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didoEASY R / didoEASY+ R / didoEASY++ R

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didoEASY R / didoEASY+ R / didoEASY++ R

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Dosemeter Series for X-Ray Service and QA in R&F and Dental

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    Brand: Quart


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    QUART didoEASYR
    Basic Configuration
    QUART didoEASY+R
    Added kV Measurement
    QUART didoEASY++R
    Added kV and Direct-HVL Measurement
     

    The QUART didoEASY meters are designed for users who emphasise high precision in dosimetric applications but do not require the performance of a full-range dosemeter package.

    QUART didoEASY meters can be used to measure parameters which are essential for service and quality assurance operations at x-ray equipment such as dose, dose rate and time. Of course, as with all QUART meters – with maximum precision.

    - kVp and PPV measurement available in the QUART didoEASY+ R version.

    - Direct-HVL and kVp / PPV measurement available in the QUART didoEASY++ R version.


    Since the meters do not require any pre-setting procedure, measurement results are acquired very quickly:


    1. Position the detector and switch on the didoEASY meter...

    2. Set the x-ray equipment to the desired parameters...

    3. Expose... - and simply read all measurement information from the meter‘s display. The QUART didoEASY meters automatically compensate all major medical x-ray beam qualities. No further corrections or compensations are required.


    Traditionally, the detector of the QUART didoEASY meter series also measures the integrated dose-width product (DWP) at dental panoramic equipment.* A feature that provides real added value for QUART users.


    Technical specifications

    General Features
    • Exposures: one to acquire all parameters
    • Mode: auto-start, auto-stop & auto-reset
    • Power supply: Rechargeable Li Ion accu
    • Battery time: approx. 120 hrs. until recharge required
    • Base size: 17x7x4.5cm (LxWxH)
    • Base weight: 200 g
    • Detector size: 6.0x1.8x0.5cm (LxWxH)
    • Detector weight: negligible (!)
    Specifications
    • didoEASY R    basic configuration

    • Dose: 0.2 µGy - 999 Gy (Uncertainty: ±5% @ 40-160 kV / Resolution: 0.01 nGy)
    • DLP*: 0.2 µGy*cm - 999 Gy*cm (Uncertainty: ±5% @ 40-160 kV / Resolution: 0.01 nGy*cm)
    • Dose Rate: 0.3 µGy/s - 1 Gy/s (Uncertainty: ±5% over full range / Resolution: 0.1 nGy/s)
    • Time: 0.5 ms - 300 s (Uncertainty: ± 0,5% / Resolution: 0.1 ms)
    • Pulses: 1 - 9999 (Uncertainty: ± 1 pulse)
    • Pulse Rate: 0.1 - 250 pulses/s (Uncertainty: ± 0.05 pulses/s)

     

    • didoEASY+  R   - features added kV measurement 

    • Dose: 0.2 µGy - 999 Gy (Uncertainty: ±5% @ 40-160 kV / Resolution: 0.01 nGy)
    • DLP*: 0.2 µGy*cm - 999 Gy*cm (Uncertainty: ±5% @ 40-160 kV / Resolution: 0.01 nGy*cm)
    • Dose Rate: 0.3 µGy/s - 1 Gy/s (Uncertainty: ±5% over full range / Resolution: 0.1 nGy/s)
    • Time: 0.5 ms - 300 s (Uncertainty: ± 0,5% / Resolution: 0.1 ms)
    • Pulses: 1 - 9999 (Uncertainty: ± 1 pulse)
    • Pulse Rate: 0.1 - 250 pulses/s (Uncertainty: ± 0.05 pulses/s)
    • kVp / PPV: 50 – 130 kV (Uncertainty: ±5% at calibrated reference points / Resolution: 0.1 kV); Exposure conditions: HVL 1.4 – 7.0 mm Al eq.

     

    • didoEASY++  R   - features added kV and direct-HVL measurement

    • Dose: 0.2 µGy - 999 Gy (Uncertainty: ±5% @ 40-160 kV / Resolution: 0.01 nGy)
    • DLP*: 0.2 µGy*cm - 999 Gy*cm (Uncertainty: ±5% @ 40-160 kV / Resolution: 0.01 nGy*cm)
    • Dose Rate: 0.3 µGy/s - 1 Gy/s (Uncertainty: ±5% over full range / Resolution: 0.1 nGy/s)
    • Time: 0.5 ms - 300 s (Uncertainty: ± 0,5% / Resolution: 0.1 ms)
    • Pulses: 1 - 9999 (Uncertainty: ± 1 pulse)
    • Pulse Rate: 0.1 - 250 pulses/s (Uncertainty: ± 0.05 pulses/s)
    • kVp / PPV: 50 – 130 kV (Uncertainty: ±5% at calibrated reference points / Resolution: 0.1 kV); Exposure conditions:  HVL 1.4 – 7.0 mm Al eq.
    • Direct-HVL: 0.1 – 11 mm Al (HVL output, Uncertainty: ±8% / Resolution: 0.1 mm Al); Internal filtration 0.1 – 12.5 mm Al equivalent; 40-130 kV range

    * S A Mitchell and C J Martin, Comparison of ionisation chamber and semiconductor detector devices for measurement of the dose–width product for panoramic dental units, J. Radiol. Prot. 33 321 (2013).


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