Mepra CASSEROLE 1 H. WITH LID CM.16
Mepra
$350.00
Product Insights & Style Tips
Mepra CASSEROLE 1 H. WITH LID CM.16 elevates the kitchen mood with premium tri-ply craft. Crafted from 18/10 stainless steel with an aluminum core and a copper layer, it promises even heat distribution and responsive control. Induction Steel outside and mirror-polished surfaces give a luminous, restaurant-grade look, while the special Vintage Process lends the surface a rustic warmth that feels timeless in a modern kitchen.
On the stove, this casserole sits at the center of daily cooking. The outside is induction-ready, handles are riveted for a secure grip, and internal graduated measurements guide simmering and reductions with ease. A fitted lid traps moisture for braises, while dishwasher-safe construction keeps cleanup straightforward after a busy service. The tri-ply buildup means steady heat across the surface, saving energy and time without sacrificing precision.
Mepra brings professional-grade materials into a home kitchen with a silhouette that feels both timeless and contemporary, merging rustic warmth with sleek, high-performance cookware.
Materials / Fabrication
- Tri-ply construction with 18/10 stainless steel
- Aluminum core for fast, even heat distribution
- Copper layer for enhanced heat response
- Induction steel outside for compatibility with induction cooktops
- Mirror-polished surfaces outside and inside
- Riveted handles with strongly fixed 18/10 stainless steel rivets
- Graduated measurements inside
- Dishwasher safe
- Not galvanic and designed to avoid pollution in production
- Vintage process yields rustic, warm, elegant appearance
- Small size: 6.0 inches; Medium size: 6.5 inches
- Durable and food safe construction
- Suitable for all heating sources including induction
Recommended Care
- Dishwasher safe; use mild detergent and a gentle cycle to maintain finish
- Avoid abrasive scrubbers that can scratch the surfaces
- Dry promptly after washing to prevent water spots
- Allow cookware to cool before washing to minimize thermal shock
