connector. The communication protocols supported are Modbus, Modbus TCP/IP, Uni-TE, RS-232C, RS-485, and Ethernet TCP/IP. It requires a 24Vdc power supply and is designed for flush mounting. The HMIGTO5315FW operates within an ambient air temperature range of 0 to +55°C and offers a degree of protection rated at IP66K and NEMA 4X. It has a connection capacity for a 4GB SD card for expansion and comes with 96MB of application memory. The display is a 10.4" VGA TFT capable of displaying 65K colors and is backlit by LEDs, with a pixel count of 640x480. It is designed to operate within an ambient air temperature range for storage of -20 to +60°C. The operating system is Magelis, and the electrical durability of the backlight is rated at 50,000 hours.
Schneider Electric
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TX815-P3CV01
TX800 HMI/PLC Product Series, 15″ Display — CODESYS V3 PLC with TARGET and WEB VISU, High-Quality Metal Housing and Glass Front with a Capacitive Touch, 15" TFT wide screen color display, LED backlight, 1366x768 pixel resolution, 16 M colors, Capacitive touchscreen with glass front, 1 RJ45 Ethernet port with 10/100/1000 Mbit, 2 RJ45 Ethernet ports with 10/100 Mbit, 1 serial interface (RS232, RS485, RS422), 2 USB host ports, 1 SD card slot
Turck
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TX807-P3CV01
TX800 HMI/PLC Product Series, 7″ Display — CODESYS V3 PLC with TARGET and WEB VISU, High-Quality Metal Housing and Glass Front with a Capacitive Touch, 7 TFT wide screen color display, LED backlight, 800 x 480 pixel resolution, 16 M colors, Capacitive touchscreen with glass front, 1 RJ45 Ethernet port with 10/100/1000 Mbit, 2 RJ45 Ethernet ports with 10/100 Mbit, 1 serial interface (RS232, RS485, RS422), 2 USB host ports, 1 SD card slot, "
Turck
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TXF705-00VPST
TXF700 HMI Product Series in IP67, 5 Display with TX VisuPro Runtime, Metal Housing with full IP67 Protection, Glass Front with Capacitive Touch, 5" TFT wide screen color display, LED backlight, 800 × 480 pixel resolution, 16 M colors, Capacitive touch screen, multi-touch and gesture control, 1 RJ45 PoE Ethernet Port 10/100 Mbps, 1 USB host port, Integrated temperature sensor and 3-axis accelerometer, Front RGB LED, Integrated beeper, "
Turck
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TX707-P3CV01
TX700 HMI/PLC Series, 7 Display - CODESYS V3 PLC with TARGET and WEB VISU, High-Quality Metal Housing and Glass Front with a Capacitive Touch, 7" TFT wide screen color display, LED backlight, 800 x 480 pixel resolution, 16 M colors, Capacitive touchscreen with glass front, 3 RJ45 Ethernet ports with 10/100 Mbit, 1 serial interface (RS232, RS485, RS422), 2 USB host ports, 1 SD card slot, "
Turck
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TX715FB-P3CV01
TX700 HMI/PLC Series, 15 Display for F&B — CODESYS V3 PLC with TARGET and WEB VISU, High-Quality Metal Housing and Glass Front with a Capacitive Touch, 15" TFT wide screen color display, LED backlight, 1366x768 pixel resolution, 16 M colors, Capacitive touchscreen with glass front and polyester coating, Stainless steel frame and food-grade seal, IP69 degree of protection, high-pressure watertight up to 80 °C, Acid- and chemical-resistant, 3 RJ45 Ethernet ports with 10/100 Mbit, 1 serial interfac
Turck
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TX107-00VPST
TX100 HMI Series, 7 display with TX VisuPro Runtime, High-Quality Plastic Housing with a Resistive Touch Screen, 7" TFT wide screen color display, LED backlight, 800 x 480 pixel resolution, 64 K colors, Resistive touch screen, 1 RJ45 Ethernet port, 1 serial interface (RS232, RS485, RS422), 1 USB host port, "
Turck
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NB3Q-TW00B-V1
NB Series Touch-Screen HMIs for OEM
Omron
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6AV2128-3QB36-0AX0
SIMATIC HMI MTP1500, Unified Comfort Panel, neutral, touch operation, 15.6" widescreen TFT display, 16 million colors, PROFINET interface, configurable from WinCC Unified Comfort V16, contains open-source software, which is provided free of charge See enc
Siemens
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6AG1124-1GC01-4AX0
SIPLUS HMI KP700 Comfort for medial exposure with conformal coating based on 6AV2124-1GC01-0AX0
Siemens
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6AG1123-2GB03-2AX0
SIPLUS HMI KTP700 Basic Color PN -20...+50°C with conformal coating based on "6AV2123-2GB03-0AX0 . ""7"""" TFT" "display, 65536 colors"" PROFINET" interface
Siemens
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6AV6647-0AF11-3AX0
SIMATIC HMI KTP1000 Basic Color PN, Basic Panel, Key/touch operation, 10" TFT display, 256 colors, PROFINET interface, configurable as of WinCC flexible 2008 SP2 Compact/ WinCC Basic V10.5/ STEP 7 Basic V10.5, contains open-source software, which is provi
Siemens
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6AV6647-0AH11-3AX0
SIMATIC HMI KP300 Basic mono PN, Basic Panel, key operation, 3" FSTN LCD display, black/white, PROFINET interface, configurable from WinCC Basic V11/ STEP 7 Basic V11, contains open-source software, which is provided free of charge see enclosed CD
Siemens
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6AG1123-2DB03-2AX0
SIPLUS HMI KTP400 Basic Color PN -20...+60°C with conformal coating based on 6AV2123-2DB03-0AX0 . 4" TFT display, 65536 colors PROFINET" interface
Siemens
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6AG1124-1JC01-4AX0
SIPLUS HMI KP900 Comfort for medial exposure with conformal coating based on 6AV2124-1JC01-0AX0
Siemens
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6AV6647-0AJ11-3AX0
SIMATIC HMI KP400 Basic Color PN, Basic Panel, key operation, 4" widescreen TFT display, 256 colors, PROFINET interface, configurable from WinCC Basic V11 SP2/ STEP 7 Basic V11 SP2, contains open-source software, which is provided free of charge see enclo
Siemens
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6AG1647-0AA11-2AX0
SIPLUS HMI KTP400 Basic mono PN -10...+60°C with conformal coating based on 6AV6647-0AA11-3AX0 display, Ethernet interface
Siemens
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LCD Touch Panels - HMI Panel
General Guide & Overview
LCD Touch Panels, also known as Human Machine Interface (HMI) panels, have become increasingly prevalent in various industries. These intuitive devices revolutionize the way operators interact with machines, providing a user-friendly interface for control and monitoring. They combine visual feedback with touch inputs, creating an intuitive and efficient user experience.
The advantages of HMI touch screen panels include enhanced user experience, improved efficiency, real-time data visualization, flexibility and customization, and easy integration and communication with other systems and machinery. When choosing HMI touch screen panels, factors to consider include environmental considerations, screen size and resolution, touch technology, connectivity options, and software and programming capabilities.
Proper installation and maintenance are crucial for optimal performance, and guidelines such as proper mounting, calibration, cleaning, and firmware updates should be followed.
How Does an HMI Work?
An HMI (Human Machine Interface) enables users to communicate with a PLC (Programmable Logic Controller) through a graphical interface, typically a touchscreen. This technology has a rich history, evolving from batch interfaces to command-line interfaces and ultimately graphical user interfaces.
The HMI receives commands from the user, which it then translates into machine-readable code. Additionally, it receives feedback data from the connected PLC and presents it on the screen in real-time. This provides users with a seamless way to monitor and control machine operations.
The advantages of using an HMI are numerous. Firstly, HMIs are designed to be user-friendly, allowing operators to interact with machines effortlessly. They offer real-time feedback, providing instant updates on machine status and performance. HMIs also have alarm capabilities, allowing users to receive notifications when predefined thresholds or conditions are met.
Additionally, one of the key advantages of an HMI is its ability to modify system operations without the need for complex reprogramming. Operators can make changes to parameters, setpoints, or even entire processes directly through the HMI interface, saving time and streamlining workflow.
HMIs come in various types, each serving specific purposes in industrial settings. Some common HMI types include pushbutton replacers, which replace traditional physical pushbuttons with virtual buttons on the touchscreen. Data handlers are HMIs used for data entry and monitoring, while overseers provide a broader view of the entire system's operation.
The properties of an HMI include its processors, memory capabilities, and various physical features such as screen size, resolution, and touch technology. When selecting an HMI, it is important to consider its compatibility with the system, ease of use, and specific application requirements.
Environmental Considerations
When deploying an HMI, environmental factors must be taken into account. The operating conditions, including temperature, humidity, and exposure to dust or moisture, can impact the performance and longevity of the HMI. It is important to select an HMI that is designed to withstand the specific environmental conditions of the intended application.
Software and Programming
HMIs often come with dedicated programming software that enables users to create and customize the graphical interface. This software allows for the configuration of screens, buttons, alarms, and data logging, among other functionalities. An HMI's programming capabilities play a crucial role in its usability and adaptability to different systems and processes.
Wiring and Integration with PLC
Proper wiring between the HMI and the PLC is essential for smooth communication and operation. The HMI and the PLC need to be connected using appropriate communication protocols to ensure compatibility and reliable data transfer. Cooperating seamlessly, the HMI and the PLC form an integrated system that enables efficient process control and monitoring.
Troubleshooting and Glossary
Like any technology, HMIs may encounter issues that require troubleshooting. Familiarity with common problems and their solutions can help operators quickly resolve any issues and minimize downtime. Additionally, a glossary of HMI terms can assist users in understanding the specific vocabulary and terminology associated with this technology.
FAQ
What is an HMI?
An HMI, or Human Machine Interface, is a device that allows operators to interact with machines through a user-friendly interface for control and monitoring.
What are the advantages of HMI touch screen panels?
HMI touch screen panels offer enhanced user experience, improved efficiency, real-time data visualization, flexibility and customization, and easy integration and communication with other systems and machinery.
What factors should be considered when choosing HMI touch screen panels?
Factors to consider include environmental considerations, screen size and resolution, touch technology, connectivity options, and software and programming capabilities.
How does an HMI work?
An HMI works by allowing users to communicate with a Programmable Logic Controller (PLC) through a graphical interface, typically a touchscreen. It translates user commands into machine-readable code and presents feedback data from the PLC on the screen.
What are the advantages of an HMI?
The advantages of an HMI include its user-friendliness, real-time feedback, alarm capabilities, system modification without reprogramming, and customizability.
What are the different types of HMIs?
Different types of HMIs include pushbutton replacers, data handlers, and overseers, each serving specific purposes.
What properties should be considered when selecting an HMI?
Properties to consider include processors, memory capabilities, and various physical features.
What factors should be considered when selecting an HMI?
Factors to consider include compatibility with the system, ease of use, and specific application requirements.