Full GPT Image2 Prompt Example

Use this section when you need the complete GPT Image2 prompt wording, not just the summary. Review the structure, copy the full GPT Image2 prompt as-is, and then replace the subject, brand, style, or use case to fit your own workflow. This full GPT Image2 prompt block is the best place to study how the prompt is assembled before you test your own version. Treat this GPT Image2 prompt section as the source text you refine step by step.

请根据【主题】自动生成一张“博物馆图鉴式中文拆解信息图”。 要求整张图兼具真实写实主视觉、结构拆解、中文标注、材质说明、纹样寓意、色彩含义和核心特征总结。你需要根据【主题】自动判断最合适的主体对象、服饰体系、器物结构、时代风格、关键部件、材质工艺、颜色方案与版式结构,用户无需再提供其他信息。 整体风格应为:国家博物馆展板、历史服饰图鉴、文博专题信息图,而不是普通海报、古风写真、电商详情页或动漫插画。背景采用米白、绢纸白、浅茶色等纸张质感,整体高级、克制、专业、可收藏。 版式固定为: - 顶部:中文主标题 + 副标题 + 导语 - 左侧:结构拆解区,中文引线标注关键部件,并配局部特写 - 右上:材质 / 工艺 / 质感区,展示真实纹理小样并附说明 - 右中:纹样 / 色彩 / 寓意区,展示主色板、纹样样本和文化解释 - 底部:穿着顺序 / 构成流程图 + 核心特征总结 若主题适合人物展示,则以真实人物全身站姿为中央主体;若更适合器物或单体结构,则改为中心主体拆解图,但整体仍保持完整中文信息图形式。所有文字必须为简体中文,清晰、规整、可读,不要乱码、错字、英文或拼音。重点突出真实结构、材质差异、文化说明与图鉴气质。 避免:海报感、影楼感、电商感、动漫感、cosplay感、乱标注、错结构、糊字、假材质、过度装饰。

Refine This Prompt

Why this prompt works

It defines the core subject and headline, specifies typography style, lighting, texture, colors, and composition to guide the model toward a cinematic, high-contrast poster with strong readability.

What you can change

  • Title text and tagline
  • Color palette and lighting mood
  • Typography style and weight
  • Background environment or texture
  • Aspect ratio and composition

Reusable template

Create a premium editorial poster for the headline "[TITLE]" with [TYPOGRAPHY STYLE], [LIGHTING STYLE], [COLOR PALETTE], [TEXTURE], [COMPOSITION], and [MOOD/ATMOSPHERE].

How to adapt this GPT Image2 prompt

Use this GPT Image2 prompt as a working reference, not just a one-off sample. Keep the structure that already defines the output clearly, then replace the subject, typography, environment, campaign context, or aspect ratio to match your own goal. If you need more examples before rewriting the GPT Image2 prompt, go back to the Infographic category page or continue into the related prompts below. This GPT Image2 prompt workflow works best when you keep the original structure visible while you rewrite each key variable. A stable GPT Image2 prompt baseline usually makes revision work much faster.

FAQ about this prompt example

How should I use the Museum-Style Hanfu Breakdown Infographic prompt example?

Start by copying the full GPT Image2 prompt, then replace the subject, style language, and output goal with your own brief. Keep the visual structure if you want results in the same direction, and reuse the GPT Image2 prompt skeleton before you add brand-specific details. In practice, this GPT Image2 prompt works best when you change a small number of variables per iteration.

What can I change without losing the original structure?

You can change the headline, product, mood, lighting, composition, typography, and end use while keeping the core GPT Image2 prompt logic that makes the example useful. In most cases, the best result comes from editing one GPT Image2 prompt variable at a time instead of rewriting everything at once. That keeps the GPT Image2 prompt structure stable while you test new creative directions.

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Related Infographic prompt examples

Explore more from the infographic collection to compare GPT Image2 prompt structures, visual directions, and reusable ideas that stay close to this example. Open another GPT Image2 prompt example if you want a nearby variation before rewriting your final version. That extra GPT Image2 prompt comparison step often helps you refine the final wording with less guesswork.

奢华机械腕表技术图鉴
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奢华机械腕表技术图鉴

2x2 grid 16:9, do this for 4 most expensive strangest watches ever made: class Haute_Horlogerie_DNA: def __init__(self): self.subject = "[TIMEPIECE]" self.parents = { "composition_parent": "Exploded movement diagram with transparent case", "material_parent": "Brushed titanium, sapphire crystal, rose gold gears, alligator leather", "graphic_parent": "Swiss manufacture technical brochure with elegant data panels", "atmosphere_parent": "Crisp daylight studio, pure white background, subtle reflection on polished surfaces" } self.mutations = { "semantic_mutation": "The balance wheel reveals a miniature cosmos ticking inside", "information_mutation": "Power reserve indicator, frequency, complication callouts, hand-finishing grades, assembly timeline", "medium_mutation": "Smooth matte premium paper with embossed logo", "scale_mutation": "Grain-level view of Côtes de Genève finishing and jewel bearings" } self.style_mix = [0.30, 0.30, 0.25, 0.10, 0.05] def generate_subject(self): subject = """ [TIMEPIECE] shown in its full mechanical glory. The dial, hands, movement, and strap float in perfect alignment against a bright, clean background. Every gear and spring is highlighted with exacting clarity. """ return render( subject, format="luxury watch advertisement with technical insert", title="[MODEL REFERENCE]", subtitle="[MANUFACTURE / COLLECTION]", constraints="bright white space, metallic brilliance, hyper-detailed, modern elegance" )

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Crumple Chair 概念沙发研发板
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Crumple Chair 概念沙发研发板

Design Concept: The Crumple Chair Core Philosophy: Translating the "controlled chaos" of a tossed paper ball into a sculptural, high-comfort seating experience. Stage 1: Observation & Morphological Analysis The goal is to deconstruct the image of the crumpled paper into usable geometric data. Crease Mapping: Identify the primary "valley" and "ridge" lines. These represent potential structural ribs or seams in the chair. Faceted Planes: Break down the sphere into a series of non-uniform polygons. Each flat surface of the paper becomes a potential panel for the chair’s upholstery or shell. Shadow Study: Analyze how the "tossed" form creates deep recesses. These natural pockets guide where the user’s weight will be cradled. Stage 2: Iterative Form Exploration Moving from a sphere to a seat through "Digital Crumpling." Subtractive Sculpting: Imagine the paper ball as a solid mass. Use Boolean operations to "carve out" a seating cavity that fits the human form while maintaining the external jagged texture. Tension Simulation: Use 3D software (like Rhino or Blender) to simulate a flat sheet of material being compressed. This ensures the folds look authentic and not "modeled." The "Toss" Logic: Experiment with gravity-based simulation dropping a digital mesh to see how it settles naturally, mimicking the "tossed" origin. Stage 3: Ergonomic Translation & Blueprinting Refining the raw aesthetic into a functional object. The Comfort Core: Overlay a standard ergonomic template (Seating Angle: 105°–110°) over the crumpled form. Adjust the internal "folds" to provide lumbar support and pressure relief. Blueprint Generation: Create technical orthographic views (Front, Side, Top). Map out the dimensions: Seat Height: 450mm Total Width: 850mm Surface Smoothing: Maintain the sharp "paper edges" on the exterior shell while softening the interior contact points for skin comfort. Stage 4: Structural Integration & Scaling Making the concept physically viable. The Skeleton: Design a hidden internal frame (likely CNC-bent steel rods or a 3D-printed lattice) that follows the most prominent ridges of the paper folds to provide rigidity. Material Selection: * Option A (High-End): Faceted, cast aluminum with a white powder coat. Option B (Soft): Vacuum-formed recycled plastic shell covered in "memory-fold" technical fabric that retains a wrinkled appearance. Stage 5: Final Prototyping & Material Finish Textural Replication: Apply a matte, slightly porous finish to the material to mimic the tactile feel of heavy-bond paper. Lighting Contrast: Use directional studio lighting in the final renders to emphasize the "tossed" shadows, making the chair look like a giant piece of discarded inspiration. Design Tip: To keep the "tossed" look authentic, avoid symmetry. The most compelling aspect of a crumpled paper ball is its unique irregularity—ensure the left and right sides of the chair are balance-equivalent but not identical

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现代地铁工程信息图
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现代地铁工程信息图

Create a premium square “reference-style urban transportation infographic” centered around a futuristic modern metro system called the {METRO_NAME}, designed as a beautifully curated transit-engineering handbook page rather than a public transport advertisement. The composition should feel like a modern visual encyclopedia mixed with an elite railway infrastructure field guide and high-end editorial infographic system. Visual Direction: • 1:1 square composition • Dark premium urban-tech background with subtle railway schematics, metro maps, and futuristic blueprint overlays • Elegant palette using deep navy, matte black, steel gray, electric blue accents, and soft white lighting • Refined editorial typography hierarchy with modern transportation aesthetics • Rounded modular information cards with clean spacing • Gentle realistic reflections and premium HUD-style dividers • Minimal transit-system iconography • Extremely detailed central metro train render viewed in dramatic three-quarter perspective inside a futuristic underground station • Thin precision annotation lines pointing toward transportation systems and smart engineering features • Clean, organized “knowledge-first” layout with high information density but breathable spacing Main Subject Presentation: A stunning ultra-detailed realistic render of the {METRO_NAME} modern metro train placed at the center, featuring sleek aerodynamic train design, glowing destination displays, realistic stainless-steel textures, illuminated station lighting, smart glass windows, premium urban-environment realism, and futuristic rail infrastructure. Surround the metro with scientific and engineering callouts explaining: • regenerative braking system • smart signalling & CBTC control • electric propulsion system • passenger information systems • safety and surveillance technology • platform screen doors • energy-efficient design • smart ventilation systems • accessibility features • track and infrastructure engineering Include modular infographic sections such as: • Metro System Overview • Technical Specifications • Train Dimensions & Layout • Passenger Capacity & Flow • Smart Control Systems • Sustainability Features • Track & Infrastructure Engineering • Signalling & Automation • Station Design & Facilities • Safety & Emergency Systems • Passenger Experience Features • Urban Connectivity & Network Map • Energy Efficiency Comparison • Construction & Expansion Timeline • “Top 5 Smart Innovations” section • Built for Future Smart Cities Add small premium visualization modules like: • metro network maps • train blueprint diagrams • station layout graphics • passenger flow visualizations • signalling workflow diagrams • energy-efficiency comparison charts • train configuration illustrations • smart-city connectivity graphics • platform safety diagrams • infrastructure cross-section visuals Style Keywords: “premium urban mobility encyclopedia” “editorial metro engineering handbook” “high-end transportation infographic” “scientific railway infrastructure poster” “museum-quality transit reference page” “modular smart-city knowledge system” “clean transportation editorial design” “ultra-detailed metro visualization” Avoid: • cluttered public advertisement aesthetics • cartoon transportation styling • unrealistic sci-fi levitating trains • excessive cyberpunk neon overload • chaotic city scenes • generic subway poster layouts The final result should resemble a professionally published railway infrastructure reference-book page created for transit enthusiasts, architects, engineers, urban planners, transportation designers, and educational infrastructure archives.

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Neuro-AI 混合系统信息图
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Neuro-AI 混合系统信息图

Create a premium square “neuro-AI hybrid system infographic” designed as a scientific cognitive engineering handbook page. Visual Direction: • 1:1 composition • dark neutral background with glowing neural network overlays • palette: electric blue, violet, soft white, silver • elegant scientific typography and modular panels • central ultra-detailed human brain + AI circuit fusion render Main Subject: A realistic human brain merging with AI neural networks and digital circuitry. Include callouts: • memory encoding system • AI augmentation layer • cognitive signal pathways • emotional response mapping • sensory integration nodes • neural data transfer system • learning adaptation loops Modules: • Brain Function Overview • AI Enhancement Layers • Signal Flow Diagram • Cognitive Performance Metrics • Human vs AI Comparison Chart • Neural Safety Protocols • Future Evolution Path Style: “neuroscience + AI engineering manual”, “high-end cognitive systems diagram”

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4×4 动作分解参考表
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4×4 动作分解参考表

[STYLE] Monochrome grayscale illustration, 3D-rendered character, clean instructional reference sheet, white background, comic-style cell grid layout, technical diagram aesthetic. [LAYOUT] 4×4 grid layout with a total of 16 panels. Each panel is separated by thin black border lines. Cells are numbered from 1 to 16, with consistent panel sizes. [CHARACTER] image1 (the same character appears consistently in all panels) [PANEL STRUCTURE – per cell] Top-left: bold number badge + English title text Center: full-body character pose illustration Bottom-left: English description text (3–4 lines) Overlay: directional arrows indicating movement [ARROWS / MOTION INDICATORS] Curved arrows, straight arrows, and circular rotation indicators placed around the character to show motion flow and direction. [RENDERING STYLE] Highly detailed 3D sculpted style, soft studio lighting, subtle shadows, no color, grayscale shading, clean linework, game concept art quality. [NEGATIVE] No background scenery, no color tones, no additional characters, no complex background.

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信息图可视化设计
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信息图可视化设计

[中文] このキャラクターと背景を元に、 公式設定資料のようなキャラクターシートを作成してください。 ・正面、側面、背面の3面図を含める ・キャラクターの表情バリエーションを追加 ・衣装や装備の詳細パーツを分解して表示 ・カラーパレットを追加 ・世界観の簡単な説明を入れる ・全体は整理されたレイアウト (白背景、図解風) ・アスペクト比16:9  ← 高解像度、プロのコンセプトアートスタイル [English] Based on this character and background, please create a character sheet like an official setting material. ・Include front, side, and back 3-view drawings ・Add character expression variations ・Disassemble and display detailed parts of costumes and equipment ・Add a color palette ・Include a brief explanation of the world view ・Overall organized layout (White background, diagrammatic style) ・Aspect ratio 16:9  ← High resolution, professional concept art style

\[OpenNana]\(]\(<https://x.com/Toshi_nyaruo_AI/status/2045025277538107420>)Infographic
AP Calculus 学习表信息图
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AP Calculus 学习表信息图

Please create a mathematical visualization infographic about "[math concept / topic]." The goal is to help the viewer intuitively understand what it is, why it works, its geometric or structural intuition, and how it behaves in different contexts. The visual should feel like a high-quality math lecture handout combined with a hand-drawn educational poster. It should be elegant, clear, and information-rich, but not cluttered. Visual style: either portrait or landscape is fine. Use a clean, light paper-like background, with a deep blue title and black or dark gray lines for the main content. Add a small number of refined accent colors such as blue, teal, gold, and red. Incorporate rounded-corner cards, thin borders, numbered labels, hand-drawn arrows, zoom-in callout boxes, and a summary section. The overall design should be aesthetically pleasing, balanced, and academic, allowing the viewer to grasp the structure of the concept and why it works at a glance.

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