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telescopecomparison · 2-way

Takahashi Epsilon-160ED vs Takahashi TOA-150B

Takahashi Epsilon-160ED
Takahashi

Epsilon-160ED

Best suited for intermediate imagers building a versatile kit running a backyard imaging setup.

Takahashi TOA-150B
Takahashi

TOA-150B

Best suited for intermediate imagers building a versatile kit running a permanent observatory setup.

Key differences

-52% focal length
+7% aperture
Faster by 4.0 f-stops

Specifications

SpecificationTakahashi Epsilon-160EDTakahashi TOA-150B
Optics
TypeNewtonianrefractor
Optical designHyperbolic astrographApo triplet
Aperture160mm150mm
Focal length530mm1100mm
Native f/ratiof/3.3f/7.3
Image circle44mm88mm
Full-frame supportYesYes
Physical
Weight10.0kg13.5kg
Advantages of Takahashi Epsilon-160ED
  • Wider field — 530mm vs 1100mm focal length
  • Faster optics at f/3.3 vs f/7.3
  • Lighter (10kg vs 13.5kg) — easier to travel with
Advantages of Takahashi TOA-150B
  • Tighter framing — 1100mm vs 530mm focal length
  • Larger image circle (88mm) — supports bigger sensors
Best for — Takahashi Epsilon-160ED
  • Large emission nebulae and star clusters
  • Fast imaging — short exposures per sub
  • Full-frame astro cameras and DSLRs
Best for — Takahashi TOA-150B
  • Medium-sized galaxies and planetary nebulae
  • Full-frame astro cameras and DSLRs
Takahashi Epsilon-160ED — typical FOV & scale
  • With Full-frame (36×24mm, 3.76µm)
    FOV: 3.89° × 2.59°Scale: 1.46"/px
  • With APS-C (23.5×15.7mm, 3.76µm)
    FOV: 2.54° × 1.70°Scale: 1.46"/px
  • With IMX533 square (11.3×11.3mm, 3.76µm)
    FOV: 1.22° × 1.22°Scale: 1.46"/px
Takahashi TOA-150B — typical FOV & scale
  • With Full-frame (36×24mm, 3.76µm)
    FOV: 1.88° × 1.25°Scale: 0.71"/px
  • With APS-C (23.5×15.7mm, 3.76µm)
    FOV: 1.22° × 0.82°Scale: 0.71"/px
  • With IMX533 square (11.3×11.3mm, 3.76µm)
    FOV: 0.59° × 0.59°Scale: 0.71"/px
Takahashi Epsilon-160ED — recommended user

Best suited for intermediate imagers building a versatile kit running a backyard imaging setup.

Takahashi TOA-150B — recommended user

Best suited for intermediate imagers building a versatile kit running a permanent observatory setup.

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