








LensTown Romantea Tokyo Hazel Brown Toric
- Graphic Dia.:
- 13.5mm
- Power range:
- 0.00 ~ -8.00
- Frequency:
- Monthly
- Pack:
- 1 piece / bottle
LensTown Romantea Tokyo Hazel Brown Toric – Monthly Toric Brown Contact Lens
Key Highlights
-
40% water content for comfortable hydration during daily wear
-
Made with Silicone Hydrogel for high oxygen permeability and eye health
-
Hazel brown shade with a 13.5mm graphic diameter for a warm, natural enlargement effect
-
Special toric design to correct astigmatism, available in AXIS 0 or 180
-
Monthly disposable design, suitable for up to 30 days with proper care
-
Produced in South Korea, known for advanced contact lens innovation
-
Each bottle contains 1 piece, designed for individual replacement
Product Specifications
| Specification | Details |
|---|---|
| Brand | Lens Town |
| Model | Romantea Tokyo Hazel Brown Toric |
| Type | Monthly Disposable (Toric for Astigmatism) |
| Prescription Range | 0.00 ~ -8.00 |
| Water Content | 40% |
| Material | Silicone Hydrogel |
| Base Curve (BC) | 8.5mm |
| Diameter (DIA) | 14.2mm |
| Graphic Diameter (G.DIA) | 13.5mm |
| AXIS | 0 or 180 |
| Place of Origin | South Korea |
| Packaging | Bottled |
| Contents | 1 piece (1 bottle) |
Why Choose LensTown Romantea Tokyo Hazel Brown Toric?
The LensTown Romantea Tokyo Hazel Brown Toric is a premium choice for users with astigmatism who also want to enhance their eyes with a natural brown tone. The hazel brown color adds warmth and depth, while the 13.5mm graphic diameter creates a subtle yet noticeable enlargement effect.
Crafted with Silicone Hydrogel, these lenses allow more oxygen to reach the eyes, ensuring long-lasting comfort. With a 40% water content, they help keep eyes hydrated throughout the day. Manufactured in South Korea, they combine advanced toric correction technology with stylish design for both function and beauty.
Perfect For
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Astigmatism correction with a stylish hazel brown enhancement
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Users seeking a natural, warm brown eye look
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Monthly lens wearers who prefer durability and comfort
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Both everyday wear and special occasions
Frequently Asked Questions (FAQs)
1. Are these lenses designed for astigmatism?
Yes. These are toric lenses with AXIS options of 0 or 180 for astigmatism correction.
2. How long can I use LensTown Romantea Tokyo Hazel Brown Toric lenses?
They are monthly disposable lenses, designed for up to 30 days with proper care.
3. Can I sleep while wearing these lenses?
No. Contact lenses should always be removed before sleeping.
4. Do they come with prescriptions?
Yes. Available from 0.00 to -8.00.
5. What effect does the 13.5mm graphic diameter provide?
It creates a natural enlargement effect, making eyes appear brighter and more defined.
6. Where are these lenses made?
They are manufactured in South Korea, known for high-quality contact lenses.
Final Note
The LensTown Romantea Tokyo Hazel Brown Toric offers the perfect balance of vision correction and natural style. Designed for astigmatism with a warm hazel brown tone, these monthly lenses deliver clarity, comfort, and elegance in one.
Toric/custom preparation: usually 4–15 business days. Any product-specific production time shown with your lens options takes priority.
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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