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Canon / Toshiba Aplio i700 / i800 / i900 RX-RC & TX Board Repair Service (Hardware Data Transfer Busy / Cine Memory Cleared / Image Artifact / No Image / Signal Error)

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medical imaging•Verified
Trader
•Based in Hong Kong, 🇭🇰 HK
•Website not published
•Pricing available on inquiry

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Product Details

Condition
Used - Good
Year of Manufacture
2025
Country of Origin
🇨🇳 CN
MOQ
1
Model
i700, i800, i900 RX-RC board
Supplier status
Pricing available on inquiry
Description

The Canon Toshiba Aplio i700, i800, and i900 ultrasound systems are high-end diagnostic imaging platforms widely used in radiology, cardiology, and advanced 4D imaging applications. These systems rely on a highly synchronized RX-RC (Receive/Control board) and TX (Transmit board) architecture to manage ultrasound signal transmission, reception, and real-time cine image processing.

Any failure in these front-end signal boards can directly affect image quality, system stability, and data processing performance.

Common Fault Symptoms We Repair

Our professional board-level repair service covers typical RX-RC and TX board failures, including:

  • “Hardware data transfer is busy” system error
  • “Cine memory is cleared” or loss of stored cine loops
  • Severe image artifacts (noise, streaks, distortion, shadowing)
  • No image / no echo output from probe
  • Intermittent image freezing or system lag
  • Cine loop playback failure or memory corruption
  • System slow response during scanning
  • Random image dropouts or unstable imaging

These issues are commonly linked to data transmission failure between RX receive chain and TX transmit modules, or internal memory/processing instability.

Technical Overview (RX-RC & TX Board Function)

In the Canon Toshiba Aplio i-series architecture:

  • TX Board (Transmit Unit) generates high-voltage excitation pulses sent to the ultrasound probe
  • RX-RC Board (Receive / Control Unit) processes returning echo signals and manages signal routing and timing control
  • Cine memory module stores real-time imaging loops for playback and analysis
  • High-speed data bus coordinates image reconstruction and processing

Failure in either RX or TX boards disrupts the full ultrasound signal chain, resulting in image loss, artifact generation, or system error messages.

Common Root Causes

  • High-speed data bus communication failure (RX ↔ TX sync error)
  • Cine memory IC corruption or storage instability
  • TX pulse generation circuit failure (HV driver degradation)
  • RX signal amplification or ADC failure
  • FPGA / processing chip malfunction on RX-RC board
  • Power rail instability affecting front-end modules
  • BGA solder joint fatigue due to thermal cycling
  • EMI interference affecting high-frequency signal transmission

Supported Models

  • Canon Toshiba Aplio i700
  • Canon Toshiba Aplio i800
  • Canon Toshiba Aplio i900
  • Related Aplio high-end ultrasound platforms

Our Repair Service Includes

  • Full diagnostic testing of RX-RC and TX boards
  • Signal path analysis (transmit & receive chain verification)
  • Cine memory repair and data stabilization
  • FPGA / IC-level troubleshooting and replacement
  • High-voltage TX circuit repair
  • RX signal chain restoration (ADC / amplification stages)
  • System-level imaging validation (2D / 3D / 4D)
  • Stability testing under continuous scanning load

Quality Assurance

  • Full system imaging verification before shipment
  • Cine loop recording and playback testing
  • Multi-mode ultrasound scanning validation
  • Long-duration stability testing
  • Cleaned, repaired, and fully tested boards

Service Terms

  • Turnaround time: 2–5 working days
  • Warranty: 60 days after repair
  • Service type: Component-level electronic repair (not replacement unless required)
  • Worldwide service available

Why Choose Us

We specialize in Canon Toshiba Aplio ultrasound system front-end board repair, including RX-RC receive boards and TX transmit modules. Our service provides a cost-effective alternative to OEM replacement while restoring full imaging performance and system stability.

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