SSR FIGURE Koushiki Mizugi Joshi 1/6 Scale Pre-painted Complete Figure
This highly anticipated figure is now available for pre-order! Based on the captivating original illustration “Koushiki Mizugi Joshi” (which can be translated as “Competitive Swimsuit Girls”) by the renowned illustrator Tsubaki Harusame-shi, this stunning 1/6 scale figure brings the dynamic artwork to life.
The special base included with the figure is designed for versatility. You can display each character individually, or creatively combine the bases to form a larger, stage-like setup, allowing you to recreate various scenes from Tsubaki Harusame-shi’s vibrant world.
This product is a special set featuring two figures: Hakuou Maruko and Konno Ao. As a delightful bonus, it also includes character can badges and a unique rotating acrylic charm, adding extra charm to your collection.
The set is priced at ¥24,900.
Pre-orders Open! Pre-order Period: October 24, 2025 – December 03, 2025.
Scheduled to ship in June 2026. Limit 3 per person.
Bonus Items
This figure set comes with exciting bonus items!
All-Inclusive Bonus: Can Badges
You’ll receive two exclusive character can badges, each measuring 58x58mm, featuring charming artwork from “Koushiki Mizugi Joshi”.
All-Inclusive Bonus: Rotating Acrylic Keychain
Also included is one unique rotating acrylic keychain, measuring 55x65mm, a fun accessory to complement your figure collection.
Product Specifications
| Work Name | Original |
| Specifications | PVC&ABS pre-painted complete figure. 1/6 scale. Size: H=295mm W=105mm L=160mm |
| Sculptor | SSR FIGURE |
| Manufacturer | SSR FIGURE |
| Distributor | Good Smile Company |
| Copyright | © Tsubaki Harusame |
Important Notes Regarding the Figure
- The photos shown are of a sample product. The actual product may differ slightly in some specifications.
- As the coloring process for figures is done by hand, there may be subtle variations between individual products. We appreciate your understanding.
- The base and support pillars shown are prototypes. They may differ from the actual product.










