Flat-panel detectors are a class of solid-state x-ray digital radiography devices similar in principle to the image sensors used in digital photography and video. They are used in both projectional radiography and as an alternative to x-ray image intensifiers (IIs) in fluoroscopy equipment.
Flat panel detectors provide the highest image quality and reliability available in today’s market. The flat panel detectors from MSL represent a fast and economical solution to improve workflow efficiency and take advantage of innovative digital radiography. Our detectors are X-ray source agnostic and will work with your existing X-ray source and price is very affordable, All detectors are portable, easy to operate and offer high resolution diagnostic images in seconds.
Amorphous silicon TFT/PD matrix panel
Scintillator CsI (TI)
Pixel pitch 85µm
Effective active area 235mm x 290mm
Effective pixel matrix > 2762 x 3408
AD conversion 16bit
Programmable gain amplifier
Energy range 25kV-40kV
AED Trigger mode Software
Packaging detail:Standard export package Delivery detail:within 7-10 workdays after receipt of payment |
1.Introduction
The MSLFP30 is a digital FPD detector with the patented Amorphous Silicon TFT sensor and needles directly deposited CsI: Tl scintillator technique of iRay technology. It is designed with the compact outline in order to retrofit the analog mammography system to digital. MSLFP30 has a quite large active area of 24x30cm with 85μm pixel pitch. The employed CsI (Cesium Iodide) scintillator makes the MSLFP30 achieve a special high DQE and MTF. The detector provides AED (Auto Exposure Detection) function via the specialized sensor to detect the X-ray for activing the FPD, and is also compatible with the existed AEC function of the analog mammography system. MSLFP30 supports FFDM applications.
Sensor technology |
Amorphous silicon TFT/PD matrix panel |
Scintillator |
CsI (TI), needles directly deposited on the a-Si TFT panel |
Pixel pitch |
85µm |
Effective active area |
235mm x 290mm |
Effective pixel matrix |
> 2762 x 3408 |
AD conversion |
16bit |
Charge amplifier |
Programmable gain amplifier |
Energy range |
25kV-40kV |
Data\Control interface |
GigE |
Trigger mode |
Software, AED |
AED function |
Yes |
Frame rate |
2fps@Free run |
Cycle time |
Typical 15s |
Limited spatial resolution |
6 lp/mm |
Saturation dose* |
Typical 2500μGy @ 7.2pC |
Dynamic range* |
>76dB @ 7.2pC |
QNED (measured according to European Guidelines) |
FFDM: ≤20µGy @ Binning 1C |
QNLD (measured according to European Guidelines) |
FFDM: ≤80µGy @ Binning 1C |
Linearity* |
≥ 0.999 |
MTF* @ RQM1/Binning1C (measured according to IEC62220-1-2) |
Typical 90% @ 1.0 LP/mm Typical 70% @ 2.0 LP/mm Typical 58% @ 3.0 LP/mm Typical 29% @ 5.0 LP/mm |
DQE* @ RQM1/Binning1C (measured according to IEC62220-1-2) |
Typical 69% @ 0 LP/mm Typical 65% @ 1.0 LP/mm Typical 56% @ 2.0 LP/mm Typical 45% @ 3.0 LP/mm Typical 31% @ 5.0 LP/mm |
Lag (measured according to IEC62220-1-2) |
< 1.5% (first frame) |
Memory effect |
<0.3%, after 60s |
(measured according to IEC62220-1-2) |
|
CNR @ 45mm PMMA |
≥ 12.5 |
Image receptor homogeneity (measured according to European Guidelines) |
<10% |
ACR phantom @ clinical condition |
≥ 4 fibers ≥ 4 masses ≥ 3 speck groups |
Missed tissue at the chest wall side |
< 3 mm |
*: The Radiation quality is W/Rh (50µm), according to IEC62220-1-2:2007.
Weight |
≤1.3kg |
Housing material |
Aluminum with carbon fiber laminate entrance window |
Size (mm3) |
327 (L) × 254.5 (W) × 14 (H) |
Outline |
|
Data interface |
GigE |
X-ray synchronization interface |
AED |
Software |
SDK, supporting the 32 and 64 Windows® OS |
Temperature |
10 - 40 °C (operating), -10 – 55 °C (storage) |
Humidity |
10 - 90% RH (operating, non-condensing) 10 - 95%RH (storage) |
Pressure |
700 – 1060mbar (operating and storage) |
Vibration |
IEC 60068-2-6 (10-200 Hz, 5 g) |
Shock |
IEC 60068-2-29 (16ms, 10 g) |
Life time |
5 years |
Life time dose |
Typical 300Gy |
IBFR |
≤ 2.5% |
CFR36 |
≤ 7.5% |
Supply |
100-240V AC and mains frequency of 50Hz and 60Hz, both +/- 2%. |
Input |
24V DC |
Dissipation |
Around 18W |
Cooling |
Passive |
General regulatory |
CE, RoHs |
Risk management |
ISO 14971: 2007 |
Safety and essential perfor mance |
IEC60601-1:2005/EN60601- 1:2006+AC:2010/IEC 60601-1:2005+ Amendment 1:2012/EN 60601-1:2006+ Amendment 1:2013 IEC 60601-1-2:2014 |
Radiation protection |
IEC 60601-1-3:2008 |
Characteristics of digital X-ray imaging devices |
IEC 62220-1-2:2007 |
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