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GE RIC5 9 D Replace Lens 3D 4D Probe Repair

Product Details:
Brand Name: GE
Model Number: RIC5-9-D
Payment & Shipping Terms:
Minimum Order Quantity: 1
Price: Negotiable
Packaging Details: Neutral Package
Delivery Time: 1-5 work days
Payment Terms: T/T,Western Union
  • Detail Information
  • Product Description

Detail Information

Category: Diagnostic Ultrasonic Service Description: Lens Problem
Service: Replace Lens Warranty: 60 Days After Fixed
Condition: Original Purpose: Diagnosis For Ultrasound
Highlight:

Replace Lens 4D Probe Repair

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RIC5-9-D 3D Probe Repair

Product Description

GE RIC5 9 D Replace Lens 3D 4D Probe Repair

 

Replace GE RIC5-9-D Lens

 

Repair time: 2-5 days

Warranty: 60 days after fixed

 


We provide repair service on most common probes, 3D/4D transducers, and Endo/TEE probes.

With 10 years experiences on probe repair, our technical engineer team own the most advanced probe repair processes, which enables us to fix probes from a basic lens fault to 4D /TEE fault.

Once repaired, all probes will go through an extensive testing process ,until reach their optimal condition.

 

 

 

GE RIC5 9 D Replace Lens 3D 4D Probe Repair 0


GE RIC5 9 D Replace Lens 3D 4D Probe Repair 1

 

Other hot GE models we can repair:

 

GE C1-5-D
GE C1-5-RS
GE 4C
GE 4C-RS
GE 4C-A
GE 4C-D
GE 4C-SC
GE E8C/E8C-RS
GE E8CS
GE RIC5-9-D
GE 3CRF-D
GE C1-6-D
GE RAB4-8-RS
GE RAB2-5-RS
GE 6S-RS
GE 12L-RS
GE 3SC-RS
GE L6-12-RS
GE 11L
GE 11L-D
GE 12L-RS
GE 8C
GE 3S
GE 3S-RS

 

 

 

Knowledge point

 

Medical ultrasound (also known as diagnostic sonography or ultrasonography) is a diagnostic imaging technique, or therapeutic application of ultrasound. It is used to create an image of internal body structures such as tendons, muscles, joints, blood vessels, and internal organs. Its aim is often to find a source of a disease or to exclude pathology. The practice of examining pregnant women using ultrasound is called obstetric ultrasound, and was an early development and application of clinical ultrasonography.

Ultrasound are sound waves with frequencies which are higher than those audible to humans (>20,000 Hz). Ultrasonic images, also known as sonograms, are made by sending pulses of ultrasound into tissue using a probe. The ultrasound pulses echo off tissues with different reflection properties and are recorded and displayed as an image.

Many different types of images can be formed. The most common is a B-mode image (Brightness), which displays the acoustic impedance of a two-dimensional cross-section of tissue. Other types can display blood flow, motion of tissue over time, the location of blood, the presence of specific molecules, the stiffness of tissue, or the anatomy of a three-dimensional region.

Compared to other dominant methods of medical imaging, ultrasound has several advantages. It provides images in real-time and is portable and can be brought to the bedside. It is substantially lower in cost than other imaging modalities and does not use harmful ionizing radiation. Drawbacks include various limits on its field of view, such as the need for patient cooperation, dependence on physique, difficulty imaging structures behind bone and air or gases,and the necessity of a skilled operator, usually trained professional.

 

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