Astrophotoguru · Compare

cameracomparison · 2-way

QHYCCD QHY10 vs ZWO ASI071MC Pro

QHYCCD QHY10
QHYCCD

QHY10

A strong fit for dedicated deep-sky imagers pairing with a broad range of focal lengths.

ZWO ASI071MC Pro
ZWO

ASI071MC Pro

A strong fit for dedicated deep-sky imagers pairing with a broad range of focal lengths.

Key differences

Larger pixels (6.05µm vs 4.78µm)
-37% more resolution

Specifications

SpecificationQHYCCD QHY10ZWO ASI071MC Pro
Sensor
Typededicateddedicated
SensorSony ICX493AQASony IMX071
Sensor techCCDCMOS
FormatAPS-CAPS-C
Sensor size23.4×15.6mm23.6×15.6mm
Diagonal28.1mm28.4mm
Pixel size6.05µm4.78µm
Resolution3900×26204944×3284
Megapixels10.2MP16.2MP
ColorYesYes
Cooling
CooledYesYes
Performance
Full well25000e⁻46000e⁻
Peak QE55%50%
Advantages of QHYCCD QHY10
  • Larger pixels — better low-light per-pixel sensitivity
Advantages of ZWO ASI071MC Pro
  • Finer sampling at 4.78µm pixels
  • Higher resolution (16.2MP vs 10.2MP)
Best for — QHYCCD QHY10
  • Balanced field for most refractors
  • Fast, low-noise deep-sky at short focal lengths
  • Long-exposure deep-sky under any sky
  • One-shot color — quick results, less processing
Best for — ZWO ASI071MC Pro
  • Balanced field for most refractors
  • Fast, low-noise deep-sky at short focal lengths
  • Long-exposure deep-sky under any sky
  • One-shot color — quick results, less processing
QHYCCD QHY10 — typical FOV & scale
  • On 250mm refractor (wide)
    FOV: 5.36° × 3.58°Scale: 4.99"/px
  • On 800mm SCT reducer
    FOV: 1.68° × 1.12°Scale: 1.56"/px
  • On 2000mm SCT native
    FOV: 0.67° × 0.45°Scale: 0.62"/px
ZWO ASI071MC Pro — typical FOV & scale
  • On 250mm refractor (wide)
    FOV: 5.41° × 3.58°Scale: 3.94"/px
  • On 800mm SCT reducer
    FOV: 1.69° × 1.12°Scale: 1.23"/px
  • On 2000mm SCT native
    FOV: 0.68° × 0.45°Scale: 0.49"/px
QHYCCD QHY10 — recommended user

A strong fit for dedicated deep-sky imagers pairing with a broad range of focal lengths.

ZWO ASI071MC Pro — recommended user

A strong fit for dedicated deep-sky imagers pairing with a broad range of focal lengths.

Recommended alternatives