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telescopecomparison · 2-way

Takahashi FSQ-85EDX vs Takahashi Epsilon-130D

Takahashi FSQ-85EDX
Takahashi

FSQ-85EDX

Best suited for beginners and wide-field enthusiasts running a portable travel rig.

Takahashi Epsilon-130D
Takahashi

Epsilon-130D

Best suited for beginners and wide-field enthusiasts running a backyard imaging setup.

Key differences

-35% aperture
Slower by 2.0 f-stops

Specifications

SpecificationTakahashi FSQ-85EDXTakahashi Epsilon-130D
Optics
TypeRefractorastrograph
Optical designPetzval APOHyperbolic Newtonian
Aperture85mm130mm
Focal length450mm430mm
Native f/ratiof/5.3f/3.3
Image circle44mm44mm
Full-frame supportYesYes
Physical
Weight4.0kg7.8kg
Advantages of Takahashi FSQ-85EDX
  • Lighter (4kg vs 7.8kg) — easier to travel with
Advantages of Takahashi Epsilon-130D
  • 53% more light-gathering aperture
  • Faster optics at f/3.3 vs f/5.3
Best for — Takahashi FSQ-85EDX
  • Large emission nebulae and star clusters
  • Full-frame astro cameras and DSLRs
Best for — Takahashi Epsilon-130D
  • Large emission nebulae and star clusters
  • Fast imaging — short exposures per sub
  • Full-frame astro cameras and DSLRs
Takahashi FSQ-85EDX — typical FOV & scale
  • With Full-frame (36×24mm, 3.76µm)
    FOV: 4.58° × 3.06°Scale: 1.72"/px
  • With APS-C (23.5×15.7mm, 3.76µm)
    FOV: 2.99° × 2.00°Scale: 1.72"/px
  • With IMX533 square (11.3×11.3mm, 3.76µm)
    FOV: 1.44° × 1.44°Scale: 1.72"/px
Takahashi Epsilon-130D — typical FOV & scale
  • With Full-frame (36×24mm, 3.76µm)
    FOV: 4.80° × 3.20°Scale: 1.80"/px
  • With APS-C (23.5×15.7mm, 3.76µm)
    FOV: 3.13° × 2.09°Scale: 1.80"/px
  • With IMX533 square (11.3×11.3mm, 3.76µm)
    FOV: 1.51° × 1.51°Scale: 1.80"/px
Takahashi FSQ-85EDX — recommended user

Best suited for beginners and wide-field enthusiasts running a portable travel rig.

Takahashi Epsilon-130D — recommended user

Best suited for beginners and wide-field enthusiasts running a backyard imaging setup.

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