Image2Studio
案例

gpt-image-2

Scientific Optical Hardware Diagram

A detailed 3D schematic of an optical table setup with labeled components, an inset legend, and a descriptive caption.

A detailed 3D schematic of an optical table setup with labeled components, an inset legend, and a descriptive caption.
A detailed 3D schematic of an optical table setup with labeled components, an inset legend, and a descriptive caption.
提示词

{ "type": "scientific hardware diagram", "layout": { "main_scene": "3D render of an optical table with a red laser beam passing through 11 aligned optical components mounted on black posts.", "top_brackets": [ {"label": "Dual Modulation", "span": "SLM1"}, {"label": "4f Relay Optics", "span": "Lens L1 to Lens L2"}, {"label": "Imaging Optics", "span": "SLM2 to Lens L4"}, {"label": "Detection", "span": "Camera"} ], "optical_components_left_to_right": [ {"name": "Laser", "labels": ["Laser", "λ = {argument name=\"laser wavelength\" default=\"632.8 nm\"}"]}, {"name": "SLM1", "labels": ["SLM1", "(Phase / Pol. Mod.)"]}, {"name": "Lens L1", "labels": ["Lens L1", "(f1)"]}, {"name": "Iris", "labels": ["Fourier Plane", "(Pupil Plane)", "Iris", "(Higher Orders Filtered)"]}, {"name": "HWP", "labels": ["HWP", "(λ/2)"]}, {"name": "Lens L2", "labels": ["Lens L2", "(f1)"]}, {"name": "SLM2", "labels": ["SLM2", "(Phase / Pol. Mod.)"]}, {"name": "Lens L3", "labels": ["Lens L3", "(f2)"]}, {"name": "Lens L4", "labels": ["Lens L4", "(f2)"]}, {"name": "Linear Polarizer", "labels": ["Linear", "-Polarizer", "(Global Analyzer)"]}, {"name": "Polarization Camera", "labels": ["POLARIZATION CAMERA"]} ], "inset_box": { "position": "bottom right", "title": "Polarization Camera Micro-Polarizer Array (Per-Pixel Analyzer)", "grid": "4x4 grid of colored squares with directional arrows", "legend_count": 4, "legend_items": [ "Red square, horizontal arrow, 0° (H)", "Green square, vertical arrow, 90° (V)", "Blue square, diagonal arrow, 45° (D)", "Yellow square, diagonal arrow, 135° (A)" ] }, "bottom_caption": { "figure_prefix": "{argument name=\"figure number\" default=\"Fig. 5.\"}", "title": "{argument name=\"system name\" default=\"Ellipsography Hardware Setup.\"}", "text": "Paragraph of scientific text explaining the dual-modulation configuration, 4f relay optics, and polarization camera." } } }

提示词结构
  • 模型gpt-image-2
  • 用途social-media-post
  • 风格photorealistic, 3d-render, editorial
  • 画幅Flexible
适用场景
  • 用途social-media-post
  • 风格photorealistic, 3d-render, editorial
  • 推荐规格1:1, 4:5, 16:9, or 9:16
  • 模型GPT Image 2
如何修改

把这个 Scientific Optical Hardware Diagram 提示词当作起点。替换主体、产品细节、场景、光线、品牌颜色和输出画幅,同时保留 social-media-post 的用途和 photorealistic, 3d-render, editorial 的视觉方向。

可替换变量
  • 主体替换成你的产品、人物、场景或界面对象。
  • 用途保留或改写为 social media post、广告图、封面、海报或电商主图。
  • 画幅按投放位置选择 1:1、4:5、16:9 或 9:16。
  • 品牌线索补充颜色、材质、道具、文案安全区和最终使用平台。
推荐规格

先按目标平台选择画幅,再根据用途选择 1K、2K 或 4K。产品图和海报通常适合更高清晰度。

生成前检查
  • 检查主体、光线、构图和画幅都足够明确。
  • 检查如果图片要承载标题或广告文案,已经预留文字安全区。
  • 检查生成前确认分辨率、额度成本和最终使用位置。
为什么有效

Scientific Optical Hardware Diagram 的重点是先固定图片用途,再用主体、构图、光线、风格和画幅控制生成结果。它适合 social media post,并保留 photorealistic, 3d-render, editorial 的视觉方向。

常见问题
  • 能直接用吗?可以。先替换主体、品牌线索和画幅,再进入 Image2Studio 生成。
  • 适合什么比例?按平台选择 1:1、4:5、16:9 或 9:16。