Stroboscopic Effect vs Anaglyph 3D
Price, ratings, monetisation and update history for both apps, side by side — with what reviewers say about each.
Stroboscopic Effect
Explore the fascinating stroboscopic effect by rotating various objects. Observe how objects can appear to stop or move backward at specific speeds. This app allows you to manipulate rotation direction and speed to witness these optical illusions.
- Rotate 4 different objects
- Adjust rotation speed
- Change rotation direction
- Observe stroboscopic effect
- Supports iPad, iPhone, and Retina display
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Did you ever notice the wheels on the car driving next to you sometimes appear to be spinning backwards? This is referred to as the stroboscopic (or wagon-wheel) effect. It occurs when an object is rotated at certain speeds, making the object to appear to stop or even go backwards. Rotate 4 different objects in either direction (clockwise or counterclockwise). You can increase the speed until you see it appear to stop or reverse. On one of the objects, a wheel with different colored alternating rings, you can make it appear as if the rings of this single option are turning in opposite directions. Universal App - supports native iPad, iPhone and iPhone 4's Retina display. WARNING - Those with Epilepsy or those subject to seizures are usually cautioned to avoid strobe lights or similar effects.
Anaglyph 3D
This app generates 3D anaglyph images and videos from single photos or videos using depth prediction and machine learning. It creates stereo image pairs that, when viewed with special glasses, produce a convincing 3D effect.
- Generates anaglyphs from photos, Live Photos, and videos
- Uses depth prediction and machine learning
- Creates stereo image pairs from single images
- Adjustable disparity intensity for 3D effect
- Supports viewing with red-cyan glasses or VR headsets
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Anaglyph 3D creates anaglyphs for photos, Live Photos and videos by generating stereo image pairs from depth prediction. Two photos taken with a slight horizontal offset—mimicking human vision—form a stereo image pair. When viewed with special glasses, Virtual Reality headsets, or free-viewing techniques like cross-eye or parallel viewing, this offset allows the brain to perceive depth, creating a 3D effect. An anaglyph combines the left and right images of a stereo pair into a single image, creating a 3D effect when viewed with red-cyan glasses. Specifically, the left image is represented in shades of red, while the right image appears in shades of cyan. The color-matching lenses ensure that each eye receives the correct image, enabling depth perception. Traditionally, a stereo pair is captured with a dual lens or double shot camera, as in our app Cameranaglyph. This app offers an alternative approach, using a single image to generate a stereo pair from depth prediction and machine learning. Each of your eyes sees a slightly different view because they are spaced apart horizontally. This causes objects to appear slightly shifted between the left and right views. The amount of horizontal shift between common objects in both views is called disparity. Closer objects have a larger disparity than those farther away. You can observe this effect by looking at an object with one eye closed, then switching to the other eye. The closer the object, the more it appears to shift between views. Your brain uses this difference to perceive depth and distance. Machine learning is a process where computers analyze data to make predictions without being explicitly programmed for each task. It employs a model to detect and analyze patterns within the data. Training involves optimizing the model by iteratively adjusting its parameters using labeled data to minimize prediction errors and improve performance. One application of machine learning is depth prediction in images, where the model estimates how far objects are from the camera. By training on millions of images, the model learns to recognize visual patterns that indicate depth. A depth map is an image that represents object distances by encoding them as grayscale pixel values. Using machine learning, it’s possible to predict depth from a single photo or video frame, creating a depth map. The depth map is used to create a disparity filter to generate a right and left image stereo pair by shifting pixels in the original image. The stereo pair can then be used to create an anaglyph. The Disparity Intensity parameter adjusts the pixel shift between the left and right stereo images generated from depth prediction. Increasing the value exaggerates depth differences, enhancing the 3D effect, while decreasing it reduces the disparity for a more subtle stereo effect — similar to adjusting contrast in an image. Select a photo or video using the browser or from the sample media in the app menu. For a conventional video stereo pairs are generated from depth prediction on the single image extracted from a video frame. Each stereo pair is then used to generate three types of video output—Anaglyph, Side by Side and Spatial—as follows: Anaglyph: Each output video frame is an anaglyph created using a stereo image pair generated from depth prediction on the input video frame, for 3D glasses. Side by Side: Each output video frame is a juxtaposition of the images using a stereo image pair generated from depth prediction on the input video frame. The placement of images is intended for parallel viewing. To see the 3D effect, the viewer must train their eyes to focus as if looking at a distant object, allowing each eye to align with the corresponding image. Spatial: Each output video frame consists of a stereo image pair generated from depth prediction on the input video frame to create a spatial video. A spatial video is a stereoscopic 3D video format introduced for the Apple Vision Pro.
Screenshots
Verdict
The clearest difference is review sentiment: Stroboscopic Effect at 100% against Anaglyph 3D's 67%. Stroboscopic Effect also leads on ratings volume (18 vs 2) and iOS requirement (8.0 vs 17.2). Anaglyph 3D's advantage is update cadence (every 4 days vs every 84 months) and rating (3.0 vs 2.7). On price, ads, in-app purchases and monetization model there is nothing between them.
Scored on Price · Rating · Positive reviews · Number of ratings · Update frequency · Ads · In-app purchases · Monetization · Best chart rank · Devices · Requires iOS
Both are free to download. Neither carries in-app purchases, so what you see is what you pay.
Anaglyph 3D holds the better App Store score, 3.0 against 2.7. That said, the two scores are not equally well evidenced: Stroboscopic Effect has 18 ratings behind it against 2, so its average is the more settled of the two. Written reviews complicate that: 100% of Stroboscopic Effect's written reviews are positive against 67% of Anaglyph 3D's, so the app with the better star average is not the one people write more warmly about.
Stroboscopic Effect ships an update every 84 months, Anaglyph 3D every 4 days. The most recent releases landed on September 19, 2026 and August 12, 2026 respectively.
| Parameter | Stroboscopic Effect | Anaglyph 3D |
|---|---|---|
| Price | Free | Free |
| Rating | 2.7 (18 ratings) | 3.0 (2 ratings) — better |
| Positive reviews | 100.0% of reviews — better | 66.7% of reviews |
| Number of ratings | 18 — better | 2 |
| Update frequency | Every 84 months | Every 4 days — better |
| Ads | No | No |
| In-app purchases | No | No |
| Monetization | Free | Free |
| Devices | iPhone, iPad, iPod | iPhone, iPad, Mac |
| Requires iOS | 8.0 — better | 17.2 |
| Further details — not scored | ||
| Size | 3 MB | 719 MB |
| Age rating | 4+ | 4+ |
| Developer | Magnin & Associates | Limit Point Software |
Customer experience
Stroboscopic Effect
Anaglyph 3D
In-app purchases
Stroboscopic Effect
No in-app purchases
Anaglyph 3D
No in-app purchases
Questions
Is Stroboscopic Effect free?
Is Anaglyph 3D free?
Which has better reviews, Stroboscopic Effect or Anaglyph 3D?
Do Stroboscopic Effect or Anaglyph 3D have ads?
Which is updated more often, Stroboscopic Effect or Anaglyph 3D?
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