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SCHWIND Amaris 750S User Manual

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SCHWIND eye-tech-solutions GmbH Mainparkstrasse 6-10 · 63801 Kleinostheim GERMANY
0483
USER MANUAL (Instruction for Use) TREAT
Original version
Excimer Laser

Table of Contents

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SCHWIND Amaris 750S Specifications

General IconGeneral
TypeExcimer Laser
Wavelength193 nm
Pulse Frequency750 Hz
Repetition Rate750 Hz
Beam ProfileGaussian
Latency-free trackingYes
Treatment Time1.5 seconds per diopter
Laser TypeExcimer Laser
Eye Tracking6-dimensional (6D) eye tracking
Spot Size0.54 mm FWHM

Summary

2 SAFETY

General Safety, Regulations, and Precautions

General safety notes, medical device regulations, and use restrictions.

Data, Virus, and Unauthorized Use Protection

2.6 Dangers from Laser Operation

Laser Radiation Hazards

Details risks associated with laser radiation, beam properties, and hazard distances.

Ablation Products and Gas Safety

Discusses ablation products, working gas, and ozone concerns.

2.7 Electrical Safety and External Connections

2.8 In Case of Emergency

2.9 Device Labelling

4.5 Laser Classification

4.6 Laser Description and Principles

4.7 Gas Supply

4.9 Microscope and Illumination

4.10 Particle Aspiration System

4.11 Plume Evacuation System

4.13 Foot Switch

5 INSTALLATION

5.1 General Installation Notes and Warnings

General notes, safety warnings, and service personnel requirements for installation.

5.2 Room and Installation Requirements

Specifies room, environmental, and dimensional requirements for installation.

5.5 Initial Installation and Start-Up

Outlines the process for initial installation, start-up, and user training by service personnel.

6 DEVICE CONTROL AND OPERATION

6.1 General Operation Notes

General notes on operating the AMARIS laser, emphasizing trained personnel and safety.

6.2 Control System Overview

Describes the device's control system, including Panel PC, keyboard, and touch screen.

6.3 Emergency Stop Switch

Explains the function and operation of the emergency stop switch.

6.4 Switching the Device On and Off

6.5 UPS - Mains Failure or Power Breakdown

6.6 Control Panel of the Excimer Laser

6.7 Matrix Display

6.8 Operating the Microscope

6.10 Positioning Slits

6.12 Software Managed Operation

User Login and Password Input

Process for logging into the AMARIS software with user credentials and password management.

6.12.3 Main Menu Navigation

6.12.4 Swivel Laser Arm Movement

6.12.5 Troubleshooting

7 SERVICE PROCEDURES AND FUNCTIONS

7.2 Registration / User Accounts

7.3 Settings Menu

7.5 Treatment Assistant Manager (TAM)

7.6 Software Update

7.7 Fluence Measurement

7.7.1 General Fluence Measurement

Explains the purpose and process of fluence measurement for system calibration.

7.7.3 Performing a Fluence Test

7.7.5 Troubleshooting – Fluence Test

7.8 Drift Test

7.9 Gas Exchange - Excimer Laser

7.10 Export of Log File and Treatment Data

7.11 Printout and Video (Export of Treatment PDF and Video)

7.12 Treatment Printout

8 TREATMENT SELECTION

8.2 Planning SCHWIND CAM Treatments

8.2.1 Planning of New Treatments

Steps for planning new treatments using the SCHWIND CAM software.

8.3 Performing SCHWIND CAM Treatments

8.4 Recovery Function

8.5 Eye Tracking

Eye Tracking Quality

Guides on checking eye tracking image quality before treatment for accuracy.

Static Cyclotorsion Control

Details the process of static cyclotorsion correction for eye alignment.

Dynamic Cyclotorsion Correction

Explains dynamic cyclotorsion correction to compensate for eye rotation during surgery.

6D Eye Tracking

Describes the optional 6D eye tracking functionality for enhanced movement compensation.

7D Eye Tracking (Latency Free)

Explains the 7D eye tracking feature for compensating system latency.

8.6 Online Coherence Pachymetry (OCP)

8.7 Timer

9 CLEANING AND MAINTENANCE

9.2 Cleaning of Non-Sterile Parts

10 MAINTENANCE

10.3 Particle Aspiration System Maintenance

10.5 Changing of Gas Bottles

10.6 Technical Security Check (TSC)

11 TECHNICAL DATA

Laser/Electrical Data and Environmental Conditions

12.3 Electrical Safety Parts

Table 3: ELECTROMAGNETIC IMMUNITY (1)

Table 4: ELECTROMAGNETIC IMMUNITY (2)

12.4.2 Essential Performance

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