








LensTown Lighly Classic Plus Choco (20p)
- Graphic Dia.:
- 13.7mm
- Power range:
- 0.00 ~ -8.00
- Frequency:
- Daily
- Pack:
- 20 pieces / box
LensTown Lighly Classic Plus Choco (20p) is a daily disposable colored contact lens with a 13.7mm graphic diameter and 50% water content, giving eyes a warm, natural choco-brown look. LensTown lenses are made from PC + Silicone Hydrogel, combining Phosphorylcholine's biocompatibility with Silicone Hydrogel's high oxygen permeability.
Who It's For & Trade-offs
Choco reads darker and warmer than a standard brown, making it a strong pick for anyone with naturally dark eyes who still wants a visible richness change. The daily format gives a fresh, sterile lens every wear with no cleaning routine; the 20-piece box strikes a middle ground between a small trial size and a full monthly supply.
Safety & Care
- Wash and dry hands thoroughly before handling lenses.
- Discard after each use (Daily) — do not reuse or store overnight.
- Remove lenses before sleeping, swimming, or showering.
- Never rinse or store lenses in tap water.
- Consult an optometrist for proper prescription and fitting.
Preparation: 2–4 business days before dispatch.
Estimates are in USD. Final services and charges are confirmed for your address at checkout.
Preparation & delays
Restocking may add 2–5 business days. Preparation excludes weekends and Korean public holidays. Transit and customs delays vary.
See how your glasses SPH changes at the eye.
An optical estimate, not a contact lens prescription. Prescription help
OD = right; OS = left. Enter SPH with its + or − sign. Use 0, PL or plano for zero.
Estimated sphere at the eye
- Right eye (OD)
- Left eye (OS)
Shown to 2 decimals; not rounded to available lens powers.
Advanced settings Vertex: 12 mm
Why can powers differ?
Glasses sit in front of the eye; contact lenses sit on its surface. This distance changes the optical effect, especially at stronger powers. A professional fitting determines your contact lens prescription.
Optical estimate = SPH ÷ (1 − distance × SPH), with distance in metres. This calculation uses sphere only.
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