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Medical-Grade 14×17 Inch Human Wireless Flat Panel Detector | High-Resolution Cesium Iodide (CsI) Digital Radiography FPD System | Ultra-Durable Amorphous Silicon X-Ray Matrix with Dedicated Dual-Slot Smart Charging Dock

SKU: UMY-XM-070
Brand: Umy
MOQ: 1
Origin: China
Upgrade your human diagnostic imaging capabilities with our premium 14×17 inch wireless flat panel detector system. Engineered with a high-resolution amorphous silicon matrix and a direct-deposition cesium iodide scintillator, it delivers exceptional low-dose contrast. Complete with an ergonomic quadrant alignment grid and a rapid-charging desktop dock, it ensures continuous, high-efficiency clinical workflows for busy hospital environments.

Quick Info.

The 1717 is a smart 17×17-inch wireless flat panel detector designed for seamless integration into both retrofit and new digital radiography systems. With a 139 μm pixel pitch and 16-bit ADC, it ensures high-definition image quality essential for detailed diagnostics. The cassette-size format fits ISO 4090 bucky trays and features stable iSync+ Automatic Exposure Detection (AED) for consistent imaging. Built for performance, it offers dependable wireless connectivity and long battery life, supporting a fast and efficient workflow in clinical and veterinary settings.

The Specific Parameters

ITEMSPARAMETERS
Detector Specifications
Detector TechnologyAmorphous Silicon
ScintillatorCsl
Active Area17 × 17 inch
Pixel Matrix3072 × 3072
Pixel Pitch139 μm
Spatial Resolution3.6 lp/mm
AD Conversion16 bit
Connectivity & Interface
WiFi2.4G and 5G, IEEE802.11 a/b/g/n/ac
Trigger ModeAED (Optional) / Software
Power & Battery
Battery Autonomy8 hours
Imaging Performance
Full Image Time5 seconds
Physical Specifications
Dimensions460 × 460 × 15 mm
Weight4.3 kg
Static Loading150 kg Uniformly
Ingress ProtectionIPX1
Environmental Conditions
Operating Temperature5 ~ 35 °C
Storage & Transport Temperature with Package-20 ~ 55 °C
Operating Humidity10 ~ 90% (Non-Condensing)
Storage & Transport Humidity with Package5 ~ 95% (Non-Condensing)
  • Direct-Deposition CsI Scintillator Matrix: Minimize patient radiation risk while capturing exceptional diagnostic clarity. The direct-deposition Cesium Iodide crystals dramatically increase photon conversion efficiency, delivering high Detective Quantum Efficiency (DQE) and sharp edge contrast for critical skeletal and soft-tissue thoracic assessments.

  • Dual-Slot Rapid Charging Desktop Dock: Achieve infinite operational uptime. The dedicated standalone charging bay manages and conditions your power packs simultaneously. Rapid-charge capabilities ensure that a fresh, high-capacity battery is always ready to go, allowing seamless transitions across demanding 24-hour hospital shifts.

  • Precision Geometric Quadrant Alignment Grid: Optimize clinical workflow and reduce retakes. The faceplate features durable, high-contrast structural grid alignment vectors that allow technologists to accurately center human anatomical landmarks instantly, ensuring flawless exposure coverage on the first attempt.

  • Ultra-Fast Wireless Synchronization via Smart AED: Retrofit any traditional analogue X-ray room instantly. Our full-screen Automatic Exposure Detection (AED) actively senses the incoming radiation beam within microseconds, managing image acquisition and pushing high-definition images to your workstation laptop via dual-band Wi-Fi without any physical connection to the generator.

  • Hospital-Grade Ruggedized Composite Enclosure: Engineered to withstand real-world clinical impacts. The ultra-slim, lightweight structural housing provides incredible rigidity, flexing safely under high-weight patient loads while isolating the sensitive internal amorphous silicon photodiodes from drop impacts or accidental clinical fluid exposure.

💡 Core Specifications At a Glance:

  • Detector Type: Amorphous Silicon (a-Si) Active Matrix Thin Film Transistor

  • Scintillator Screen: Advanced Direct-Deposition Cesium Iodide (CsI)

  • Active Capture Area: Industry Standard 14 x 17 Inch ($35 \times 43\text{ cm}$) Form Factor

  • Power Management: Exchangeable High-Capacity Batteries with Desktop Smart Dock Charging

  • Image Processing Sync: Full-Matrix Hardware AED with Native DICOM 3.0 Compliance

❓ Crucial B2B Component Sourcing Q&A

Q1: How many hours of active clinical runtime does a single battery pack provide, and what is the charging speed of the dock? A: Each high-capacity medical lithium battery pack supports up to 8 hours of active standby time or roughly 200 to 300 continuous exposures on a single charge. The bundled desktop smart charging dock features dual slots to simultaneously charge a backup battery alongside the primary unit, replenishing an empty power pack to 100% capacity in under 2.5 hours.

Q2: Can the quadrant alignment lines on the faceplate handle routine hospital sanitization protocols? A: Yes. The surface lines are integrated using advanced subsurface printing technologies beneath a heavy-duty, medical-grade composite protective layer. The lines will not fade, scratch, or peel, and the entire detector face is fully resistant to aggressive hospital disinfectants, including standard bleach dilutions, hydrogen peroxide, and 75% isopropyl alcohol wipes.

Q3: How does the software bundle integrate into our existing hospital PACS network? A: The system includes a fully featured imaging acquisition workstation package that communicates natively via standard DICOM 3.0 protocols. It seamlessly pushes captured high-definition patient files to your hospital’s local PACS server, RIS networks, or cloud storage arrays, ensuring immediate accessibility for reviewing radiologists and clinicians.

Q4: Is this system sensitive enough to capture high-contrast pediatric or neonate images at ultra-low radiation doses? A: Yes, absolutely. Thanks to the ultra-fine pixel pitch and the high sensitivity of the direct-deposition Cesium Iodide layer, the detector operates with an exceptionally low exposure trigger threshold. This allows radiologists to turn down the generator output (kV/mAs) significantly, capturing stunning diagnostic images of pediatric patients while strictly adhering to ALARA (As Low As Reasonably Achievable) safety principles.

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