Test chart various types
Shibuya Optical handles various types of test charts.
Custom production is also possible, so please feel free to consult with us first.
- Company:渋谷光学
- Price:10,000 yen-100,000 yen
Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.
Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.
31~45 item / All 49 items
Shibuya Optical handles various types of test charts.
Custom production is also possible, so please feel free to consult with us first.
It is the ideal tool for evaluating optical devices. It also supports chart creation using glass, PET substrates, and photographic paper.
The "White Glass Chart" is a product that forms a pattern with a metal film on white glass (Neoceram N11, Nextreama). It is effective for measurement and positioning evaluation using reflected light. The substrate can be selected in two types: mirror and non-mirror (matte). The pattern line width can accommodate a minimum of 2um. The "White PET Chart" features a black chart pattern precisely drawn on a flexible white PET material. Compared to paper-based photographic paper products, it offers superior durability. The maximum size is A3. The "Photographic Paper Chart" is a reflective test chart created using black-and-white photographic paper, which is a photosensitive material. It is used for calibration purposes of various scanners and as a resolution chart for camera photography. It is characterized by a subdued texture compared to products made from glass or PET substrates. Additionally, there are high-definition charts with a white background for transmission-type glass and film charts, as well as reflective color products. The patterns can be freely customized to match measurement specifications. *For more details, please download the catalog or contact us.*
Exposure test chart for quick position photosensitive boards.
Can be reused repeatedly and the appropriate exposure time is easy to understand.
It is equipped with various basic functions such as time measurement and multiple playback!
"Sopak-C" is a camera system that continues to record work sites through time-lapse photography with network cameras, allowing you to instantly view any site you wish to revisit from the past. It consists of a server PC, network cameras, monitors, hub switches, lighting fixtures, wireless systems, and installation equipment. As a "Kaizen Camera," it accurately captures the current state of work sites and contributes to proper evaluation and improvement, enhancing productivity and quality. 【Basic Functions of the Sopak System】 ■ Recording and Playback ■ Live Camera ■ Time Measurement ■ Multiple Playback ■ Work Graph ■ Long-term Continuous Playback ■ Alive Monitor *For more details, please refer to the PDF materials or feel free to contact us.
Introducing a wide range of products including lighting equipment and measurement devices from Image Engineering, as well as test charts and analysis software!
This catalog is a comprehensive catalog featuring products from Image Engineering, handled by Trioptics Japan Co., Ltd. It introduces lighting devices such as the "LE7" and "CAL series" equipped with a dimmable iQ-LED light source, as well as the "LG3," which has high brightness and a flicker mode, timing measurement device "LED-Panel," and image analysis software "iQ-Analyzer-X." It is filled with information about the products, including features and specifications. [Contents (partial)] ■ iQ Test Stand ■ Lighting Devices ■ Measurement Devices ■ Image Analysis Software ■ Test Charts *For more details, please refer to the PDF document or feel free to contact us.
The dynamic range can be measured up to 10 f-stops! Introducing a carefully selected test chart from ImageEngineering!
The "TE42" is an analysis chart manufactured by ImageEngineering, which we handle. It is a multipurpose test chart that can be used with cameras ranging from 2 to 170 megapixels. By capturing just one image under consistent lighting conditions, you can obtain an overview of the camera's image quality performance. Additionally, it consists of patterns for analyzing resolution, texture reproduction, sharpness, dynamic range, noise, color reproduction, distortion, chromatic aberration, and visual aspects. These analyses are automatically processed by the "iQ-Analyzer software." 【Features】 ■ Dynamic range can be measured up to 10 f-stops (due to limitations of reflective targets) ■ Resolution is measured at the center and periphery of the image ■ Enhanced linearization around the Siemens star for resolution analysis ■ A Siemens star that supports the future ISO standard 19567 for texture standards ■ Various contrast levels of diagonal edges for sharpening analysis applied to the image *For more details, please refer to the PDF document or feel free to contact us.
Introducing the selected test chart from ImageEngineering!
Measuring the camera's characteristic curve is one of the important tests. The function obtained as a result is called the Optical-Electrical Conversion Function (OECF). OECF measurements can be conducted based on ISO standards 14524 and 15739, using one of the well-known charts: "TE264," "TE269," or "TE270." These standard charts use a halftone process to create gray levels on lithographic film. For waveform monitors, "TE223" with a horizontal grayscale is recommended. Cameras without manual exposure control can be tested using "TE270X." 【Main OECF Charts】 ■TE269: OECF Chart (Compliant with ISO standard 15739) ■TE264: OECF20 Chart (Compliant with ISO standards 14524 / 15739) ■TE223: HDTV Logarithmic Grayscale Test Chart ■TE270X: OECF Chart (Compliant with ISO standards 14524 / 15739) *For more details, please refer to the PDF materials or feel free to contact us.
Industry-specific solutions are the optimal solutions for starting quality tests tailored to the needs and requests of users.
Testing cameras that cannot be manually adjusted to match lighting conditions is always a challenge, especially for mobile phone camera modules such as those found in smartphones. The recommended product for evaluating mobile phone and smartphone image quality includes the multipurpose chart TE42. This chart allows for the assessment of various image quality performance metrics such as resolution, distortion, color (color reproduction), and texture loss, all in a single image. To conduct OECF and noise measurements in accordance with ISO standards 14524 and 15739, the TE270X is uniformly illuminated using the iQ-LED equipped lighting device (integrating sphere) LE7. This special chart is equipped with two polarizing filters at its center to facilitate automatic exposure control. By replacing the chart with the TE255 diffuser plate, it can be used to measure color and shading, which are particularly problematic for small camera modules. The captured images are evaluated using the image analysis software iQ-Analyzer-X.
Industry-specific solutions are the optimal solutions for starting quality tests tailored to the needs and requests of users.
In the field of in-vehicle camera imaging, customer demands are currently overwhelmingly focused on two quality parameters: high dynamic range combined with OECF and spatial resolution. Therefore, the recommended light sources for image quality evaluation in the automotive industry are the LE7, an illumination device for transmission charts equipped with iQ-LED (integrating sphere), or the LG3, a high-intensity flicker-free lighting device. The recommended charts are the OECF chart TE269B (measurable dynamic range of 1,000,000:1 / 120dB) or TE269C (measurable dynamic range of 5,000,000:1 / 134dB). Additionally, the reflective chart TE261 with an inclined edge of size A1066 allows for the measurement of SFR (spatial frequency response) even for cameras with a high level of geometric distortion. These quality parameters can be analyzed using the image analysis software iQ-Analyzer-X.
Industry-specific solutions are the optimal solutions for starting quality tests tailored to the needs and requests of users.
Most medical imaging applications are designed to capture images at a microscopic (or small) scale. Therefore, the test charts must also be small. To uniformly illuminate the final image with the same light source, we recommend the CAL4 integrating sphere with a diameter of 30 cm, which comes with four types of connection adapters for various endoscope light sources. (Note: The CAL4 does not come equipped with light sources such as iQ-LED.) The opening of this integrating sphere features a 50x50 mm output window with a slot for a D35 size chart. For resolution measurement, a D35 size Siemens star TE253 9x (compliant with ISO standard 12233:2014) is recommended. For measuring OECF, dynamic range, noise, etc., a D35 size TE240 chart with 24 gray patches (compliant with ISO 21550) is recommended. For color evaluation, the transmissive Calibrite ColorChecker TE188 (D35 size) is recommended, and for visual assessment, the U.S. Air Force resolution chart TE250 for 35mm film (D35 size) is recommended.
The optimal multipurpose test chart for low-light measurement with ultra-wide-angle cameras! Introducing the selected test chart from ImageEngineering!
The "TE42-LL UW (TE42-LL Ultra-Wide)" is a test chart modified for ultra-wide-angle cameras from ImageEngineering's low-light measurement multi-purpose chart "TE42-LL." It is suitable for low-light measurements of ultra-wide-angle cameras, where accurate resolution measurement is challenging due to distortion aberrations present in the test images. To enable more accurate resolution measurements even in the presence of distortion aberrations (which are common in ultra-wide-angle cameras), a grid-like target is used. The TE42-LL UW can be analyzed using iQ-Analyzer-X software version 1.10.0 or later.
Test chart for flare measurement compliant with ISO18844! Introducing the selected test chart from ImageEngineering!
Flare is unwanted light in an image caused by light reflecting off various surfaces within the lens and camera. Flare generates a diffuse veil over the image field, significantly degrading image quality and leading to a decrease in contrast. The TE281 is a flare measurement chart designed in accordance with the ISO 18844 standard for measuring flare (Image Flare) in digital cameras. The TE281 features a total of 17 holes arranged diagonally across the chart, and light traps (super black holes) are attached to each hole from the back of the chart for use. The super black hole acts like a blackout curtain to emphasize black, absorbing a high percentage of light to produce the lowest possible black level. The ideal light source for the TE281 is a standard lighting system for reflective charts, such as Studio Lights. *Flare measurement with the TE281 only targets flare caused by light within the field of view of the test camera module. **The TE281 standard is a reflective chart of size A1066, but custom charts in a transmissive version can also be provided upon request.
We leverage technology and careers at every step to meet the required precision and deadlines.
1. Specification Review Depending on the contents of the specification document, a rough estimate can be provided at this stage. 2. Design By designing everything in 3D CAD, it is possible to significantly reduce issues that occurred with 2D CAD. 3. Customer Approval It is possible to consider approval while viewing the 3D model. 4. Drawing Production We will create 2D drawings from the approved 3D model. Once the 2D drawings are completed, we will proceed with production arrangements. 5. Material Procurement We prioritize cost reduction and procure materials accordingly. For steel, we have most materials in stock within the company. 6. Parts Processing Generally, most processes are carried out in-house, but we also collaborate with domestic and international partner companies to meet cost and delivery deadlines. 7. Assembly Experienced assembly craftsmen work closely with designers to ensure the highest quality while strictly adhering to delivery schedules. Additionally, electrical work can be handled after assembly is completed. 8. In-House Inspection We will conduct an in-house inspection on the date requested by the customer. 9. On-Site Delivery and Installation We can handle equipment delivery, installation, and robot teaching as well.
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