• aluminum frame touch monitors
  • waterproof touch screen monitor
  • hdmi touch monitor
  • aluminum frame touch monitors
  • waterproof touch screen monitor
  • hdmi touch monitor

Wall Mountable Touch Screen Monitor​ | Manufacture

This touch monitor is primarily designed for the medical industry. A common pain point in medical scenarios is poor touch responsiveness when operators wear medical gloves, an issue prevalent with conventional touch displays.

We adopt a fully bonded G+G industrial touch structure, which effectively expands the sensing electrode area and improves the capture of weak capacitive signals to boost overall touch sensitivity. Meanwhile, we have optimized the touch algorithm and integrated a dedicated algorithm mode for medical glove operation to thoroughly resolve this pain point.
MOQ
1pcs
Touch Points
1-10 points
Controller
eeti controller
Warranty
3 years
Certifications
fcc, ul, reach, rohs etc.
$225.00
  • aluminum frame touch monitors
  • waterproof touch screen monitor
  • hdmi touch monitor

Description

Specifications:
Cover surface hardness ≥6H
Ink adhesion ≥4B
Impact resistance ≥IK07
Support Touch Points 10 points Typ.
Controller Interface USB Typ.
Controller Supply Voltage USB 5V Typ.V
Touch Report Rate ≥100Hz
Touch Response Time ≤25ms
Touch Linearity ±2mm
Display Supply Voltage 3.3 Typ.v
BACKLIGHT Supply Voltage 12 Typ.V
Display Power Consumption 2.48 Typ.w
Transmittance >85%
Pixel Pitch 0.1905 (H) x 0.1905 (V)mm
Support Color 16.7M / 262K
Viewing Angle 89 Typ.

How to Improve Touch Accuracy with Gloves in Medical Applications
1.Adopt full lamination technology to eliminate the air interlayer. Air amplifies insulating barriers, while full lamination minimizes signal attenuation, greatly stabilizing glove touch performance and preventing disconnection during sliding operations.

2.Activate the dedicated touch algorithm mode for medical gloves. It increases the signal sampling frequency and extends the capacitive integration acquisition time, filters out clutter noise generated by glove dielectrics, and enables stable identification of weak human body capacitive signals.

3.Adaptive gain dynamic adjustment: the chip detects dielectric thickness in real time (single-layer/double-layer gloves, liquid residues) and automatically amplifies sensing gain, preventing unresponsive touches with thick gloves and false triggers with thin gloves.

4.Built-in anti-shake and anti-drift filtering algorithms suppress touch coordinate jumping caused by disinfectant, normal saline and blood stains. It cuts clinical false touch rate by 19% and accurately recognizes tapping, sliding and zooming operations.

5.A trace amount of conductive polymer material is added to the fingertip area of the glove. The glove still fully meets the standards of isolation protection, sterility and puncture resistance. A conductive path is formed at the fingertips to directly couple capacitive signals, so operators do not need to remove their gloves. It does not compromise the glove’s protective performance against viruses and body fluids, complying with sterile specifications for operating rooms.

6.It withstands repeated wiping with 75% alcohol, iodophor and chlorine-containing disinfectants. Equipped with an anti-fouling conductive coating, it avoids touch disconnection and false triggers caused by residual liquids.

How to Solve Visual Fatigue Caused by Long-Time Viewing in Medical Applications
1.Medical-grade high-transmittance low-haze OCA optical adhesive fills the air gaps between the cover glass, touch sensor and LCD layers, eliminating glass-air reflective interfaces to fundamentally eliminate multi-layer reflection, ghost images and glare.

2.The outer surface of the cover glass is coated with a multi-layer AR anti-reflection film, which reduces ambient light reflectivity to ≤1.2% and suppresses light reflections from ceiling lamps and shadowless surgical lights in operating rooms and radiology departments.

3.Low-reflection matching films are coated on the inner surface of the cover glass and the backside of the touch ITO layer to reduce internal interlayer repeated reflections and eliminate grayscale banding in dark DICOM image areas.

4.Equipped with AG micro-etched anti-glare panel that retains full grayscale precision. It scatters directional intense light to prevent harsh localized bright spots.

5.Adopt a 14-bit native grayscale medical LCD panel compliant with DICOM standard grayscale mapping. It natively delivers 4096 grayscale levels via hardware, eliminating low-grayscale banding and segmentation caused by interlayer light reflection.

6.It adopts medical backlight with zone-based dynamic dimming to deliver uniform surface light, eliminate local bright spots, and fully restore grayscale details in dark areas.

7.Comes with a medical brightness calibrator to calibrate gamma and grayscale curves unit by unit, eliminating grayscale shifts induced by lamination and light reflection, and complying with the 14-bit professional display standards for radiological diagnostic equipment. On-site recalibration in hospitals is supported on a regular basis.

8.Conventional sharpening and contrast enhancement algorithms amplify reflective noise and break grayscale gradients. This diagnostic display defaults to a pure DICOM grayscale output mode without excessive image processing.

9.The backlight brightness is automatically fine-tuned according to ambient light in examination rooms. It avoids cranking up brightness under strong light and overly bright screens in dim environments, easing visual fatigue from prolonged film reading. A dedicated film viewing mode is available to disable unnecessary color gain for authentic restoration of grayscale details.

FAQ
1.Q: Why can this monitor achieve stable touch control with single or double-layer medical gloves?
A: It adopts full G+G lamination to cut signal attenuation, activates dedicated glove touch algorithms with adaptive gain adjustment, and supports anti-jitter filtering to avoid disconnection and false touches even with thick sterile gloves.

2.Q: How does the display reduce eye strain during long-term medical image reading?
A: It uses multi-layer AR coating, AG anti-glare panel and medical OCA glue to eliminate glare and ghost images, pairs with 14-bit native DICOM screen and zone dynamic backlight, plus auto ambient light brightness adjustment and exclusive film viewing mode to restore accurate grayscale without visual burden.

3.Q: Will frequent disinfection with medical disinfectants damage the touch surface or affect glove touch performance?
A: No. The panel surface is coated with anti-fouling conductive coating, resistant to repeated wiping of 75% alcohol, iodophor and chlorine-containing disinfectants. Liquid residue won’t trigger disconnection or accidental touch.

4.Q: What solutions does the device provide for unclear dark-area grayscale of DICOM medical images?
A: It coats low-reflection matching films inside layers to reduce internal reflection, equips 14-bit 4096-level native grayscale LCD, uses partition dynamic dimming backlight, and cancels excessive sharpening/contrast algorithms to prevent grayscale banding. Each unit is calibrated via medical calibrators.

5.Q: Is regular professional calibration service available after the monitor is deployed in hospitals?
A: Yes. Each unit is pre-calibrated for gamma and grayscale curves before delivery to meet radiology 14-bit display standards. We support regular on-site recalibration to offset grayscale drift caused by lamination or light reflection.

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