3D Cartoon Birthday Collage, 2x2 Grid, 4 Kids AI Image Prompt
Create a premium 3D cartoon-style birthday collage in a 2×2 grid layout featuring {argument name="subject" default="4 adorable kids"} with big sparkling eyes, soft curly hair, and Pixar/Disney-inspired characters. Each panel must feature a GIANT illuminated marquee number occupying 60–70% of the frame, much taller than the child, creating a luxury birthday photoshoot look. Panel 1 – Boy Age 2 Cute toddler boy in elegant cream and beige party outfit. Standing beside a massive glowing number 2. One hand touching the number, other hand waving. Blue, gold and white balloon decor. Birthday cake and gift boxes. Panel 2 – Girl Age 3 Adorable girl in pastel pink princess dress. Hugging a giant glowing number 3. Floral backdrop with pink balloons. Elegant birthday cake and flowers. Panel 3 – Boy Age 4 Stylish boy in luxury formal wear. Leaning casually against a huge illuminated number 4. Hands in pocket, playful smile. Blue and gold luxury decor with gifts. Panel 4 – Girl Age 5 Princess girl in lavender sparkling gown. Twirling dance pose beside a gigantic glowing number 5. Holding a birthday cake. Purple floral backdrop with balloons and fairy lights. Ultra-detailed 3D render, cinematic lighting, glossy textures, depth of field, soft shadows, luxury birthday setup, elegant decorations, realistic skin, cute chibi proportions, premium studio photography, highly detailed, 8K. Add elegant labels below each panel: AGE 2, AGE 3, AGE 4, AGE 5.
Content: Subject: 4 Pixar/Disney-style kids. Structure: 2×2 grid, each cell with a kid + giant glowing number (60-70% frame) + background decor. Style: premium 3D cartoon. Composition: interaction between subject and number. Lighting: cinematic, DOF, soft shadows. Color: luxury birthday palette. Material: glossy textures, realistic skin. Lens: wide-angle feel, dimensionality. Proportion: cute chibi. Labels AGE 2-5 below each panel.
Pros: Clear structure with detailed panel breakdown, easy to generate stepwise.
Cons: Description length may exceed some models' single generation capacity.
Reference image: No obvious reference-image dependency
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