| Category | Technical Specification | Brand Value & ROI |
|---|---|---|
| Structure | Rigid drawer box | Defines the confirmed sequential opening structure; final movement and fit require approved samples and production validation. |
| Feature Paper | 250g pearl-white rock-texture specialty embossed paper, Fangyuan Pure Color Embossed Series 5 | Establishes the specified textured paper surface for 4C printing and embossing. |
| Exterior Print & Relief | 4C printing plus embossing | Directs review toward the interaction of printed artwork, paper texture, and relief definition. |
| Outer Construction | 157g coated art paper plus 1200g double greyboard | Provides the specified rigid drawer-box material system. |
| Layered Face Feature | Multi-layer irregular cut-out cave composition | Directs review toward contour definition, layer registration, and composite-face assembly. |
| Internal Insert | 300g double-coated paperboard insert | Provides the specified paper-based support structure. |
| Insert Process | Flatbed die-cutting | Directs review toward die-cut edge condition and intended paperboard conversion. |
| Side-Edge Feature | Natural-texture raw edge | Defines the requested tactile edge character; final edge appearance requires approved samples and production validation. |
| Validation Path | Engineering target; approved samples and production validation | Confirms final relief, printing, layer assembly, drawer formation, insert conversion, edge appearance, and batch outcomes. |
For this anonymous U.S. aroma packaging project, the confirmed structure is a rigid drawer box. The confirmed exterior combines 250g pearl-white rock-texture specialty embossed paper, Fangyuan Pure Color Embossed Series 5, with 4C printing and embossing. The rigid construction uses 157g coated art paper and 1200g double greyboard. The internal insert is 300g double-coated paperboard converted through flatbed die-cutting.
The first challenge is embossing on textured specialty paper. The 250g pearl-white rock-texture sheet is not ordinary smooth paper; its intrinsic texture must remain compatible with the requested embossed relief. Relief depth, edge clarity, and the interaction between the texture and embossed motif are engineering targets to be confirmed through approved samples and production validation.
The second challenge is the front’s layered irregular cut-out cave composition. This is not a single window. Each layer requires its own irregular die-cut contour, controlled edge condition, and coordinated assembly so that the layered offset reads as an intentional dimensional composition. Final contour registration, edge finish, and layer relationship are engineering targets to be confirmed through approved samples and production validation.
The third challenge is thick-board drawer-box formation. The confirmed structure is a drawer box made with 1200g double greyboard. Grooving, folding edges, wrapping, corner definition, and the relationship between the inner drawer and outer sleeve must be managed so that the drawer opening and closing presentation remains controlled. Final drawer fit, movement, and closed-box geometry are engineering targets to be confirmed through approved samples and production validation.
The fourth challenge is full-coverage 4C printing on rock-texture specialty paper. The textured surface can affect ink reception, particularly when multiple colorways need a unified visual direction. Print appearance and color rendering on the specified textured stock are engineering targets to be confirmed through approved samples and production validation.
The fifth challenge is a paperboard insert rather than a foam or EVA insert. The 300g double-coated paperboard insert, made through flatbed die-cutting, must be reviewed for its intended support role, paperboard cut quality, and coordination with approved candle-vessel presentation samples. Final retention, cut-edge condition, and completed insert assembly are engineering targets to be confirmed through approved samples and production validation.
The sixth challenge is the natural-texture raw edge on the box side. This is not a conventional clean-cut edge. The process must pursue an intentional tactile edge while controlling the visual regularity of the completed box. Final edge appearance and batch consistency are engineering targets to be confirmed through approved samples and production validation.
The PackTonTon Engineering Team organizes the project around a reference-led production sequence. The specified 250g pearl-white rock-texture specialty embossed paper, Fangyuan Pure Color Embossed Series 5, is used with 4C printing and embossing. Artwork, printed color areas, paper texture, and embossed relief should be reviewed together because the final visual result depends on their interaction rather than on one process alone.
The project defines a production direction for an anonymous U.S. aroma drawer box using 250g pearl-white rock-texture specialty embossed paper, Fangyuan Pure Color Embossed Series 5, 4C printing, embossing, 157g coated art paper, 1200g double greyboard, and a 300g double-coated paperboard insert made through flatbed die-cutting.
The primary control points are textured-paper embossing, layered irregular cut-outs, thick-board drawer formation, full-coverage 4C printing on textured stock, paperboard insert conversion, and natural-texture raw-edge presentation. Final visual, structural, insert, and batch outcomes are engineering targets to be confirmed through approved samples and production validation.
The confirmed format is a rigid drawer box. Grooving, folding edges, wrapping, corner geometry, inner-drawer formation, and outer-sleeve coordination should be reviewed through approved samples. Final drawer movement and structure are engineering targets to be confirmed through approved samples and production validation.
The insert is 300g double-coated paperboard converted through flatbed die-cutting, not foam or EVA. Its cut profile, edge condition, and intended presentation relationship should be reviewed through approved samples. Final insert outcome is an engineering target to be confirmed through approved samples and production validation.