Mockup Overview
This mockup template shows a white organic cotton zip-up hoodie worn by a male model photographed in a cafe environment. The model is a Caucasian man, approximately 30–35 years old, with an athletic build and short brown hair styled in a side part. Across six camera angles, the hoodie is shown in both posed and candid positions within a warm-toned coffee shop interior featuring wooden tables, brick walls, espresso machines, and pendant lighting.
The hoodie is plain white with no prints or logos, providing a blank surface for design placement via Smart Object rendering. Visible construction details include a full-length metal zipper, drawstring-equipped hood, kangaroo pocket, ribbed cuffs, and ribbed hem. The back view reveals contrast topstitching along raglan seam lines. The front-open shot shows a sherpa-style fleece lining visible at the collar and inner hood area.
Available Camera Angles
Six views are included in this template set:
Front Three-Quarter View — The model stands beside a wooden table holding a white takeaway coffee cup in his right hand. The zipper is closed. The hoodie's front pocket, zipper hardware, and drawstring ends are clearly visible. Background shows cafe seating and a pendant light. This is the primary hero shot.
Front View – Zipper Open — The model faces the camera directly with both hands in the kangaroo pocket. The zipper is open at the top, revealing a sherpa fleece lining at the collar. Behind him, an espresso machine and coffee grinder sit on a wooden counter with a gray wall.
Back View — The model faces away from camera with his right hand touching a brick wall. The back panel of the hoodie is fully visible, showing contrast dark topstitching along raglan seam lines running from the shoulder through to the hem. The hood rests flat against the upper back. Warm light from a pendant illuminates the left side.
Side Profile View — The model stands outdoors against a gray wall, looking down at a smartphone in his right hand. His left hand rests in the kangaroo pocket. This angle shows the hoodie's thickness, sleeve length, and how the zipper line falls along the torso. Natural daylight enters from the left.
Detail Shot – Zipper and Pocket — A close-up of the model's midsection while seated. The metal zipper teeth, zipper pull, kangaroo pocket opening, and ribbed hem are in sharp focus. The organic cotton weave texture is visible across the white surface. A cafe menu on a wooden clipboard appears in the lower left corner.
Lifestyle – Casual Wear — The model sits in a wooden chair at a cafe table, hood pulled up over his head, holding a latte with rosetta art in a clear glass cup. The background shows a coffee shop menu board, pastry display case, and warm pendant lighting. The hoodie drapes naturally in a seated position.
Technical Specifications
The white base surface across all six angles serves as the design placement zone. SudoMock's rendering engine composites user artwork onto this white area using Multiply blend mode, which allows the visible cotton fabric texture to show through the applied design. This produces a printed-on-fabric appearance rather than a flat digital overlay.
Rendering is available through the SudoMock REST API at $0.002 per render or via the Dashboard Playground. Output formats include WebP, PNG, and JPEG at resolutions up to 10,000 pixels. The API accepts JSON payloads with X-API-KEY authentication and supports batch processing for catalog-scale mockup generation.
Applicable Use Cases
This template is suitable for print-on-demand product listings on platforms such as Etsy, Shopify, Amazon, and WooCommerce. The cafe lifestyle setting provides context for sellers targeting casual and corporate-casual apparel categories. POD fulfillment providers including Printful, Printify, Gelato, and Gooten offer zip-up hoodies as catalog items. The six-angle coverage supports complete product listings where multiple images per SKU are needed.
Integrations with n8n, Zapier, Make, and Airtable allow automated rendering workflows where new designs trigger mockup generation across all six angles simultaneously.