Installation Instructions

REVERSING THE DOOR SWING (if desired)

3REVERSE DOOR HANDLE AND CAPS (CONT.)

EReassemble the inner handleto the outer handle, using 3 screws (#8 x 0.625 tapping screws).

 

3 x D

 

Screws

 

(inner

Inner

handle)

handle

 

FAssemble the new right-side door cap

(from reversibilitykit), using 2 screws (#8 x 0.625 tapping screws).

2 x D Screws

Door cap

Put the chrome cover aside on a soft, protected flat surface.

4REVERSE HINGE AND CAPS

Lay the inner door down on a soft, protected flat surface so that the inner part faces up.

Remove the 2 black plug buttons on the opposite side of the hinge, using a putty knife or thin-blade screwdriver.

Disassemble the inner door cap from the inner door by removing 2 screws (#8 x 0.75 tapping screws).

Disassemble the hinge from the innerdoor by removing 4 screws (#8-32 x 0.50 machine screws).

 

 

Inner door

 

 

cap

 

2 black

2 x D

Remove

plug buttons

Screws

 

 

4 x E screws

 

Hinge

• Assemble the hinge to the opposite side of the inner door, using 4 screws (#8-32 x 0.50 machine screws).

Assemble the new inner door cap (from

reversibility kit) on the oppositeside of the hinge, using 2 screws (#8 x 0.75 tapping screws).

Install the 2 black plug buttons on the opposite side of the hinge in the 2 remaining holes.

Hinge

Replace

 

 

2 x D

Replace

Replace

screws

4 x E

 

2 black

screws

Inner

plug buttons

 

door cap

 

 

36

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Image 36
GE UPVH890 installation instructions Reverse Hinge and Caps

UPVH890 specifications

The GE UPVH890 is a state-of-the-art ultrasound machine that redefines imaging capabilities in the medical field. It is designed for comprehensive diagnostic applications, emphasizing portability, versatility, and advanced imaging technologies. This device stands at the intersection of functionality and user-friendliness, making it a valuable asset in various healthcare settings, from hospitals to outpatient clinics.

One of the main features of the UPVH890 is its lightweight design. Weighing significantly less than traditional ultrasound machines, it offers unparalleled portability, allowing healthcare providers to transport it easily from room to room or even to remote locations. This is particularly advantageous in emergency situations where rapid ultrasound assessments are crucial.

The UPVH890 employs cutting-edge imaging technologies, including advanced three-dimensional and four-dimensional imaging capabilities. These features enable clinicians to visualize complex anatomical structures in real-time, enhancing diagnostic accuracy. The system is equipped with enhanced Doppler imaging, crucial for evaluating blood flow, and provides high-resolution images that aid in better assessment of conditions.

Additionally, the device incorporates artificial intelligence (AI) algorithms, which streamline the workflow and improve image interpretation. The built-in AI assists clinicians by providing automated measurements and suggesting the most likely diagnosis based on the obtained data, ultimately leading to quicker and more accurate patient care.

The UPVH890 also boasts an intuitive touchscreen interface that facilitates easy navigation through various settings and functions. This feature reduces the learning curve for new users and enhances efficiency for experienced operators. The customizable user interface allows healthcare providers to tailor the machine's settings according to their specific preferences and the needs of their patients.

In terms of connectivity, the UPVH890 supports wireless communication, enabling seamless integration with electronic medical record (EMR) systems. This capability ensures that patient information is readily available, promoting coordinated care and efficient follow-up processes.

Overall, the GE UPVH890 ultrasound machine stands out for its innovative features, intelligent technologies, and user-centric design that collectively enhance diagnostic efficiency and patient care. It represents a significant advancement in the field of medical imaging, catering to a wide range of clinical needs while ensuring ease of use and accessibility.