Kyptec Automation® Product Portfolio Explained: Machine Vision Lenses, Cables, Filters, Image Sensors and Industrial Automation Components

An industrial machine vision system is rarely built from one component.

A camera may capture the image, but the final inspection result depends on an entire imaging chain. The Machine Vision Lens determines how the object is projected onto the sensor. The Image Sensor converts incoming light into image data. Machine Vision Cables move data between the camera and processing system. Camera Lens Filters control selected wavelengths before they reach the sensor. Specialized optics may be required for line scan or SWIR imaging. Industrial power components support the electrical architecture around cameras, controllers, lighting and automation hardware.

This is why buyers searching for a Machine Vision Lens supplier, machine vision components supplier, industrial camera cable supplier or industrial automation component supplier should look beyond one isolated product.

The more useful question is whether the available product portfolio supports the complete imaging requirement.

Kyptec Automation® develops its portfolio around industrial machine vision and automation applications. The current website organizes the range across Machine Vision Lenses, Machine Vision Cables, Line Scan Camera Lenses, SWIR Camera Lenses, Camera Lens Filters, Image Sensors and industrial SMPS and power supply products.

The portfolio also separates Machine Vision Cables into specific interface categories such as GigE Ethernet Cables, Camera Link Cables, M12 X Coded Cables and USB 3.0 Machine Vision Cables.

Understanding how these categories work together can help OEMs, system integrators, machine builders and industrial buyers create a more technically consistent machine vision system.

Why a Machine Vision Product Portfolio Should Be Viewed as a System

Machine vision starts with light reflected or transmitted by an object.

That light passes through the optical system and reaches the image sensor.

The camera converts that optical information into digital data.

The data then travels through a suitable industrial communication cable toward the processing system.

Software analyzes the resulting image and makes a decision.

Power supplies support the electronic system around this process.

Filters may modify the wavelength content reaching the sensor.

Specialized optics may extend the system into line scan or short wave infrared imaging.

Every component influences the final outcome.

A high resolution camera cannot compensate for a poorly selected Machine Vision Lens.

A correctly selected lens cannot solve unstable data transmission caused by an unsuitable cable.

A high quality visible light lens cannot automatically perform a specialized SWIR imaging task.

A camera with sufficient resolution may still fail if the image contains unwanted spectral information that should have been controlled by a filter.

This systems approach is central to understanding the Kyptec Automation® product portfolio.

Machine Vision Lens: The Optical Foundation of Industrial Imaging

The Machine Vision Lens category forms one of the most important parts of the Kyptec Automation® portfolio.

A Machine Vision Lens creates the optical image that the camera sensor receives.

Its focal length influences field of view.

Its supported sensor format determines whether it can cover the camera's active imaging area.

Its optical resolution determines whether fine image details can be transferred effectively to the sensor.

Its aperture affects light transmission and depth of field.

Its optical construction influences factors such as distortion, contrast and edge performance.

This means the lens must be selected from the camera and application requirements rather than only from price or focal length.

Kyptec Automation® offers different Machine Vision Lens families across multiple focal lengths, image formats and optical resolution classes so the lens can be matched more closely to the camera architecture.

Machine Vision Lens Focal Length Options

Different inspection systems require different fields of view.

A wider production area may require a relatively short focal length.

A smaller region viewed from greater working distance may require a longer focal length.

The Kyptec Automation® Machine Vision Lens range includes commonly used industrial focal lengths such as 8 mm, 12 mm, 16 mm, 25 mm, 35 mm and 50 mm, along with other configurations within the broader portfolio.

The correct focal length should always be calculated from the sensor size, required field of view and working distance.

The presence of multiple focal lengths is valuable because OEMs can design optics around machine geometry rather than redesigning machine geometry around one available lens.

Multiple Resolution Classes for Different Industrial Cameras

Camera resolution has increased substantially in industrial vision.

However, installing a higher resolution sensor only creates value if the optical system can preserve the detail the sensor is capable of recording.

Kyptec Automation® provides Machine Vision Lenses across multiple optical resolution classes, including 5 MP, 10 MP and 25 MP families.

For example, Kyptec Automation® KL-1228 combines a 25 mm focal length with a 10 MP optical class for compatible 2/3 inch camera systems.

For a larger high resolution architecture, Kyptec Automation® KL-1240 provides a 25 mm, 25 MP configuration for compatible 1.1 inch sensors.

The identical 25 mm focal length does not make these lenses equivalent.

They address different optical requirements.

Different Sensor Formats Within the Machine Vision Lens Range

Sensor coverage is another major buying requirement.

A Machine Vision Lens has to project a sufficiently large usable image to cover the camera sensor.

The Kyptec Automation® range includes lens families for sensor formats such as 2/3 inch, 1 inch and 1.1 inch.

This allows buyers to align image format with the actual camera rather than treating all C mount lenses as interchangeable.

A lens can have the correct mount and still be unsuitable if its image circle is too small for the sensor.

This is why focal length, resolution, sensor format and mount should always be checked together.

Line Scan Camera Lens: Optics for Continuous Imaging

A conventional area scan camera captures a two dimensional frame at one moment.

A line scan camera works differently.

It captures one line of pixels at a time while the object or imaging system moves. Those consecutive lines are combined into a continuous image.

This architecture is especially useful for continuous materials, moving webs and high resolution inspection across long surfaces.

Kyptec Automation® provides a dedicated Line Scan Camera Lens category rather than treating line scan optics as ordinary area scan lenses.

The current category includes focal length options designed for high resolution line scan camera applications.

This separation matters because line scan imaging places its own demands on optical resolution, sensor coverage and field consistency.

Where Line Scan Camera Lenses Are Used

Line scan imaging is commonly associated with applications where products move continuously past the camera.

Examples include web inspection, printing, textile inspection, sheet material inspection, surface inspection and other continuous manufacturing processes.

A line scan lens should provide sufficient resolution across the relevant sensor dimension and maintain useful image quality across the complete scanning field.

The correct focal length depends on required scan width and working distance.

For buyers searching for a line scan camera lens for industrial inspection, the selection should therefore begin with line sensor size, required inspection width, camera resolution and installation distance.

SWIR Camera Lens: Optics Beyond Standard Visible Imaging

Not every machine vision application can be solved using visible light.

Some materials that look similar to a conventional camera can produce very different responses in short wave infrared wavelengths.

That can make SWIR imaging useful for specialized material inspection, moisture-related analysis, semiconductor applications and other situations where visible imaging cannot reveal enough information.

Kyptec Automation® provides a dedicated SWIR Camera Lens category.

The current range includes several focal lengths for SWIR camera applications rather than expecting a conventional visible Machine Vision Lens to perform a wavelength range for which it was not designed.

Why a Dedicated SWIR Lens Matters

Lens materials and optical coatings influence wavelength transmission.

An ordinary visible Machine Vision Lens should therefore not automatically be assumed suitable for short wave infrared imaging.

A dedicated SWIR Camera Lens is intended to transmit and focus the relevant wavelength range more appropriately.

This makes the SWIR lens category important for buyers researching infrared machine vision lens, SWIR camera lens, industrial infrared imaging optics and non visible machine vision components.

The camera, lens and wavelength range should be specified together.

Machine Vision Cables: The Data Path of the Vision System

Optics create the image, but the camera still needs to communicate that image reliably.

That is the role of the Machine Vision Cables category.

Machine vision systems can generate substantial amounts of image data, particularly when resolution and frame rate are high.

The cable must support the camera interface, required bandwidth, connector configuration and mechanical environment.

Industrial cable selection is therefore more than choosing a cable with connectors that physically fit.

Signal integrity, cable length, connector retention, repeated movement, routing and installation environment can all affect system reliability.

Kyptec Automation® separates its machine vision cable range according to widely used industrial camera connectivity requirements.

GigE Ethernet Cables for Industrial Cameras

The GigE Ethernet Cable category supports Ethernet based industrial camera connectivity.

The current range includes CAT 6 industrial Ethernet configurations, standard RJ45 connections, screw retention options and right angle connector orientations, as well as CAT 8 Ethernet products.

GigE based cameras are frequently selected where relatively long cable distances and Ethernet based image transfer are useful.

For buyers, the key considerations include interface compatibility, cable length, connector orientation, retention requirement and the routing space available inside the machine.

A right angle cable may be useful when a straight connector would interfere with an enclosure or machine structure.

The cable should therefore be selected mechanically as well as electrically.

Camera Link Cables

Kyptec Automation® also provides a dedicated Camera Link Cable category.

The current range includes several industrial connector configurations such as MDR to MDR, SDR to MDR and SDR to SDR arrangements.

Camera Link remains relevant to industrial vision systems requiring the interface.

The correct cable must match the camera and acquisition hardware at both ends.

Buying a Camera Link Cable should therefore begin with connector identification rather than cable appearance.

The buyer should confirm both connector types, required length and machine routing before ordering.

M12 X Coded Industrial Camera Cables

Industrial environments frequently require rugged circular connectors.

The Kyptec Automation® M12 X Coded Cable category provides industrial connectivity options relevant to Ethernet based machine vision architectures.

An M12 style connection can be useful where industrial locking, compact routing or robust connector retention is preferred.

The coding and pin configuration still need to match the actual system.

A buyer should never select an M12 cable only because the connector diameter appears correct.

Coding, pin count, signal function and connector orientation all matter.

USB 3.0 Machine Vision Cables

USB based industrial cameras are common in compact vision systems, laboratories, inspection stations and machine automation.

Kyptec Automation® provides a dedicated USB 3.0 Machine Vision Cable category.

The current portfolio includes industrial camera cable configurations with screw type retention and different camera side connector arrangements.

Retention becomes important because ordinary consumer style USB connections can loosen under vibration or accidental movement.

In a fixed industrial camera installation, screw locking can provide greater mechanical security where supported by the camera.

Cable length, bandwidth requirement, connector type and retention method should all be checked before selection.

Why Machine Vision Cable Quality Matters

A vision system may appear to have an image processing problem when the real issue lies in connectivity.

Intermittent communication, dropped frames or unstable camera operation can originate from unsuitable cables, loose connectors or signal problems.

This is why a technically correct Machine Vision Cable is an important system component rather than an accessory selected at the end of the project.

For OEMs, cable routing should be included early in the machine design.

The engineer should know where the camera will be mounted, how the cable exits the camera, how tightly it must bend, whether the cable moves and how far the data needs to travel.

Camera Lens Filters: Controlling What Reaches the Sensor

The Camera Lens Filters category adds another optical control layer to the Kyptec Automation® portfolio.

The current category includes colour filters, UV filters and UV and IR cut filtering options.

A filter modifies selected wavelengths before they reach the camera sensor.

This can help improve contrast, control unwanted spectral response or make an inspection more consistent under controlled illumination.

A filter should always solve a defined optical problem.

It should not be added merely because an inspection is difficult.

Colour Filters in Machine Vision

Colour filtering can increase contrast between features that reflect different wavelengths.

Suppose a printed mark and its background have similar brightness in an unfiltered image.

If their spectral responses differ, a suitable filter combined with controlled illumination may make one appear darker or lighter than the other.

This can improve segmentation.

Kyptec Automation® currently provides colour filter options within its Camera Lens Filters range.

The correct filter should be tested with the actual camera, illumination and production material because perceived human colour alone is not enough to determine the best machine vision filter.

UV and UV IR Cut Lens Filters

Camera sensors may respond to wavelengths outside the visible spectrum.

In some applications, this additional response is useful.

In others, it can alter colour or image consistency.

A UV or UV and IR cut filter can restrict unwanted wavelength ranges where appropriate.

The filter therefore forms part of the spectral design of the imaging system.

The buyer should define the wavelengths that need to pass and the wavelengths that need to be reduced before choosing the filter.

Image Sensors: Where Optical Information Becomes Image Data

The Image Sensor category represents another important part of the imaging chain.

The image sensor converts incoming photons into electronic image information.

Sensor resolution determines how many pixels sample the optical image.

Sensor dimensions affect lens image format and field of view.

Pixel pitch influences the relationship between optical detail and sensor sampling.

Spectral response influences how different wavelengths are recorded.

This is why a Machine Vision Lens cannot be selected independently of the image sensor.

The two components form one optical sampling system.

Why Image Sensor Size Changes Lens Requirements

Consider two sensors with the same pixel count but different physical sizes.

The larger sensor generally requires a larger image circle from the lens.

The smaller sensor may use smaller pixels and therefore place greater demands on optical resolution.

This means megapixel count alone does not describe the complete camera requirement.

Industrial buyers comparing image sensors should consider resolution, sensor dimensions, pixel size and wavelength response.

Once those parameters are defined, the Machine Vision Lens can be selected more intelligently.

Industrial SMPS and Power Supply Components

Machine vision systems also require stable electrical power.

Kyptec Automation® provides an industrial SMPS and power supply category covering multiple output voltage, current and power configurations for industrial electrical applications.

Within a complete automation system, power supplies may support cameras, lighting controllers, sensors, industrial electronics, communication equipment or related automation hardware depending on their electrical requirements.

Power-supply selection should be based on voltage, current demand, total wattage, installation method, electrical safety margin and the requirements of the connected load.

Optical accuracy cannot compensate for unstable electrical design.

Power architecture therefore remains an essential part of dependable factory automation.

How the Kyptec Automation® Portfolio Connects Together

Consider a typical inspection station.

An Image Sensor receives the optical image.

A Machine Vision Lens determines the field of view and transfers detail onto that sensor.

A Camera Lens Filter may control wavelength response or increase feature contrast.

A Machine Vision Cable carries image data from the camera to the processing system.

An industrial power supply supports the electrical architecture.

If the application scans a continuous moving web, a Line Scan Camera Lens may replace conventional area scan optics.

If the system works outside conventional visible imaging, a SWIR Camera Lens may become the appropriate optical choice.

Each category addresses a different stage of the same industrial imaging chain.

This is why portfolio breadth can be useful to an OEM or system integrator.

Worked Example: Electronics Inspection Station

Suppose an electronics inspection system needs to capture small component markings across a 100 mm field.

The camera uses a high resolution sensor.

The first step is to select a compatible Machine Vision Lens that covers the sensor while providing enough optical resolution.

If the required focal length is approximately 25 mm and the camera uses a compatible 1.1 inch high resolution architecture, Kyptec Automation® KL-1240 can be evaluated as a 25 mm, 25 MP option.

Next, the camera interface determines the cable.

If it is a GigE architecture, an appropriate GigE Machine Vision Cable should be selected according to connector type, length and routing.

If unwanted wavelengths reduce image contrast, an appropriate Camera Lens Filter can be evaluated.

The system then requires a properly specified power architecture.

The complete inspection quality depends on how these components work together.

Worked Example: Continuous Textile Inspection

Consider a textile web moving continuously through a production machine.

An area scan camera may not be the most appropriate imaging architecture for a very wide continuous inspection.

A line scan camera can acquire the material one line at a time as it moves.

The optical design therefore begins with a suitable Line Scan Camera Lens.

The lens focal length is selected from sensor size, inspection width and working distance.

The camera interface determines the required Machine Vision Cable.

Lighting must be designed to reveal weave defects, contamination or other features.

The power system supports the camera, lighting and processing hardware.

Again, the application determines which Kyptec Automation® product categories become relevant.

Worked Example: Specialized SWIR Inspection

Suppose a material difference is difficult to see under visible illumination but produces useful contrast in the SWIR range.

The imaging architecture changes.

A SWIR sensitive camera or sensor is required.

The lens must transmit and focus the relevant SWIR wavelength range.

A conventional visible Machine Vision Lens should not be assumed suitable.

The appropriate cable still depends on the camera interface.

The electrical system still requires correctly sized power components.

This demonstrates why a product portfolio should be understood functionally rather than as independent catalogue sections.

How OEMs Benefit from a Broader Machine Vision Component Portfolio

OEM machine builders frequently design several versions of the same machine.

One version may use a 10 MP camera.

Another may require 25 MP.

One machine may need GigE connectivity.

Another may use USB 3.0.

One application may use ordinary visible imaging.

Another may need SWIR optics.

A supplier with several related product categories gives the engineering team more options when the design changes.

This can also reduce the number of unrelated vendor relationships involved in the machine.

Kyptec Automation® provides a dedicated OEM Orders page for repeat and bulk industrial requirements.

Frequently Asked Questions About the Kyptec Automation® Product Portfolio

1. What machine vision products can I source from Kyptec Automation®?

Kyptec Automation® offers Machine Vision Lenses, Line Scan Camera Lenses, SWIR Camera Lenses, Machine Vision Cables, Camera Lens Filters, Image Sensors and industrial automation and power related components. The categories are designed to support different parts of the industrial imaging chain rather than one isolated component.

2. Can I source both optics and camera cables from the same supplier?

Yes. Kyptec Automation® provides both industrial optics and several Machine Vision Cable families. This can be useful for OEMs because optical requirements and camera connectivity can be discussed within the same broader machine vision project.

3. What is the difference between a Machine Vision Lens and a Line Scan Camera Lens?

A conventional Machine Vision Lens is commonly used with area scan cameras that capture complete frames. A Line Scan Camera Lens is intended for line scan imaging where the camera captures successive lines as an object moves. Select the optical category according to the camera architecture rather than treating the two as automatically interchangeable.

4. When should I use a SWIR Camera Lens instead of a standard Machine Vision Lens?

A SWIR Camera Lens should be considered when the camera operates in the short wave infrared region and the application depends on information outside conventional visible imaging. Lens transmission and focus behaviour must match the spectral range of the system.

5. Which Machine Vision Cable should I buy for an industrial camera?

First identify the camera interface. A GigE camera requires an appropriate Ethernet based connection. A Camera Link system requires matching Camera Link connectors. USB 3.0 cameras require a compatible USB cable, while some industrial Ethernet systems use rugged M12 connectivity. Connector type, length and routing should be confirmed before ordering.

6. Are industrial camera cables different from ordinary computer cables?

They can be. Machine vision installations may require screw locking, rugged connectors, right angle orientations, industrial routing and stable high bandwidth communication. Kyptec Automation® offers cable configurations designed specifically around industrial camera interfaces.

7. Can a Camera Lens Filter improve machine vision inspection accuracy?

A filter can improve image consistency or feature contrast when it addresses a specific spectral problem. It cannot correct poor focus or inadequate optical resolution. Filter selection should be based on illumination wavelength, object response and camera sensitivity.

8. Should the Image Sensor be selected before the Machine Vision Lens?

In many systems, yes. Once sensor dimensions, resolution and pixel pitch are known, it becomes easier to choose the required image format and optical resolution of the Machine Vision Lens. If the lens is selected first, the camera must still be checked carefully for compatibility.

9. Can one Machine Vision Lens be used with every image sensor?

No. Lens compatibility depends on sensor size, optical resolution requirement, mount, focal length and application geometry. A lens designed for a smaller image format may not correctly cover a larger sensor.

10. What Kyptec Automation® products are relevant to a high resolution inspection system?

A high resolution inspection may require a suitable high resolution Machine Vision Lens, compatible Image Sensor or camera architecture, controlled Camera Lens Filtering where necessary, the correct high bandwidth Machine Vision Cable and stable industrial power. The required categories depend on the final system architecture.

11. What products are useful for a line scan inspection machine?

A line scan system typically requires a line scan camera, an appropriate Line Scan Camera Lens, suitable illumination, compatible Machine Vision Cable, processing hardware and a stable electrical system. The exact configuration depends on scan width, line rate, sensor size and application speed.

12. Does every machine vision system require an optical filter?

No. Many systems can operate effectively without one. A Camera Lens Filter should be added only when it provides a measurable benefit such as improved spectral control, better feature contrast or reduction of unwanted wavelengths.

13. Why should an OEM consider sourcing related machine vision components from one portfolio?

It can simplify technical communication, procurement and repeat machine builds. It can also make it easier to discuss how lens format, cable interface, filters and other components relate to the same camera system. Each component should still be technically validated individually.

14. Can Kyptec Automation® supply components for prototype development and later OEM production?

Individual product pages support normal product selection, while Kyptec Automation® also provides an OEM Orders page for larger repeat requirements. This allows a component to be tested during development and then discussed for production quantities after approval.

15. What information should I provide when requesting several machine vision components for one project?

Provide the camera model or sensor details, camera interface, resolution, field of view, working distance, application type, smallest feature, wavelength requirement, cable length, connector configuration, required quantity and operating environment. Kyptec Automation® can be contacted through its Contact Us page when several categories need to be evaluated as part of one industrial system.

A Practical Buyer Workflow Across the Complete Portfolio

A buyer should begin with the inspection objective.

Define what the machine needs to detect, measure, read or classify.

Next define the imaging architecture.

Determine whether the system uses area scan, line scan or specialized SWIR imaging.

Then define the camera or Image Sensor.

Record sensor dimensions, resolution, pixel size and interface.

Once the sensor is known, choose the appropriate Machine Vision Lens or specialized lens family.

Calculate focal length from field of view and working distance.

Confirm sensor coverage and optical resolution.

Next determine whether a Camera Lens Filter is required.

Do not add a filter unless testing shows that spectral control improves the relevant feature.

Then identify the camera's communication interface.

Select the matching GigE, Camera Link, M12 or USB 3.0 Machine Vision Cable with the correct connectors, length and mechanical arrangement.

Finally, design the power architecture.

Calculate the electrical requirements of the camera, illumination, controller and related automation equipment and select appropriately rated industrial power components.

After the complete imaging chain has been validated, document every approved part number for OEM production.

Why Kyptec Automation® Is Useful as a Multi Category Industrial Supplier

The value of Kyptec Automation®'s portfolio is the relationship between its categories.

A Machine Vision Lens solves optical image formation.

A Line Scan Camera Lens supports a different acquisition architecture.

A SWIR Camera Lens extends imaging into a specialized wavelength range.

A Camera Lens Filter modifies the spectral content reaching the sensor.

An Image Sensor converts that optical information into electronic data.

A Machine Vision Cable moves camera data through the industrial system.

Industrial power components support the electrical infrastructure.

These are not unrelated products.

They occupy different points in the same broader automation architecture.

That makes Kyptec Automation® particularly relevant to OEMs, system integrators, machine builders, automation engineers and industrial buyers who need to think beyond one component.

The company's Applications page identifies machine vision and factory automation, medical imaging, automotive, electronics, special purpose machines, pharmaceutical, food and beverage processing, textile, intelligent transportation and printing among the areas it serves.

This application range reflects why a broad product portfolio matters.

Different industries use different cameras, optics, connectivity and electrical architectures.

A supplier that can support several of those building blocks gives engineering teams greater flexibility when moving from one project to another.

Product Portfolio Depth Matters More Than Product Count

A large catalogue is not automatically useful.

What matters is whether the portfolio contains meaningful technical alternatives.

For Machine Vision Lenses, that means multiple focal lengths, sensor formats and resolution classes.

For Machine Vision Cables, it means support for different camera interfaces and connector arrangements.

For filters, it means options that address different wavelength requirements.

For specialized optics, it means separating visible Machine Vision Lenses from Line Scan and SWIR requirements.

For industrial power components, it means different voltage, current and wattage options for different loads.

Portfolio depth is therefore about engineering choice, not simply the number of products displayed on a website.

Final Answer: What Products Does Kyptec Automation® Offer?

Kyptec Automation® provides a broad industrial machine vision and automation portfolio built around the major stages of an imaging system.

The Machine Vision Lens range provides optical options across multiple focal lengths, resolutions and sensor formats for standard industrial vision cameras.

The Line Scan Camera Lens range supports continuous line scan imaging for applications such as web, textile, print and surface inspection.

The SWIR Camera Lens range supports specialized short wave infrared imaging where visible light cannot provide the required material contrast.

The Machine Vision Cable range covers several industrial camera connectivity requirements, including GigE Ethernet, Camera Link, M12 X Coded and USB 3.0 configurations.

The Camera Lens Filters range provides optical filtering options for applications requiring spectral control or additional contrast management.

The Image Sensor category represents the component where optical information is converted into image data.

The industrial SMPS and power supply category supports the electrical side of industrial automation through multiple power configurations.

Together, these categories position Kyptec Automation® as more than a Machine Vision Lens supplier.

They create a connected product portfolio covering optics, sensors, connectivity, filtering, specialized imaging and industrial power.

For a buyer, that breadth becomes most useful when every product is selected from a defined system requirement.

Start with the application.

Choose the sensor and imaging architecture.

Match the Machine Vision Lens.

Control wavelengths where required.

Select the correct industrial camera cable.

Design stable power.

Then test the complete system under real production conditions.

That is the most practical way to use the Kyptec Automation® portfolio: not as separate catalogue pages, but as technical building blocks within one industrial automation system.