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Library / Product / iPhone 17 Pro Max Impact Shield Test

iPhone 17 Pro Max Impact Shield Test

ProductCinematic realisticMuse AI

A high-end cinematic product showcase of the iPhone 17 Pro Max suspended in a dark test chamber, subjected to a particle impact storm that triggers protective shockwaves while the device remains pristine and undamaged.

Prompt289 copies
Create a high-end cinematic technology product film showcasing the iPhone 17 Pro Max. The entire sequence unfolds in a dark, minimalist test chamber defined by deep blacks and silver-white accent lighting. The product floats centrally throughout, with a cold white edge-light sculpting sharp contrast against the dark background. Color palette: deep blacks, silver metals, black glass, transparent water elements, and reflective optical surfaces. The mood is premium, silent, hard-edged, and deeply futuristic. Shot 1 (1.25s): Medium close-up pulling out from a black lens glass. The lens reflection expands into a dark test chamber where a silver iPhone 17 Pro Max hovers centrally, back panel facing camera. The triple-camera module is sharp and pristine. Debris particles—fractured stone, glass shards, and metal specs—suspend motionless in the darkness around it. Audio: Low-frequency electronic pulse suddenly widens; spatial rumbling begins. Shot 2 (1.25s): Wide establishing shot. Camera orbits halfway around the product. The test chamber has no visible walls, only black space and cold white contour light. The phone's silver body remains pristine, unmarked. Particles form a dangerous concentric dust ring surrounding it. Audio: Fine fractured debris scrapes and echoes from all directions. Shot 3 (1.25s): Medium shot with rapid push-in. The first wave of stones high-speed rushes toward the phone from the background. Stone edges are rough and jagged; glass shards are transparent and razor-sharp; metal particles reflect silver-white light. The device maintains vertical suspension—no drift, no deformation. Audio: Urgent whooshing layered with ascending low-frequency tones. Shot 4 (1.25s): Close-up side tracking. As debris approaches the screen edge, a silver shockwave radiates from the phone's body. The shockwave clings to the product contour like a transparent shield. Stones are repelled. The screen glass stays deep-black mirror-state. Audio: One clean metallic shockwave explosion. Shot 5 (1.25s): Macro shot grazing the screen edge at high speed. Glass surface shows zero cracks. Frame highlights run continuous and intact. A few glass shards are deflected in extreme close proximity. Slow-motion reveals the spinning trajectory of ejected fragments. Audio: Sharp high-pitched scrape of debris through air. Shot 6 (1.25s): Extreme close-up cutting into ultra-slow motion. A single stone particle approaches the silver chamfered edge, instantly pulverizes into powder upon shockwave impact. Powder disperses along the edge arc outward. The silver metal frame remains sharp, flat, and perfectly proportioned. Audio: Impact sound stretched into deep, slow-motion rumble. Shot 7 (1.25s): Medium close-up rotating to the back panel. Camera reveals the silver glass rear reflecting the particle storm. The camera platform sits at upper right; three black lenses appear as stable dark circles. High-speed particle chaos surrounds them but cannot breach the product surface. Audio: Dense fine scratching of particles striking the shield. Shot 8 (1.25s): Close-up as a glass shard sweeps across the frame, briefly refracting light over the camera module, then pushed away by the silver shockwave. The lens ring's cold-white highlight becomes clear again. Audio: Glass slide sound plus short electronic pop. Shot 9 (1.25s): Medium shot combining fast and slow motion in orbital movement. Camera circles the phone. Outer debris spirals at high speed; inner product rotates extremely slowly, creating dynamic contrast. Silver frame, black screen glass, and back structure remain stable and undamaged. Audio: Low-frequency rhythm accelerates, like test-chamber energy building. Shot 10 (1.25s): Full-view wide shot. A second, larger silver shockwave radiates from the product to the frame edge. Stones compress into a concentric ring of powder. Black space briefly illuminates. The device remains centered, floating, attitude composed. Audio: Stronger low-frequency blast, then rapid dry cutoff. Shot 11 (1.25s): Medium close-up pushing forward through powder. Dust engulfs the frame; silver iPhone 17 Pro Max flickers in and out of visibility. Camera glass reflects fine silver particles. Product edges remain outlined by cold light—no focus loss, no distortion. Audio: Dusty rustle gradually softening and dampening. Shot 12 (1.25s): Macro shot of powder transitioning to water droplets. Silver particles gradually condense into transparent beads. Particle form becomes rounded; water drops mirror the silver phone outline. Dark test chamber transitions into dark water-pressure space. Audio: Particle sound morphs into water coalescence; low-frequency smoothly descends.
Includes a consistency lock: a trait the prompt asks the model to hold constant.
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Aspect ratio
16:9
Camera
close-up · tracking · push-in · macro · slow motion · orbit · wide shot · handheld
Lighting
cool tone · backlight · low-key · high contrast · practical lights · volumetric
Mood
cinematic · futuristic · powerful
Duration
15s
Difficulty
Advanced
Model
Muse AI
Includes
Subject lock

More from Muse AI

What makes this prompt work

Every claim below is measured against the 440 prompts in this library, not asserted.

Camera

‘close-up’ is used by 335 prompts in the library, rank #1 of the camera terms seen here.

Lighting

‘cool tone’ appears in 49 prompts library-wide, rank #11.

Aspect ratio

16:9 is used by 347 of the 440 prompts in the library. Naming it at all matters more than which one is picked.

Consistency

This prompt declares a consistency lock, which is what keeps a subject recognisable across a clip.

Model

Muse AI accounts for 2.3% of the library (10 of 440 prompts).

Difficulty

Marked advanced, based on how many specs it stacks (camera, lighting, duration, lock) at once.