Astrophotoguru · Compare

cameracomparison · 2-way

ZWO ASI533MC Pro vs QHYCCD QHY533M

ZWO ASI533MC Pro
ZWO

ASI533MC Pro

A strong fit for dedicated deep-sky imagers pairing with longer focal lengths where framing is tight.

QHYCCD QHY533M
QHYCCD

QHY533M

A strong fit for dedicated deep-sky imagers pairing with longer focal lengths where framing is tight.

Key differences

Color vs mono

Specifications

SpecificationZWO ASI533MC ProQHYCCD QHY533M
Sensor
TypeDedicated CooledDedicated Cooled
SensorSony IMX533Sony IMX533
Sensor techCMOSCMOS
Format1-inch square1"
Sensor size11.3×11.3mm11.3×11.3mm
Diagonal16.0mm16.0mm
Pixel size3.76µm3.76µm
Resolution3008×30083008×3008
Megapixels9.0MP9.0MP
ColorYesNo
Cooling
CooledYesYes
Performance
Full well50000e⁻50000e⁻
Peak QE80%80%
Advantages of ZWO ASI533MC Pro
  • One-shot color — simpler workflow
Advantages of QHYCCD QHY533M
  • Mono sensor — ideal for narrowband and LRGB
Best for — ZWO ASI533MC Pro
  • Longer focal lengths — tighter framing on small targets
  • Well-sampled deep-sky at medium focal lengths
  • Long-exposure deep-sky under any sky
  • One-shot color — quick results, less processing
Best for — QHYCCD QHY533M
  • Longer focal lengths — tighter framing on small targets
  • Well-sampled deep-sky at medium focal lengths
  • Long-exposure deep-sky under any sky
  • Narrowband and LRGB workflows
ZWO ASI533MC Pro — typical FOV & scale
  • On 250mm refractor (wide)
    FOV: 2.59° × 2.59°Scale: 3.10"/px
  • On 800mm SCT reducer
    FOV: 0.81° × 0.81°Scale: 0.97"/px
  • On 2000mm SCT native
    FOV: 0.32° × 0.32°Scale: 0.39"/px
QHYCCD QHY533M — typical FOV & scale
  • On 250mm refractor (wide)
    FOV: 2.59° × 2.59°Scale: 3.10"/px
  • On 800mm SCT reducer
    FOV: 0.81° × 0.81°Scale: 0.97"/px
  • On 2000mm SCT native
    FOV: 0.32° × 0.32°Scale: 0.39"/px
ZWO ASI533MC Pro — recommended user

A strong fit for dedicated deep-sky imagers pairing with longer focal lengths where framing is tight.

QHYCCD QHY533M — recommended user

A strong fit for dedicated deep-sky imagers pairing with longer focal lengths where framing is tight.

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