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Microscope Cameras Models

CCD Microscope Camera sensor for comparison of microscope cameras

Looking for the best microscope camera for your research, teaching, or industrial imaging requirements?

 

Compare top models from Jenoptik, Zeiss, and Tucsen in our comprehensive guide. Featuring high-resolution CMOS sensors, advanced fluorescence capabilities, and versatile USB and HDMI interfaces, this page helps you quickly find the ideal camera for your setup. Whether you need a 4K camera for teaching or a cooled camera for fluorescence imaging, explore your options below.

Camera Name
Mega Pixels
Colour
Pixel Width (Microns)
Pixel Height (microns)
Sensor Size
Manufacturer
MIchrome 16
16 Megapixels
16 Bit Colour
1.34
1.34
0.43
Tucsen
MIchrome 20
20 Megapixels
16 Bit Colour
2.4
2.4
1
Tucsen
MIchrome 5 Pro
5 Megapixels
16 Bit Colour
3.45
3.45
0.66
Tucsen
MIchrome 6
6 Megapixel
16 Bit Colour
2.4
2.4
0.83
Tucsen
Macro Stand and Lens
-
Avior
8 Megapixel
16 Bit Colour
1.85
1.85
0.5
Jenoptik
Axiocam 807 Colour
7.1 Megapixel
14 Bit Colour
4.5
4.5
1.1
Zeiss
Axiocam 820 Colour
20 Megapixel
14 Bit Colour
2.74
2.74
1.1
Zeiss
Axiocam 807 Mono
7.1 Megapixel
14 Bit Monochrome
4.5
4.5
1.1
Zeiss
Axiocam 820 Mono
20 Megapixel
14 Bit Monochrome
2.74
2.74
1.1
Zeiss
Axiocam 705 Pol
5.0 Megaixel
14 Bit Monochrome
3.45
3.45
0.66
Zeiss
Axiocam 705 Colour
5.0 Megapixel
14 Bit Colour
3.45
3.45
0.66
Zeiss
Axiocam 705 Mono
5.0 Megapixel
14 Bit Monochrome
3.45
3.45
0.66
Zeiss
Axiocam 305 Colour
5.0 Megapixel
12 Bit Colour
3.45
3.45
0.66
Zeiss
Axiocam 305 Mono
5.0 Megapixel
12 Bit Monochrome
3.45
3.45
0.66
Zeiss
Axiocam 208 Colour
8.3 Megapixel
12 Bit Colour
1.85
1.85
0.476
Zeiss
Axiocam 202 Mono
2.0 Megapixel
12 Bit Monochrome
5.86
5.86
0.51
Zeiss
Axiocam 105 Colour
5.0 Megapixel
8 Bit Colour
2.2
2.2
0.4
Zeiss
Axiocam 712 Mono
12.0 Megapixel
14 Bit Monochrome
3.45
3.45
1.1
Zeiss
Wega
2.3 Megapixel
16 Bit Monochrome
5.86
5.86
0.83
Jenoptik
Subra
2.2 Megapixel
16 Bit Colour
5.86
5.86
0.83
Jenoptik
Betria
3.0 Megapixel
16 Bit Monochrome
3.7
3.7
0.5714
Jenoptik
Rigel
2.3 Megapixel
16 Bit Monochrome
5.86
5.86
0.83
Jenoptik
Prokyon
20.7 Megapixel
16 Bit Colour
5.86
5.86
0.83
Jenoptik
Polaris
3.44 Megapixel
16 Bit Monochrome
7.2
7.2
1
Jenoptik
Naos
20.0 Megapixel
16 Bit Colour
2.4
2.4
1
Jenoptik
Kapella
2.3 Megapixel
16 Bit Colour
5.86
5.86
0.83
Jenoptik
Arktur
8.0 Megapixel
16 Bit Colour
2.4
2.4
0.66
Jenoptik
Altair
12.0 Megapixel
16 Bit Colour
1.85
1.85
0.5714
Jenoptik

Microscope Camera Applications

We offer a range of microscope cameras suitable for many applications and demands. Contact us to get a quote on any model of camera.​​

Image taken with a fluorescence microscope camera with fast, sensitive pixels

Fluorescence Microscope Camera Applications

Image over a whole spectrum of fluorophores with high sensitivity fluorescence microscope cameras with large pixel sizes and monochrome capture.

Microscope Image of Forensic Fiber

Forensics Microscope Camera Applications

Document detail in high resolution and with speed for forensic applications.

Industrial microscope camera image of a clock unit showing gears in high resolution taken on a Zeiss stemi 305

Industrial & Manufacturing Microscope Camera Applications

Document industrial samples with high resolution, fast image speeds and plenty of software features to enhance workflow. 

 Image of cells taken with a an okolab incubator and a microscope camera setup for live cell imaging

Live Cell Imaging Microscope Camera Applications

Capture fast moving samples in high refresh rates with extra features for long term experiments such as slow motion and time lapse.

  • Do you ship globally?
    Yes we ship and service OHREM's globally, service contracts are provided to help maintain your machine.
  • Can a demo unit be organised at my institution?
    Indigo is a small company and uses its size to give the best possible product for the best possible price to help researches get the most from their product. To keep costs low we do not have a facility to deliver demo stock to customers. Instead we invite customers to make specimens and send them to us to either be processed by us or one of our existing customer network. Get in contact to see how we can help.
  • What is the difference between HREM and OHREM
    HREM and OHREM are interchangeable however at Indigo we refer to OHREM as the system and HREM as the Technique. OHREM stands for Optical High Resolution Episcopic Microscopy.
  • Can the machine be adapted to different techniques?
    The system is flexible and we can help adapt the system to user requirements, get in contact to see what we can do.
  • Who Manufactures OHREM?
    The Optical HREM System is manufactured and sold by us here at Indigo Scientific.
  • How is the OHREM controlled?
    OHREM is controlled by a custom application designed by us here at Indigo to help deliver the most optimal performance and efficiency.
  • What is the maximum size of a specimen?
    A single shot optic (no scanning) is limited to the optical limit of 30mm for the standard system. However, with changes to the configuration the OHREM can achieve success of samples of 60mm wide. Get in touch to find out more.
  • What samples can be used?
    In theory it is down to the staining but already there has been great success in a variety of different specimens, we can offer interested parties imaging of there samples after following the protocol found in the members area. Get in touch to find out more.
  • How does the system (OHREM) work?
    HREM works by using a custom made microtone and optical setup made by Indigo Scientific to section a sample. The sample is imaged during sectioning giving an image series. Learn more about High Resolution Episcopic Microscopy Here. HREM sections 1-10 microns of a resin based block and images the surface.
  • How many samples/blocks can be imaged at once?
    Revision 1 OHREM systems can only image 1 block per section. OHREM 2 and an adapted OHREM 1 is capable of imaging 2 20 mm blocks or 4 10 mm blocks with the facility to expand this if required. It is worth noting a block can contain more than one sample, for example one block can contain 3 embryonic mouse hearts.
  • Are there different configurations/Addons?
    OHREM comes with many addons and configurations. Selections can include a scanning stage, dual/multi flourescence etc, contact us to get full details.
  • How does the system look?
    The Optical HREM system will vary based on the type of system you want but the main system will consist of a microtome unit and optics. The two major systems are the HREM Ultra and HREM Micro .
  • Can HREM be used for imaging hearts at different developmental stages?
    Yes, HREM is highly effective for imaging hearts at various stages of development, particularly in embryos and pups.
  • What makes HREM a good tool for heart imaging in small models?
    HREM provides high resolution and 3D imaging capabilities, allowing researchers to visualize the complex anatomy of the heart in great detail and measure in 3 dimensions.
  • Can HREM be used to image other species and organs?
    Yes, HREM can be used to image many different sample types and density’s such as zebrafish.
  • What are key features to look for in a microscope camera?
    There are lots of specifications, options and software that would impact your choice of a microscope camera. To keep things simple let’s point out some key features we would advise you look out for Sensor size – In microscopy you want to look out for the sensor size, a larger sensor size (often the biggest seen at 1-1.1 inches) often allows for greater pixels which gives better sensitivity for low light applications. It may provide greater resolution up to 20 megapixels. For most industrial and lab work applications a trade off of sensor size over cost is usually taken, picking a smaller sensor size with a fair pixel size. Pixel size – Pixel size refers to the size of each individual pixel on the sensor, the greater the pixel size the better it is for low light applications. The lower the pixel width and height the generally more noisier the image, with lower dynamic range but can often fit far more pixels on the same sensor. Colour type – Microscope cameras come in two main colour variants (not depth that’s a different thing), colour and monochrome. Monochrome cameras are best for low light applications where you require better depth and sensitivity over being able to see the sample in colour. Most applications(bright field etc) will want a colour camera. Don’t be shocked that monochrome cameras carry a bigger price tag either, they are often designed for fluorescence imaging so have better specifications. Interface – Believe it or not picking a camera with a good interface is important. For example USB 3.0 is a well known supported interface, Ethernet is also good but may be more complicated for plug and play scenarios. Some cameras require external power which increases cables. Ultimately consider a camera that meets these requirements, we would highly recommend a USB camera with no external source required. Software for Image Analysis and Capture – Choosing a camera can also be a choice of software package, make sure you weigh up licenses, functions, future upgradability and compatibility with your favourite packages such as micromanager. That’s a good start for you to get choosing, if you need any specific help contact us.
  • How Do Colour Microscope Cameras Work vs Monochrome Microscope Cameras?
    Traditional colour microscope cameras use a red, green and blue filter (in varying formats) and filters incoming light to given pixels. Each pixel will have one colour component and then interpolation is used to give the final full colour image. Monochrome cameras simply measures the intensity of light, this is across all of the spectrum.
  • What are the main specification differences between Colour Microscope Cameras and Monochrome Microscope Cameras?

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United Kingdom

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