This 19-inch open-frame industrial capacitive touch monitor is designed for equipment integrators, industrial automation manufacturers and self-service terminal builders. Its 5:4 display format is suitable for machine HMIs, control cabinets, CNC equipment, inspection systems and legacy equipment platforms that require more vertical workspace than a widescreen display.
The open-frame metal structure can be integrated behind a customer-designed bezel or enclosure. Ever Glory provides project-based OEM/ODM customization for the LCD, PCAP touch panel, cover glass, optical bonding, video and touch interfaces, cable routing, mounting points and housing. Final brightness, temperature range, ESD performance and compliance documentation are confirmed according to the approved configuration.
This 19-inch open-frame industrial capacitive touch monitor is designed for integration into equipment enclosures rather than use as a desktop consumer monitor. The metal open-frame structure allows equipment manufacturers to install the display behind a custom front bezel, cabinet panel or machine housing.
The 19-inch 5:4 format is widely used in industrial systems that require more vertical display area for control commands, alarm lists, process diagrams and machine-status information. It is also suitable for upgrading legacy equipment originally designed around a 19-inch 1280 × 1024 display. The final aspect ratio and native resolution must be confirmed against the selected LCD specification.
The open-frame chassis is intended for integration inside an industrial cabinet or equipment enclosure. Mounting holes, brackets, connector positions and cable outlets can be adapted to the customer’s mechanical design. A dimensional drawing and installation tolerance review should be completed before sample production.
Compared with a 16:9 widescreen, a 5:4 display provides additional vertical working area for industrial HMI menus, machine parameters, production data and alarm records. This format is especially relevant to CNC machines, factory control systems and replacement projects where the existing software interface was designed for 1280 × 1024 resolution.
The native resolution and aspect ratio must be verified using the approved LCD panel before publication or production.
The PCAP touch system supports responsive finger input and can be configured for multi-touch according to the selected controller and operating system. Touch firmware can be evaluated for custom cover-glass thickness, glove operation, wet surfaces and electrically noisy industrial environments.
Final touch performance depends on the sensor design, controller, grounding, enclosure structure, power quality and host system. Testing should therefore be performed with the display installed in representative equipment.
The cover glass can be customized to match the customer’s cabinet opening and industrial design. Available options include custom outline dimensions, thickness, holes, edge processing, black border, color matching and logo printing.
AG, AR, AF and anti-fingerprint surface treatments can be evaluated according to ambient lighting, cleaning requirements and operator use. Front ingress protection is determined by the complete cover-glass, bezel, gasket and enclosure assembly; an open-frame monitor alone should not be described as a complete IP65 unit unless that exact assembly has been tested.
LCD brightness, contrast, viewing angle and backlight lifetime are selected according to the required environment and supply lifecycle. High-brightness LCDs and OCA or OCR optical bonding can be evaluated for window-facing or bright industrial locations.
Outdoor readability should be assessed using actual ambient illumination, surface reflection, display temperature and enclosure thermal conditions. High brightness alone does not establish outdoor suitability.
Video and touch interfaces are configured according to the customer’s host controller. Common project options may include HDMI, VGA, DVI, DisplayPort, USB, RS232 or I2C, but only the interfaces included in the approved control board and touch-controller configuration should be published as standard.
Compatibility can be evaluated for Windows, Linux, Android and embedded systems. Customers should provide the operating-system version, chipset, required resolution and communication protocol before sample development.
Industrial equipment may contain motors, variable-frequency drives, relays and switching power supplies that can interfere with capacitive touch operation. Project evaluation can include touch-controller tuning, grounding, shielding, filtering and cable-routing review.
The target ESD or EMC standard and test level should be specified at the beginning of the project. Final validation should be conducted with the monitor installed in the representative equipment enclosure.
The 19-inch screen provides sufficient space for process diagrams, machine controls, production data and alarm information, while the open-frame structure supports integration into operator stations and control cabinets.
The typical 5:4 format is suitable for systems developed around a 1280 × 1024 interface, helping equipment manufacturers replace an older display without redesigning the complete user interface.
The larger vertical display area is useful for test results, measurement tables, waveform information and equipment controls. Touch, signal interfaces and mounting points can be configured around the host system.
The monitor can be installed behind a customer-designed front panel in information terminals, check-in systems and industrial self-service equipment. Public-use projects can be evaluated for strengthened cover glass, anti-fingerprint treatment and customized touch tuning.
| Attribute | Base Product Definition | Optional / Project-Based Configuration |
|---|---|---|
| Display Size | 19 inches | Alternative sizes available by project |
| Display Format | 5:4, subject to LCD confirmation | LCD selection based on availability and lifecycle |
| Native Resolution | 1280 × 1024, subject to LCD confirmation | Alternative control-board scaling by evaluation |
| Touch Technology | Projected capacitive touch | Controller selection and firmware tuning |
| Installation | Open-frame embedded mounting | Custom mounting holes and brackets |
| Brightness | Confirmed by selected LCD | High-brightness configuration |
| Optical Bonding | Confirmed by approved specification | OCA or OCR bonding |
| Cover Glass | Project-defined | Custom outline, thickness, printing and logo |
| Surface Treatment | Confirmed by approved specification | AG, AR, AF or anti-fingerprint |
| Video Input | Confirmed by approved control board | HDMI, VGA, DVI, DisplayPort or project-specific input |
| Touch Interface | Confirmed by selected controller | USB, RS232 or I2C |
| Front Protection | Dependent on customer enclosure | Custom cover glass, gasket and sealing design |
| Touch Modes | Finger input | Glove, wet-hand or thick-glass operation |
Ever Glory supports project-based engineering for equipment manufacturers, system integrators and industrial solution providers. Customization options include:
It can be evaluated for legacy equipment using a 19-inch 5:4 display and 1280 × 1024 user interface. Compatibility depends on the active area, outline dimensions, mounting points, video timing, power input and software scaling. Please provide the existing display model or mechanical drawing for comparison.
Yes. Ever Glory can adjust mounting holes, brackets, cable outlets, connector positions, cover-glass dimensions and housing details according to the equipment drawing. The customer should provide the cabinet opening and available internal space before sample development.
Interface availability depends on the selected control board and touch controller. HDMI, VGA, DVI, DisplayPort, USB, RS232 and I2C can be evaluated according to project requirements. Only the interfaces defined in the approved specification are supplied with the final product.
Glove and wet-hand operation can be evaluated through PCAP sensor design, controller selection and firmware tuning. Testing must use the actual glove material, water conditions, cover glass and representative equipment enclosure.
Not by itself. Front IP protection depends on the cover glass, bezel, gasket, cabinet opening, mounting pressure and final equipment assembly. If front IP65 is required, the complete installation structure must be designed and validated for that target.
MOQ and lead time are project-based. They depend on LCD availability, custom cover glass, optical bonding, housing changes, tooling and validation requirements. Please provide the sample quantity, estimated annual volume and project schedule for evaluation.
The approved LCD, touch controller, control board, mechanical drawing and BOM can be managed by project. Component changes should be communicated through the agreed change-control process and may require sample revalidation before mass production.
Send your existing display model, equipment drawing, cabinet opening and interface requirements to Ever Glory. Our engineering team will evaluate the LCD, PCAP touch configuration, cover glass, interfaces, mounting structure and validation requirements before proposing a sample configuration.
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