IRay Technology 02110113 Wireless Digital Flat Panel Detector User Manual 2

iRay Technology (Shanghai) Ltd. Wireless Digital Flat Panel Detector Users Manual 2

Contents

Users Manual-2

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Document ID2816527
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Document DescriptionUsers Manual-2
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Date Submitted2015-11-19 00:00:00
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Document TitleMicrosoft Word - 037-201-02 Mars1717V User Manual A1 20151106
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3. The rule of Multi-Share control is based on IP address. The second terminal with different IP address is
not allowed to operate panel after the first one connected. If there is no command transmission between panel
and Workstation over 5 minutes, panel releases access authority.
4.3 Panel Configuration
Click “Config”
Set parameters
Note: 1. If panel works in Isync Plus mode, it is not allowed to change any parameters and write into ROM
or RAM. User is required to switch to software mode, change parameters and then switch to Isync Plus
mode. On the other hand, we do not recommend user to switch working mode too often.
4.4 Correction and Calibration Template Generation
Iray recommends performing correction and calibration after installation or any major change on the system
settings and hardware configuration. On the other hand, it is also recommended to do the correction and
calibration in each 6 months.
4.4.1 Pre‐offset Template Generation
If panel is configured to do Pre-offset correction, Pre-offset Template is necessary. See below
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Click “ Create”, Choose “Defect”
Click “Create Offset”, wait until
image acquisition ends
4.4.2 Gain Calibration Template Generation
Before Gain template generating, make sure SID1.2m, no copper is required,
Choose “Post” offset mode1
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Click “ Create”, Choose “Gain”
Set “Expected Gray Value” 10000;
Click “New Gain Point”;
Set “Acquire Delay” 3000;
If panel is in software mode, click
“Prep” ,shoot X-ray, click
“Acquire”;
If panel is in Inner mode, click
“Prep”, shoot X-ray;
If panel is in Isync Plus mode,
click “Prep Acquire”, wait for
ready, shoot X-ray. Time window
can be set by “Acquire Delay”;
Wait for Post-offset image
uploaded, there will be value
shown in “current average” box,
change X-ray dose to make sure
“current average” in the range of
10000±100, If yes, Click “Select”
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Repeat the same operation for 4
times, “Create Gain Correct file”
button can be available, Click
“Create Gain Correct file”
Click “OK”
Note:1 please use software post offset correction.
4.4.3 Defect Correction Template Generation
Before Defect template generating, make sure SID1.2m, no copper is required,
Choose “Post” offset mode1
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Click “ Create”, Choose “Defect”
Click “start creating”, message box
will show you the first image value
for defect correction2;
If panel is in software mode, click
“Prep” ,shoot X-ray, click
“Acquire”;
If panel is in Inner mode, click
“Prep”, shoot X-ray;
If panel is in Isync Plus mode,
click “Prep Aquire”, wait for ready,
shoot X-ray. Time window can be
set by “Acquire Delay”;
Click “start creating” to start the
second X-ray shoot
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Click “start creating” to start the
third X-ray shoot
Click “start creating” to start the
fourth X-ray shoot
After the fourth X-ray shoot, you
do not need to change the X-ray
dose, just repeat operation of “start
creating” and image acquisition
until it comes to the 19th images.
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Click “Create Defect”, wait until it
ends
Note:1 please use software post offset mode.
2. Make sure your X-ray dose is right, if your dose is out of the range, idemo will remind you to adjust the
dose. Then you can click “start creating” and try again.
4.4.4 Lag Template Generation
Lag template is only used in Isync plus mode, if panel works in other mode, user does not have to complete
lag template. Before Lag template generating, make sure SID 1.2m, no copper is required.
Choose “Post” offset mode
Choose “curr” gain mode
Choose “curr” defect mode
Click “Create”
Choose “Lag” correction
Click “Start creating”
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Change X-ray dose to make sure
average gray value in the range of
10000±100, Shoot X-ray, Postoffset image is shown on screen,
make sure exposure line between
100 and 500;
Shoot X-ray, another Post-offset
image is shown on screen, make
sure exposure line between 2572
and 2972;
Image acquisition finished;
Click “Create Lag Map”;
Display “Lag calibration finished”,
correction finished, close
correction window
4.5 Image Acquisition Continually
Image Acquisition continually can be used only in software mode and inner mode, it is not supported in
Isync Plus mode. The operation is designed for panel testing, not for customer using.
“SEQU” is the command to start image acquisition and “STOP” is the opposite. If user wants to change
frequency of image acquisition, change parameters in “Config-General Setting-Time Span”.
4.6 Image save
“SAVE” provides two features of image saving for user. The first is saving multiple images, the second is
saving single image.
4.6.1 Multiple images
Click “Save”
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Set the number of images in blank;
Choose the saving path;
Click “Begin Save”;
4.6.2 Single image
Click “Save”
Click “Save Directly”
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Choose the saving path;
Click “save”;
4.7 Image Check and upload
“OPEN” provides three feature for image check and uploading. Local Image Check, Panel Image Upload and
Panel Image Check. Local Image Check defines function to check image saved in Workstation. Panel Image
Upload defines function to upload images stored in panel. Panel Image Check defines function to check
images stored in panel.
4.7.1 Local Image Check
Click “Open”
Click “Open Local File”
Choose images stored in Workstation,
images would be shown on screen
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4.7.2 Panel Image Upload
Before panel image uploading, FTP server is necessary.
Make sure firewall is closed
Start “FTPServer.exe”
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Choose “Configuration”;
Set FTP Port “21000”;
Click “Start” button;
Panel Image is uploaded as following.
Click “Open”
Click “Get File List”
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Images stored in panel would be shown in
the list. From the list, user could check
basic information of images
Select images user wants;
Click “Start Upload”;
Images would be uploaded to
*/idemo/upload
If user want to upload multiple images,
select multiple images, click “start
upload”, during uploading, user could
click “stop upload” to stop uploading
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4.7.3 Panel Image Check
If user wants to check images stored in panel immediately, see below
Click “Open”
Select image user need;
Click “open in list”
4.8 Defect Template Check and Modification
Idemo provides function to check defect template. If defect template has updates, user could add and delete
defect pixel or defect lines by modifying defect template opened.
4.8.1 Defect Template Check
Click “Open”
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Select defect template;
Click “open”;
Select Product Size “Venu1417
(2304*2800);
Click “OK”, Defect template is shown on
screen;
Click “Close” to close Defect template
4.8.2 Defect Template Modification
Click “Open”
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Select Defect Template;
Click “Open”;
Set product size “Venu1417 (2304*2800);
Click “OK”
If there is new defect pixel, input
coordinate, click “Add”;
If pixel is labeled as defect by mistake,
input coordinate, click “Delete”
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If there is new defect line, input
coordinate, click “Add”;
If line is labeled as defect by mistake,
input coordinate, click “Delete”
Click “Close”
4.9 Correction and Calibration Management
4.9.1 Correction and Calibration template synchronization
Panel supports correction and calibration template storage. So template in panel could be uploaded to
Workstation, and template in Workstation could also be downloaded to panel. Before synchronization, FTP
server is necessary.
Make sure firewall is closed
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Start “FTPServer.exe”
Choose “Configuration”;
Set FTP Port “21000”;
Click “Start” button;
Click “Config”
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Select “HW Correction”
If user wants to download correction and
calibration template to panel. Click
“Download” from top to bottom;
If user wants to upload correction and
calibration template from panel. Click
“Read out” and “Update Local” from top
to bottom;
4.9.2 Correction and Calibration management
Panel supports two ways to do correction and calibration. Software Correction and Calibration defines the
scenario that Workstation completes all correction and calibration. If panel complete all correction and
calibration by itself, it is named as Hardware Correction and Calibration.
4.9.2.1
Software Correction and Calibration
Click “Config”
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Select “HW Correction”;
Set Offset Mode “NO”;
Set Offset “POST”;
Set Gain “CURR”;
Set Defect “CURR”;
4.9.2.2
Hardware Correction and Calibration Management
Click “Config”
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Select “HW Correction”;
Set Offset Mode “Post offset”;
Set Gain “CURR”;
Set Defect “CURR”;
4.10 Sleep and Wake Up
Panel supports sleep and wake up operation. User can trigger sleep manually or automatically, but there is
only one way to wake up panel.
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4.10.1 Sleep
4.10.1.1
Manual Sleep
Click “Sleep”, panel will go to sleep
immediately
Message box shows that panel is sleeping
4.10.1.2
Automatic Sleep
To go to sleep automatically, user should set the time flag first. If panel detects that there is no operation in
time flag, panel would go to sleep. If time flag is set zero, panel would not go to sleep automatically.
Click “Config”
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Set “auto sleep timeout” value user need
If there is no operation in time flag user
sets, panel would go to sleep
Message box shows that panel is sleeping
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4.10.2 Wake Up
If panel is sleeping, click “Wake Up”
Message box shows that panel is ready
4.11 Firmware Update
Panel supports updating firmware. If user wants to update new firmware, see below
4.11.1 MCU Update
If current MCU version is 2.5.1.*, we should follow instruction below.
Open “mini Cover”
Remove original Ethernet cable, insert Jlink download cable
Start J-flash ARM
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Click “file->open data file”
Click “option->project setting”,
Set “connection to J-link” USB mode
Click “Target Interface”, Choose “SWD”
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Click “ CPU”;
Select “ST STM32L151C8”;
Click “Target->Connect”
Click “Target-> Erase”
Click “Target->Program”
Click “Target->Start Application”
Note:1. Make sure panel is powered up.
If current MCU version is 2.5.2.*, Please refer to 4.10.2 and 4.10.3 for upgrading.
4.11.2 FTP Server
Make sure firewall is closed
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Click On “FTPServer.exe”
Choose “Configuration”, set “FTP Port”
21000, others as default
Start FTP Server
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4.11.3 Firmware Update
Put update file in the directory of
“*\idemo\update”
Click “Config”, Choose Firmware
Update
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Choose Update Type “core1”
Click “Select”, choose right update file2
Click “update”, waiting for message
box3
Click message box, waiting for end of
rebooting4;
Panel finishes rebooting, Click “OK” 5
Note:
1. It is not limited to “Core”, actually, other choice is also ok.
2. If it is MCU update, choose MCU image file. Otherwise, choose ALL-Image file, Please make sure update
file is selected, if not, panel will be not in use after updating.
3. There is a progress bar for indication. Make sure battery is inserted and battery capacity is over 25%
4. This rebooting function is controlled by panel itself. It has the same function with “ Reset FPD”
5. Please make sure Idemo show “ Ready”. It can also be checked by click “ Config” button, there is
firmware version.
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4.12 Short cut
iDemo supports some shortcuts as follows:

Double-click the left mouse button, the image displayed in center and with
maximum size.

Double-click the right mouse button, the window level and width adjusted to
WL:8191/WW:16383.

Drag the left mouse button, drag the image displayed.

Lateral-drag the right mouse button to adjust the window width, and verticaldrag the right mouse button to adjust the window level.

F3 Key: Quickly adjust the image window width and window level.
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4.13 Software
4.13.1 Main GUI
iRay provides test tools, such as iDemo for testing the basic performance of detector. It can connect the
detector, acquire image, image correct and calibrate.
Function description of regions and buttons within the main window as follows:
Start/End
13
Open/Close
Open or close defect map
Sleep/Wake
Load or unload NIC device
driver
Sleep or wake up panel
14
Offset
Prep
Clear lags of the panel
15
Gain
Abort Exp
Close exposure Window
16
Defect
Acquire
Acquire an image without
clearance
17
Create
Open or close software
post offset
Open or close gain
calibration
Open or close defect
correction
Generate gain template
and defect template
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Check ID
Check panel SN
18
Version of the idemo
Prep Acquire
19
Status of the idemo
Config
Clear lags and acquire an
image
Configure the panel
20
Panel feedback message
Sequ
21
Acquisition interval between two images
10
Stop
22
11
Save
23
Pixel X/Y coordinate and gray scale value
of Pixel(14 bit)
Image acquisition instruction box
12
Open
Start acquiring images
continually
Stop acquiring images
continually
Save images continually or
save an image
Open local images(.DCM)
or open images in the panel
24
WiFi signal and battery capacity indication
25
Region of image display
4.13.2 Message Box
4.13.2.1
Status Box
Status box defines the current status of panel.
Value
Description
Offline
Idemo loose connection with panel, it does not receive heart beat
Ready
Idemo builds connection with panel, panel is ready for receiving new operation
Busy
Idemo builds connection with panel, panel is busying on the last operation, it can
not be interrupted
Sleeping
Idemo builds connection with panel, panel has gone in sleep
Waking
Idemo builds connection with panel, panel is being wake up
Timeout
Command executes overtime
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Feedback Box
Feedback box shows feedback message from panel.
4.13.2.3
Acquisition Interval Box
Acquisition Interval Box shows the time between two image acquired currently.
4.13.2.4
Coordinate and Gray Scale Box
Coordinate and Cray Scale Box show the coordinate and gray scale of mouse.
4.13.2.5
Image Acquisition Box
Image Acquisition Box shows whether image is uploading
Color
Description
Red
Image is uploading from panel
Green
others
4.13.2.6
Battery and Connection Box
Battery and Connection Box shows battery capacity, wireless signal level and wire connection.
4.13.2.7 Progress Bar
Progress Bar defines as following.
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If progress bar is Green when shooting X-ray, image quality is acceptable, otherwise image quality would
degrade.
4.13.3 Configuration GUI
4.13.3.1
General Settings
Item
Detector
Info
Product type
Description
Type of panel product
Serial Number
Serial number of the panel
NO
Version
Detail
Lib Version
Version number of idemo
NO
Core Version
Version number of ARM application
NO
Kernel Version
Version number of ARM OS Kernel
NO
Main Version
Version number of Core FPGA
NO
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details
General
Settings
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Read Version
Version number of Read FPGA
NO
MCU Version
Version number of MCU
NO
Temperature
Panel inner temperature(Read Board and Core
Board)
Humidity
Panel inner Humidity
Trigger
Detector trigger mode:
NO
NO
1.Outer
2.Inner
3.Software
YES
4.PREP
5.Service
6.FreeSync (Default)
Time Span
This parameter is used only in continual
acquisition. The time span is the time interval
YES
between two nearby acquisition process
Exp Window
Exposure window is used in Inner mode, it
YES
defines the time for X-ray shooting.
FreeSync Window
Acquire Delay
Not Used
YES
Delay time before image acquisition.
YES
Delay time
Exposure Window in Isync Plus mode/Delay
time between clearance and acquisition in other
YES
mode.
Auto Sleep Timeout
Integrate
Time span of idle before going to sleep
YES
The integration time for the photo diode
NO
Inner Delay
The real delay time between clearance and
acquisition most recently.
Button
NO
Recover ROM
Recover configuration to factory setting
Write ROM
Write configuration data into nonvolatile memory
Read ROM
Read configuration data from nonvolatile
memory
Write RAM
Write configuration data into volatile memory
Read RAM
Read configuration data into volatile memory
Reset FPD
Reboot the panel
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Exit configuration GUI
Query Live Time
Check the active time of panel
Advanced Settings
Description
Row Pre Delay
Delay time before acquiring row data
VT
Voltage corresponding to the charge
compensation
Freesync Center
Not used
Modify
YES
YES
YES
Threhold
Row Post Delay
Delay time after acquiring row data
YES
PGA
Integrator capacitor range.
YES
Freesync Edge
Not used
YES
Threhold
Detector Auto Clear
Set the detector in auto clear mode
Detector Auto Clear
Auto clear period for panel
Period
Mammo
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Settings
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Exposure Mode
AEC Main Time
Not used
Not used
NO
NO
NO
NO
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Shock
Sensor
Syncbox
Button
4.13.3.3
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Dyna Offset Mode
Dyna Offset Time
Correct Folder
Read Grid Status
Read Shock log
Clear Shock Log
Set Threshold
Not used
Not used
Not used
Not used
Read shock sensor log
Clear shock sensor log
Shock sensor threshold
Read Shock sensor threshold from panel
Write Shock sensor threshold to panel
Tube Ready Time
Not used
NO
NO
NO
NO
NO
NO
YES
NO
NO
NO
Not used
NO
Not used
NO
Read Log from panel
NO
Network Settings
Client Mode:
AP Mode:
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Description
Item
Mode
Client
Mode
AP Mode
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Modify
Client
Set panel in client mode
NO
AP
Set panel in AP mode
NO
Add
Add available wireless AP account
NO
Del
Delete Exist wireless AP account
NO
Up
Wireless AP account move up
NO
Down
Wireless AP account move down
NO
Default
Set AP account as default connection
NO
SSID
Wireless AP SSID when panel in AP mode
YES
Key
Wireless AP Key when panel in AP mode
YES
Security
Wireless AP Security method when panel in AP
mode
Frequency
Wireless AP frequency(2.4GHz and 5GHz) when
panel in AP mode
Country
Wireless AP Country when panel in AP mode
Band
Wireless AP Band(HT20 and HT40) when panel
in AP mode
Channel
Wireless AP Channel when panel in AP mode
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YES
YES
YES
YES
YES
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FPD
Button
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DHCP function when panel in AP mode
YES
Scan Local Wlan
Scan local wifi signal when panel in AP mode
YES
IP
Network IP address of panel
YES
Port
Network Port of panel
NO
MAC
Network MAC address of panel
YES
Image Channel
Network protocol of panel
YES
Read Wifi Status
Read wireless module status from panel
NO
Read Config from
Read wireless module setting from panel
NO
Write Config to FPD
Write wireless module setting to panel
NO
Scan from FPD
Scan Wifi signal by panel
NO
HW Correction
Item
HW
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DHCP Server
FPD
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Description
Hardware offset mode of panel
NO: no hardware offset mode
Pre: hardware pre-offset mode
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Post: hardware post-offset mode
Gain Map
Gain calibration mode of panel
NO
Do in SDK: software gain calibration
Do in HW: hardware gain calibration
Defect Map
Defect correction mode of panel
NO
Do in SDK: software defect correction
Do in HW: hardware defect correction
Lag Map
Lag correction of panel
NO
Download
Download correction and calibration template to
NO
panel
Read out
Upload correction and calibration template from
NO
panel
Update local
Replace local correction and calibration template
NO
with template uploaded currently
Update status
Get correction and calibration configuration from
panel
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Firmware Update
Description
Item
Firmware
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Update Type
Not used
YES
Image File
Local address of update file
NO
Progress
Progress bar of updating
NO
Select
Select update file
NO
Update
Start update
NO
Reload
Reload firmware of panel
NO
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4.13.4 Correction and Calibration
4.13.4.1
Gain Calibration
Description
Item
Modify
Expected
Average
Expected Gray Value
Not used
YES
New Gain Point
Start generating gain template
NO
New
Point
Selected Gain
Number of selected gain point
NO
Current Average
Average value of the complete image
NO
Center Average
Average value of the image in center ROI
NO
( 100X100)
Button
Select
Select and save current gain point
NO
Prep
Send “Clear” command to panel
NO
Acquire
Send “Acquire” command to panel
NO
Prep Acquire
Send “Clear Acquire” command to panel
NO
Create Gain Correct
Start generating gain Calibration template
NO
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File
4.13.4.2
Defect Correction
Item
Create
Light File
Button
Description
Modify
Current
Current sequence of defect point
NO
Start creating
Start defect point acquisition
NO
Auto completion
Automatically acquire defect point
NO
Refresh HW Offset
Updating pre-offset template in panel
NO
Prep
Send “Clear” command to panel
NO
Acquire
Send “Acquire” command to panel
NO
Prep Acquire
Send “Clear Acquire” command to panel
NO
Create Offset
Generate pre-offset template
NO
Template
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NO
4.13.5 Image Check and upload
Description
Item
Remote
File List
Modify
Index
Sequence number of image
NO
File name
Name of image in panel
NO
Create Time
Acquisition time of image in panel
NO
Attr
Image label
NO
0x01—Do Offset
0x02—Do Gain
0x04—Do Most gain
0x08—Do Defect
0x10—Post Offset Raw Image
Button
Delay Time
Time between clear and image acquisition
NO
Get File List
Get file list from panel
NO
Start Upload
Start uploading image selected
NO
Stop Upload
Stop uploading process
NO
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Open in List
Open image selected
NO
Open Local File
Open local images in Workstation
NO
4.13.6 Infrared Registration
Description
Item
Work Mode
Work mode of infrared registration tools
Write Only: infrared registration tools is allowed
to write to panel
Read Only: infrared registration tools is allowed
to read from panel
Read & Write: infrared registration tools is
allowed to read from panel and write to panel
Read &confirm by User: infrared registration
tools is allowed to read from panel and write to
panel only when confirmed by user
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Configuration
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AP Mode
Set panel in AP mode or Client mode
YES
SSID
Wireless AP SSID when panel in AP mode
YES
Key
Wireless AP Key when panel in AP mode
YES
Security
Wireless AP Security way when panel in AP
YES
mode
Frequency
Wireless AP Frequency(2.4GHz and 5GHz)
YES
when panel in AP mode
Country
Wireless AP Country Code when panel in AP
YES
mode
Band
Wireless AP Band(HT20 and HT40) when panel
YES
in AP mode
Channel
Wireless AP Channel when panel in AP mode
YES
Client Mode
Configuration
SSID
Wireless SSID when panel in Client mode
YES
Key
Wireless Key when panel in Client mode
YES
Button
Apply
Save wireless parameter in infrared registration
NO
tools
Start
Start write wireless parameter in panel
NO
Exit
Exit infrared registration tools
NO
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5 Regulatory Information
5.1 Medical equipment safety standards

Medical equipment classification
Type of protection against electrical shock
Class I Equipment, using medical approved adaptor supply
Internally powered Equipment, using battery power supply
Degree of protection against electrical
Without Applied Parts
shock
Degree of protection against ingress of
IPX0 (Mars1717V)
water
IPX0 (Charger-KV)
Mode of operation
Continuous operation
Flammable anesthetics
Not suitable for use in the presence of a flammable
anesthetic mixture with air or with oxygen or nitrous oxide
Not suitable for use in the oxygen rich environment
Note: The product safety standards that apply to Mars1717V which includes the main units: detector and
charger-kv .

References harmonized standards under Directive 93/42/EEC
MDD (93/42/EEC)
Medical Device Directive
EN ISO 13485:2012/EN
Medical devices --- Quality management systems ---
ISO 13485:2012/AC:2012
Requirements for regulatory purposes
EN ISO14971: 2012
EN 60601-1:2014
EN 60601-1-2:2007
Medical device – Application of risk management to medical
devices
Medical electrical equipment -- Part 1: General requirements for
basic safety and essential performance
Medical electrical equipment – Part 1-2: Collateral standard:
Electromagnetic compatibility – Requirements and tests
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Medical electrical equipment -- Part 2-54: Particular
EN 60601-2-54:2009
requirements for the basic safety and essential performance of
X-ray equipment for radiography and radioscopy
Secondary cells and batteries containing alkaline or other nonacid electrolytes – Safety requirements for portable sealed
IEC 62133:2012
secondary cells, and for batteries made from them, for use in
portable applications
Medical electrical equipment - Characteristics of digital X-ray
EN 62220-1:2004
imaging devices - Part 1: Determination of the detective
quantum efficiency
EN 62304:2006/AC:2008
Medical device software - Software life-cycle processes
EN 62366:2008
Medical devices - Application of usability engineering to
medical devices
5.2 Guidance and manufacture’s declaration for EMC
 Electromagnetic emissions
Mars1717V is intended for use in the electromagnetic environment specified below. The customer or the
user of Mars1717V should assure that it is used in such an environment.
Emission Test
Compliance
Electromagnetic Environment - Guidance
Mars1717V uses RF energy only for its internal function. Therefore, its
RF emissions CISPR 11
GROUP1
RF emissions are very low and are not likely to cause any interference in
nearby electronic equipment.
RF emissions CISPR 11
Harmonic emissions
IEC 61000-3-2
Class B
Class B
establishments and those directly connected to the public low-voltage
power supply network that supplies buildings used for domestic
Voltage fluctuations/ flicker
emissions
Mars1717V is suitable for use in all establishments, including domestic
Complies
purposes.
IEC 61000-3-3
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Electromagnetic immunity
Mars1717V is intended for use in the electromagnetic environment specified below. The customer or the
user of Mars1717V should assure that it is used in such an environment.
Immunity Test
Electrostatic discharge
IEC 60601 Test
Level
Compliance Level
Electromagnetic Environment - Guidance
Floors should be wood, concrete or ceramic tile. If
±6 kV contact
±6 kV contact
±8 kV air
±8kV air
±2 kV for power
±2 kV for power
supply lines
supply lines
Mains power quality should be that of a typical
±1 kV for input/
±1 kV for input/
commercial or hospital environment.
output lines
output lines
±1 kV differential
±1 kV differential
Surge
mode
mode
Mains power quality should be that of a typical
IEC 61000-4-5
±2 kV common
±2 kV common
commercial or hospital environment.
mode
mode
<5% UT (>95%
<5% UT (>95%
dip in UT) for 0.5
dip in UT) for 0.5
cycle.
cycle.
40% UT (60% dip
40% UT (60% dip
Mains power quality should be that of a typical
in UT) for 5 cycle.
in UT) for 5 cycle.
commercial or hospital environment. If the user of that
70% UT (30% dip
70% UT (30% dip
requires continued operation during power supply
in UT) for 25
in UT) for 25
interruptions, it is recommended that be powered from
cycle.
cycle.
an uninterruptible power supply.
<5% UT (>95%
<5% UT (>95%
dip in UT) for 5
dip in UT) for 5
sec.
sec.
(ESD)
IEC 61000-4-2
Electrical fast
transient/ burst
IEC 61000-4-4
Voltage dips, short
interruptions and
voltage variations on
power supply input
lines
IEC 61000-4-11
Power frequency
(50/60Hz) magnetic
field
floors are covered with synthetic material, the relative
humidity should be at least 30%.
Power frequency magnetic fields should be at levels
3 A/m
3 A/m
characteristic of a typical location in a typical
commercial or hospital environment.
IEC 61000-4-8
UT is the a.c. mains voltage prior to application of the test level.

Guidance and manufacturer’s declaration----electromagnetic immunity
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Mars1717V is intended for use in the electromagnetic environment specified below. The customer or the
user of Mars1717V should assure that it is used in such an environment.
Immunity Test
IEC 60601 Test
Level
Conducted RF
3 Vrms
IEC 61000-4-6
150kHz to 80MHz
Compliance Level
Electromagnetic Environment - Guidance
3 Vrms
Portable and mobile RF communications equipment,
AC-DC adapter or electromagnet should be used not
closer to any part of the Model Mars1717V, including
cables, than the recommended separation distance
calculated from the equation applicable to the
frequency of the transmitter.
Recommended separation distance
Radiated RF
3 V/m
IEC 61000-4-3
80MHz to 2.5GHz
d = 1,2
d = 1,2
p 80 MHz to 800 MHz
d = 2,3
p 800 MHz to 2,5 GHz
Where P is the maximum output power rating of the
3 V/m
transmitter in watts (W) according to the transmitter
manufacturer and d is the recommended separation
distance in meters (m).
Field strengths from fixed RF transmitters, as
determined by an electromagnetic site survey, should
be less than the compliance level in each frequency
range.
Interference may occur in the vicinity of equipment
marked with the following symbol:
NOTE: UT is the a.c. mains voltage prior to application of the test level.
NOTE1 At 80 MHz and 800 MHz, the higher frequency range applies.
NOTE2 These guidelines may not apply in all situations. Electromagnetic propagation is affected by
absorption and reflection from structures, objects and people.
a. Field strengths from fixed transmitters, such as base stations for radio (cellular/cordless) telephones and
land mobile radios, amateur radio, AM and FM radio broadcast and TV broadcast cannot be predicted
theoretically with accuracy. To assess the electromagnetic environment due to fixed RF transmitters, an
electromagnetic site survey should be considered. If the measured field strength in the location in which
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Mars1717V is used exceeds the applicable RF compliance level above, Mars1717V should be observed to
verify normal operation. If abnormal performance is observed, additional measures may be necessary, such
as re-orienting or relocating Mars1717V.
b. Over the frequency range 150 kHz to 80 MHz, field strengths should be less than [V1] V/m.

Recommended separation distances between portable or mobile RF communications equipment and
Mars1717V
Mars1717V is intended for use in an electromagnetic environment in which radiated RF disturbances are
controlled. The customer or user of Mars1717V can help prevent electromagnetic interference by
maintaining a minimum distance between portable or mobile RF communications equipment (transmitters)
and Mars1717V as recommended below, according to the maximum output power of the communications
equipment.
Rated maximum
output
Separation distance according to frequency of transmitter /m
150kHz~80 MHz
80 MHz~800 MHz
800 MHz ~2.5GHz
d = 1.2 p
d = 1.2 p
d = 2.3 p
0.01
0.12
0.12
0.23
0.1
0.38
0.38
0.73
1.2
1.2
2.3
10
3.8
3.8
7.3
100
12
12
23
power of transmitter
/W
For transmitters rated at a maximum output power not listed above, the recommended separation distance d
inmeters (m) can be estimated using the equation applicable to the frequency of the transmitter, where P is
the maximum output power rating of the transmitter in watts (W) according to the transmitter manufacturer.
NOTE 1 At 80 MHz and 800 MHz, the separation distance for the higher frequency range applies.
NOTE 2 These guidelines may not apply in all situations. Electromagnetic propagation is affected by
absorption and reflection from structures, objects and people.

Cables information belowis provided for EMC reference.
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Shielded or Unshielded
Number
Cable classification
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Recommended
Cable
cable length

Input Power Cable
3m
Unshielded
1 Set
AC Power
Ethernet Cable
3.5m
Shielded
1 pcs
Signal
DC Power Cable
3.5m
Unshielded
1 pcs
Signal
LAN Cable
3m
Shielded
1 pcs
Signal
Important information regarding Electro Magnetic Compatibility (EMC)
Mars1717V require special precautions regarding EMC and needs to be installed only by iRay or authorized
personnel and put into service according to EMC information provided in the user manual. Mars1717V in
use may be susceptible to electromagnetic interference from portable and mobile RF communications such
as mobile (cellular) telephones. Electromagnetic interference may result in incorrect operation of the system
and create a potentially unsafe situation.
Mars1717V conforms to this EN60601-1-2:2007 standard for both immunity and emissions.
Nevertheless, special precautions need to be observed:
The use of accessories, transmitters and cables other than those specified by this User Manual, with the
exception of accessories and cables sold by iRay of Mars1717V as replacement parts for internal
components, may result in increased EMISSIONS or decreased IMMUNITY of Mars1717V.
Mars1717V should not be used adjacent to or stacked with other equipment.
5.3 Radio Frequency Compliance Information
Country
Item
U.S.A
FCC Part 15.107 Subpart (b) / 15.109(g) Subpart B
FCC Part 15 Subpart E 15.407
FCC Part 15 Subpart C 15.247
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ETSI EN 301 489-1 V1.8.1 (EMC)
ETSI EN 301 489-17 V2.1.1 (EMC)
EN 300 328 V.1.7.1; EN 301 893 V1.6.1 (RF)
EN 62311:2008 (RF Exposure)
ETSI EN 300 328 V1.7.1; EN 301 893, V1.5.1 (Radio Spectrum)
5.3.1

FCC Compliance
This equipment has been tested and found to comply with the limits for a Class B digital device,
pursuant to part 15 of FCC Rules. These limits are designed to provide reasonable protection against
harmful interference in a residential installation.

Operation is subject to the following tow conditions.
This device may not cause harmful interference.
This device must accept any interference received, including interference that may cause undesired
operation.

This equipment generates, uses, and can radiate radio frequency energy and, if not installed and used in
accordance with the instruction, may cause harmful interference to radio communications. However,
there is no guarantee that interference will not occur in a particular installation. If this equipment does
cause harmful interference to radio or television reception, which can be determined by turning the
equipment off and on, the user is encouraged to try to correct the interference by one or more of the
following measure.
Reorient or relocate the receiving antenna.
Increase the separation between the equipment and receiver.
Connect the equipment into an outlet on a circuit different from that to which the receiver is
connected.
Consult the distributor or an experienced radio/TV technician for help.
5.4 Battery Safety Standards
Standards
Description
UL1642
Component Recognition on the Secondary Li-ion cell
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UL 2054:2004 R9.11
Household and commercial Batteries
IEC 62133:2012
Secondary cells and batteries containing alkaline or other non-acid
electrolytes
UN38.3
United Nations Recommendations on the Transport of dangerous
goods Manual of tests and Criteria
ST/SG/AC.10/11/Rev.5/Amend.1&Amend.2
5.5 Product Label
5.5.1
Detector
Mars1717V-PSI detector
Mars1717V-VSI detector
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5.5.3
Battery Charger
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6 Trouble Shooting
When user encounters problems or error messages, refer to this chapter. If the problem persists, turn off the panel
and contact iRay service department (service@iraychina.com). We would provide the best service.
6.1 Cable Inspection
6.1.1 Ethernet cable
6.1.1.1
Inspection method
Test the Ethernet cable detector by cable tester, and confirm whether all the
cores of the cable are conductive. If the cable tester is not available, please
check the definition of Ethernet cable and test the conductive between each
pin of connector.
6.1.1.2
Definition of Ethernet cable
Colour
J1
J2
Orange\White
Orange
Green\White
Blue
Blue\White
Green
6.1.1.3 Charge cable
Brown\White
inspection
Brown
Grounding wire
Shell
Shell
J1
J2
Measure the conductive between each pin of J1 and J2 by multimeter.
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Date cable inspection
According to the definition of data cable to verify the conductive between each pin of J1 and J2 by multimeter if
there is only one data cable in the field.
6.2 Adapter Inspection
6.2.1
Adapter connector definition
Pin
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Description
DC +24V/5.0A
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Inspection method
Connect the adapter to the detector or charging dock to confirm whether the battery is in working order if
verifying the output current is not practicable.
6.3 Battery Inspection
6.3.1
Battery pin definition
Pin
Symbol
Description
1,2
P+
Battery Discharge Positive Terminal
7,8
P-
Battery Discharge Negative Terminal
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6.3.2 Inspect Method
Measure the
voltage between
the Pin1,2 and Pin
7,8
Less than 9v
Voltage
Charge the battery via dock
in 30 minutes. Charging
time will be longer while
charging via detector
Measure the
voltage between
the Pin1,2 and Pin
7,8
Replace battery
Less than 9v
About 10.V
Battery is infact
Voltage
About 10.V
The battery is expendable and its life is shortened through use. Recycle the battery if the fully charged battery only
last not more than 1 hour. Wasted batteries suggested return to manufacturer or put at appointed public battery
reclaim area, do not mix battery with other waste or dispose of battery ad libitum.
6.4 Dock Inspection
6.4.1 Dock pin definition
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Pin
1,2
7,8
Voltage
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Description
Battery Charge Positive Terminal
Battery Charge Negative Terminal
6.4.2 Inspection method
Replace Adapeter
No
1. Does power
indicator light
up?
No
Adapter works
normally?
Adapter inspection
Yes
Measure the
voltage between
pin 1 and pin8
Is it 找研发要V?
Indicator fault
No
Yes
Insert the battry
Yes
Does charging
indicator light up?
No
Battery inspection
Does battery work
normally?
Yes
No
Dock is intact
Replace battery
Yes
Dock fault
6.5 Detector Main Unit Inspection
Know how to obtain the log of SDK and detector is necessary before diagnose any problem of detector main unit,
and the method is described in chapter 6.1.
6.5.1 Get SDK and detector log
6.5.1.1
Fetch SDK log
Find the location of iDemo.exe, and there is a folder called “Correct” in the same directory. Find the folder named
by the serial number of detector. The folder called “Log” is the storage path of SDK fie, and the date is contained
in name of each log file. Please compress the log file before send it.
The log function can be switched on in the config.ini. in the folder named “Res”, please check the configuration
before start iDemo.
SET_LOG_INFO=1//Open log function’
SET_LOG_INFO=0//Close log function
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6.5.1.2
Detector log
Find FTP Server.exe
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and open the FTP Server, attention that the FTP port number should
be set as same as the config.ini of iDemo. Click
button to start FTP server after finish setting the FTP port
number.
Find the “L” button in the following diagram in the configuration GUI of iDemo, click “L” button and the FTP
will upload the “Log” in the storage path “upload\[FPD 13 number S/N]\logs” which is at the same location of
iDemo.exe.
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6.6 Power up failure inspection
Can power up
the FPD?
Press pow button
more than 8 secs.
Fail to power up
No
Can power up
the FPD?
Plug in charge cable
Flash green &
remain green
in a long time
Power
indicator
status
Yes
No
Replace the
damage part
No
Does Adapter and
charging cable work
properly?
Flash orange&
remain green
in a long time
Indicator
remains green
Replace battery and
charge it
Battery failure
Adapter & charging
cable inspection
Return detector to
factory
Yes
is the label of power indicator. Skip the step “Press reset button” if no reset button, because the previous
version doesn’t content press button, and it’s no effect in normal use.
6.7 Connection inspection
is label of link indicator. If there is connection error from iRayDR, please view the FAQ of iRay before
checking the connection issue through iDemo
6.7.1 Connection failed in wired mode
Replace pc or
Ethernet card or
PC
Connection failed
Is the FPD
switch on?
No
Press switch
Button
Yes
Link
indicator
status
Check the link
indicator
Replace data cable
Flash blue
Check the
Ethernet card of
PC
Does Ethernet
card works
properly?
Remain green
Ping IP address of
detector
Does FPD
connect
successfully via
Idemo?
No
Yes
Can the FPD
p0wer up?
No
Yes
Data cable
inspection
Yes
Yes
Data cable is
infact
Does FPD
connect
successfully via
Idemo?
No
No
Power up failure
inspection
Modify PC IP
address
Check the IP
address of PC
No
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Is it on the
same segment
Of FPD IP?
Send SDK log file
to iRay service
department
Return FPD to
factoray
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6.7.2
Connection Failed in Client Mode
6.7.3
Disconnect in AP Mode
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6.8 Dark Image Acquisition After Exposure in Inner Mode
Return FPD to
factory
Yes
No
Modify the trigger
method to
“Software”
Acquire a bright
image
Is it dark image?
Yes
Check the X‐ray
machine
Does produce X‐
ray?
No
Maintain X‐ray
machine
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6.9 No Image Acquire after Exposure
6.10 Image Inspection
All the correction files are in the storage path “res\Correct\ [FPD series number] \0”
Calibration type
File format
Remark
Offset
*.off
iRay mostly use post offset, the offset is done during the image acquisition process.
So the offset file is not effective in the correction file storage path.
Gain
*.gn
The gain file can be select or deselect through iDemo
Defect
*.dft
The gain file can be select or deselect through iDemo
Lag
*.lag
The Most gain is effective while it’s in the correction file storage path. Rename it
or move it to other directory can make it invalid.
The following is the image
Image type
Original dark image
Dark image
Description
Acquire by click “Prep Acquire” button without exposure and offset correction
Acquire by click “Prep Acquire” button without exposure and the offset calibration should be
added at least.
Original bright image
Acquire the image under exposure condition and without any correction.
Bright image with offset
Acquire the image under exposure condition and add offset correction only.
6.10.1 Artifact on bright image
6.10.2 Horizontal Line on bright image
Adjust the WW to 30 and WL to 100 through iDemo for checking the horizontal line of dark image. Normally the
dark image with horizontal line is shown as the figure 1.
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Inspection method
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6.10.3 Defective line
6.10.4 Defective point
6.10.5 TFT broken
Acquire a dark image, if one part of the image is much smooth than the normal dark image. The TFT must be
broken by intense impact.
Normal area
Abnormal region of image, it is
smooth and less grainy
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7 Service Information
7.1 Product lifetime
The estimated product lifetime is up to 10 years under appropriate regular inspection and maintenance.
7.2 Regular inspection and Maintenance
In order to ensure the safety of patients, operating person and third parties, and to maintain the performance and
reliability of the equipment, be sure to perform regular inspection at least once a year. If necessary, clean up the
equipment, make adjustments, or replace consumables such as fuses, detector cable, etc. There may be cases
where overhaul is recommended depending on conditions. Contact iRay service office or local iRay dealer for
regular inspection or maintenance.
There is a Ni-MH battery in the FPD, its lifetime is 5 years, when arrived in the lifetime of the battery is need to
be placed. And the placement need contact Shanghai Iray after-sales service departments or authorized product
distributors.
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7.3 Repair
If a problem cannot be solved even taking the measures indicated in troubleshooting, contact your sales
representative or local iRay dealer for repairs. Please refer to the name label and provide the following
information:
Product Name:
Series Number:
Description of Problem: as clearly as possible.
7.4 Replacement parts support
Performance parts (parts required to maintain the function of the product) of this product will be stocked for 5
years after discontinuance of production, to allow for repair.
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