We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Lens unit.
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Lens unit Product List and Ranking from 11 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

Lens unit Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. フェニックス・ジャパン Kanagawa//Optical Instruments
  2. 須賀川市 経済環境部商工課 Fukushima//Government
  3. ファーストシステム 名古屋本社 Aichi//Electronic Components and Semiconductors
  4. 4 サニー・ジャパン Tokyo//Optical Instruments
  5. 4 光学設計研究所 Tokyo//Optical Instruments

Lens unit Product ranking

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
This ranking is based on the number of page views on our site.

  1. SIRTEC車載レンズユニット 事業紹介 フェニックス・ジャパン
  2. Kantatsu Co., Ltd. Sukagawa Factory 須賀川市 経済環境部商工課
  3. Vehicle-mounted lens unit サニー・ジャパン
  4. 4 Optical Design Research Institute Co., Ltd. Company Profile 光学設計研究所
  5. 5 Constant voltage: TAIKOO nano-24 ファーストシステム 名古屋本社

Lens unit Product List

1~15 item / All 37 items

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Constant current: TAIKOO 4C

Constant current DC350/700mA specification! High-output lens module focused on Japanese production.

"TAIKOO 4C" is a constant current specification LED with a high-output lens module that is committed to Japanese production. The recommended sign thickness is 100mm to 150mm, and the recommended pitch is sign thickness (inner dimension) ÷ 0.5. Daylight color is available in the lineup. 【Features】 ■ High diffusion lens module ■ Constant current DC350/700mA specification ■ Dedicated aluminum bar & mounting cap (sold separately) For more details, please refer to the catalog or feel free to contact us.

  • LED Module

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Constant voltage: TAIKOO nano-24

Constant voltage DC24V specification! Lens module for slim and narrow signage.

"TAIKOO nano-24" is a lens module LED designed for thin and narrow signage with a DC24V specification. The recommended sign thickness is between 50mm and 100mm, and the recommended pitch is the sign thickness (internal dimension) divided by 0.6. Daylight color is available in the lineup. [Features] - Uses domestically produced LEDs - High color rendering type with Ra80 - Ideal for thin lanterns and channel letter signs For more details, please refer to the catalog or feel free to contact us.

  • LED Module

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AC100V: TAIKOO mini100

No power supply needed, direct AC100V specification! Compact and slim high-diffusion middle power lens module for signage.

The "TAIKOO mini-100" is a high-diffusion mid-power lens module LED designed for small and slim signage with an AC100V specification. The recommended sign thickness is 50mm to 100mm, and the recommended pitch is sign thickness (inner dimension) ÷ 0.6. Various colors are available in the lineup. 【Features】 ■ High color rendering type with Ra80 ■ Ideal for slim lanterns and channel letter signs ■ Surge protector connection available (sold separately) For more details, please refer to the catalog or feel free to contact us.

  • LED Module

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Lens Unit "ENDSCOPE LENS UNIT"

Achieve wide-angle and high depth with ASP! We provide support from optical design to lens assembly!

The "Lens Unit" achieves a wide angle and high depth through ASP. It can be used in industrial microscopes and medical capsule endoscopes. 【Available Services】 ■ Optical design to lens assembly ■ Micro ball lenses (φ0.5mm and up) ■ Micro aspherical/spherical glass molded lenses (φ0.7mm and up) ■ Small diameter IR cut filters, compact tubes *For more details, please refer to the PDF document or feel free to contact us.

  • lens
  • Microscope
  • Contract manufacturing

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Optical Design Research Institute Co., Ltd. Company Profile

We have a wealth of development achievements, including "lenses for liquid crystal panel inspection devices" and "ultra-compact zoom lenses"!

Optical Design Research Institute Co., Ltd. is engaged in the development, prototyping, manufacturing, and sales of optical devices. We handle various lens unit prototypes/mass production, as well as the development of optical measurement devices and systems, technical consulting, and business proposals. Additionally, we have a wealth of development experience in zoom lenses for video cameras, zoom lenses for security cameras, fingerprint/vein authentication devices, and lenses for web cameras. Please feel free to contact us when you need our services. 【Business Activities】 ■ Development, prototyping, manufacturing, and sales of optical devices *For more details, please refer to the PDF document or feel free to contact us.

  • lens
  • lens
  • Other optical parts

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SE Camera Series: Compact Lens Module

We sell small, high-performance modules that can be connected to Raspberry Pi, and we also support customization.

We offer a variety of lens modules, including the fisheye camera module "SE219FE-00/01-CB," which can be installed in narrow spaces with a thickness of 6mm or less, as well as cameras suitable for AR/VR goggles and smart glasses, such as the "SE132GS-01 global shutter camera." Additionally, we have started selling various high-sensitivity STARVIS/STARVIS2 camera boards (MX662/IMX585), all of which can be connected to a Raspberry Pi. 【Product Lineup】 ■ SE219 Series (various lens variations with different angles of view) ■ SE132GS Series (Global Shutter camera board) ■ SE-SB2M-IMX662AAQR/AAMR STARVIS2 2K camera (RGB/MONO) *Lens customization is available upon request.

  • Surveillance Cameras

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[Analysis Case] Lens Inner Surface Reflection Analysis

Various experiences and know-how cultivated through micro-lens development! Strongly supporting your manufacturing.

We detect ghost flares caused by lens surfaces and quickly and effectively correct them. Recognizing the importance of corrections in the early design stages, we offer a service to check for unnecessary ghost flares immediately after lens design. To ensure high-quality images and photos in your projects, please consider our ghost flare correction service. 【Features】 ■ Detects ghost flares caused by lens surfaces and corrects them quickly and effectively ■ Provides a service to check for unnecessary ghost flares immediately after lens design *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis

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[Analysis Case] Koba Section Route Analysis

We provide ghost analysis and modifications tailored to customer requirements, contributing to the success of the project!

Our company conducts analysis and corrections regarding ghost flares in actual lens units, taking into account reflections not only from the lens surface but also from the edge surfaces and spacer component surfaces. In particular, the development of high-performance lenses utilizes edge shapes for enhanced performance, necessitating complex ghost flare analysis. By combining actual image verification with a verification database and utilizing ray tracing technology, we thoroughly elucidate the routes of ghost occurrence and propose suitable correction methods. This approach addresses the complex ghosts generated from various parts, ensuring excellent image quality even in the development of high-performance lenses. 【Features】 ■ Detailed elucidation of ghost occurrence routes using ray tracing technology, along with the proposal of suitable correction methods. ■ Addressing complex ghosts generated from various parts, ensuring excellent image quality in the development of high-performance lenses. *For more details, please refer to the PDF materials or feel free to contact us.

  • Structural Analysis

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[Analysis Case] Lens Birefringence

We will introduce a case that evaluates the correlation with the actual object and understands the state of birefringence occurrence through simulation.

We would like to introduce a case study comparing the birefringence when creating a physical sample at our company and conducting molding simulations with a similar model. We have made corrections regarding various resin material data and actual molding conditions, confirming that a high degree of correlation with the actual machine has been achieved. Tokyo Shinbi Optical Electronics utilizes simulation technology in conjunction with the production of physical samples using molds and molding equipment to support our customers' material development. 【Case Overview】 ■ Simulation Details - Corrections regarding various resin material data and actual molding conditions *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis

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[Analysis Case] VCM Electromagnetic Field Structural Analysis

Understanding displacement characteristics and tilt characteristics due to driving force generation through VCM magnetic field analysis and structural nonlinear static analysis!

Our company focuses on important aspects such as the driving performance and stability of ACT, providing comprehensive support from the evaluation of existing devices to the design and development of new ACT devices. We offer analysis services related to magnetic drive ACT (Actuator) systems, such as AF (Auto Focus) and OIS (Optical Image Stabilization), which are essential for smartphone cameras. Please feel free to contact us if you have any inquiries. 【Features】 ■ Comprehensive support from the evaluation of existing devices to the design and development of new ACT devices. *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis

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[Analysis Case] Impact Analysis

Understanding the lens behavior during mechanical shock of the lens unit!

Our company conducts drop impact simulations based on actual reliability tests to improve the reliability of micro lenses. We reproduce the actual impact test conditions and meticulously analyze the lens deformation and stress generation states. The data obtained identifies structural weaknesses in the lens unit and clarifies areas for design improvement. We can analyze individual lens units, camera modules that combine VCM and OIS, and various other lens units and optical devices. [Case Overview] - Reproducing actual impact test conditions and meticulously analyzing lens deformation and stress generation states - Identifying structural weaknesses in the lens unit and clarifying areas for design improvement - Beneficial for reliability enhancement and design optimization in product development *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis

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[Analysis Case] Sequential Deformation Analysis

Understand the deformation effects caused by adhesive curing shrinkage when bonding the lens unit!

Our company conducts simulations of the shrinkage phenomenon associated with adhesive curing in the process of bonding lens units to VCM (Voice Coil Motor) carriers, in order to improve the reliability of optical systems and pursue high performance. By using adhesives with different curing speeds and shrinkage rates, we quantitatively analyze the impact of shrinkage on the internal lenses. This allows us to implement specific measures to enhance reliability and suppress lens deformation in the bonding process. [Case Summary] ■ Quantitative analysis of the impact of shrinkage on internal lenses ■ Ability to suppress lens deformation in the bonding process *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis

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[Analysis Case] Assembly Process Analysis

Understand the lens distortion that occurs when assembling the lens unit!

Our company conducts structural simulations to analyze the deformation state of lenses in the assembly process of micro lens units in detail. We model the stress and deformation of lenses in response to assembly conditions and material variations, taking into account the temporal changes over time. The data obtained is utilized for optimizing the assembly process and design to contribute to yield improvement, providing advanced insights into lens deformation during assembly and throughout the usage period. [Case Overview] ■ Modeling the stress and deformation of lenses in response to assembly conditions and material variations ■ Providing advanced insights into lens deformation during assembly and throughout the usage period *For more details, please refer to the PDF materials or feel free to contact us.

  • Structural Analysis

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[Analysis Case] Fall Analysis 1

Introducing a case study on the behavior of drop fixtures and lenses during impact from a fall!

As part of our reliability evaluation of micro lenses, we conduct drop impact simulations that replicate actual reliability testing conditions. We drop a fixture equipped with micro lenses from a specified height and evaluate the acceleration and stress. The simulation results quantitatively detail the physical impacts on the product and predict the potential for damage or deformation during a drop. This case demonstrates that drop impact simulations are essential for improving product reliability. [Case Overview] ■ Evaluation of acceleration and stress ■ Prediction of potential damage or deformation during a drop *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis

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