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Mitutoyo Tube Lenses

MT-2 Accessory Tube Lens, #56-863

MT-2 Accessory Tube Lens, #56-863 MT-1 Accessory Tube Lens, #54-774
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 Magnification   Field Number (mm)  FL (mm)  Model Number   Wavelength Range (nm)   제품 비교하기   재고 번호   가격(부가세 별도)  구입하기
1X 30.00 200.00 MT-1 436 - 656 #54-774 KRW 1,168,700   견적 요청  
  • 3~5일내 배송
    ×
 
2X 30.00 400.00 MT-2 436 - 656 #56-863 KRW 1,350,000   견적 요청  
  • 품절/문의요망
    ×
 
1X 24.00 200.00 MT-4 436 - 656 #54-428 KRW 1,065,800   견적 요청  
  • 3~5일내 배송
    ×
 
1X 24.00 200.00 MT-L 355 - 1800 #56-073 KRW 2,740,500   견적 요청  
  • 3~5일내 배송
    ×
 
1X 24.00 200.00 MT-L4 266 - 620 #56-864 KRW 5,930,500   견적 요청  
  • 품절/문의요망
    ×
 
1X 24.00 200.00 MT-40 436 - 656 #83-911 KRW 1,856,000   견적 요청  
  • 3~5일내 배송
    ×
 

이 튜브 렌즈는 Mitutoyo Infinity Corrected Objectives를 이용해서 이미지를 만드는 secondary 렌즈로 기능하며 FS70 Microscope 또는 Infinitube™ In-line Assembly Unit의 경제적인 대안입니다. 시스템 요구에 따라서 다양한 옵션들을 사용할 수 있습니다. MT-4와 MT-40은 엔드 유저가 사용하도록 설계된 제품으로서 Mitutoyo C-Mount Camera Extension Tube (#56-992)를 통해 모든 C-Mount 카메라와 손쉽게 이용할 수 있습니다. MT-4 Tube Lens는 1X - 20X 배율의 대물렌즈와 사용할 때 권장되며, MT-40 Tube Lens는 20X가 넘는 배율의 대물렌즈와 사용할 때 권장됩니다. MT-1 Tube Lens는 이미징 path에 beamsplitter의 진입을 허용하고 custom in-line 조명 시스템에 사용할 수 있습니다. MT-2 Tube Lens는 MT-1과 매우 비슷하나 400mm의 유효 초점 거리를 갖고 있어서 Mitutoyo objectives에 대해 2X 배율을 제공합니다. MT-L과 MT-L4 lens는 각각 M Plan NUVM Plan UV 시리즈의 objectives를 위해 디자인 되었습니다. NIRzoom 튜브 렌즈는 또한 Precision Zoom Lenses 계열을 통해서도 이용할 수 있습니다.

제목 제품 비교하기재고 번호  가격(부가세 별도) 구입하기
Mitutoyo to C-mount Camera 152.5mm Extension Tube #56-992 KRW 274,100   견적 요청
  • 3~5일내 배송
    ×
Mitutoyo MT-1/MT-2 C-mount Adapter #58-329 KRW 310,300   견적 요청
  • 3~5일내 배송
    ×
Mitutoyo MT-L/MT-L4 C-Mount Adapter #66-027 KRW 311,800   견적 요청
  • 3~5일내 배송
    ×
C-Mount Male to Mitutoyo (M26) Female Step-Up Adapter #55-743 KRW 66,000 수량 5+ KRW 58,400   견적 요청
  • 3~5일내 배송
    ×
Mitutoyo Filter Holder #56-993 KRW 145,000   견적 요청
  • 3~5일내 배송
    ×
Mitutoyo Female to RMS Male Adapter #58-296 KRW 153,700   견적 요청
  • 3~5일내 배송
    ×
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Microscope와 Objective 이해

Learn about the different components used to build a microscope, key concepts, and specifications at Edmund Optics.

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Multiphoton Microscopy

Multiphoton microscopy is ideal for capturing high-resolution 3D images with reduced photobleaching and phototoxicity compared to confocal microscopy.

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Confocal Microscopy

Confocal microscopy provides high resolution, elimination of out-of-focus glare due to spatial filtering, and reduction of light-induced damage to the sample.

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Infinite Conjugate Tube Length

Infinity Corrected Objective의 분해능과 배율 이해하기

Microscopes are used in a variety of fields and applications. To understand how resolving power, magnification, and other aspects work, read more at Edmund Optics.

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Tube Lenses를 Infinity Corrected Objectives와 사용하기

Want to use an infinity corrected objective to make an image? You will need a tube lens to do it! Find out why and how it works at Edmund Optics.

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What is an "in-line" microscope?

What is an infinity-corrected objective?

Can I use an infinity-corrected objective in my microscope to get a longer working distance?

What is "DIN" and "JIS"? What is the difference between them?

I’m using the MT-1 Accessory Tube Lens and MT-1/MT-2 C-Mount Adapter. Two thin brass rings came with the adapter. How are they used?

What is the significance of the field number of an objective and what is it dependent on?

Plan Objective

Semi-Plan Objective

Tube Lens

The Future of Microscope Objectives

Advances in Microscopy Tackle the Challenges of the Future

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Optical Microscopy Application: Brightfield Illumination

Looking to use a simple technique for optical microscopy? Check out this article on brightfield illumination to find out more at Edmund Optics.

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Optical Microscopy Application: Darkfield Illumination

Darkfield illumination is the opposite of brightfield illumination. Find out how darkfield differs from brightfield in optical microscopy at Edmund Optics.

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Optical Microscopy Application: Phase Contrast

Think you know all the advantages for using phase contrast in optical microscopy? Advantages, image appearance, and technical details can be found at Edmund Optics.

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What is the difference between Achromatic, Semi-Plan and Plan objectives?

You have a variety of Mitutoyo Tube Lenses (MT-4, MT-1, and MT-2). How can you connect them to a Mitutoyo objective and C-mount camera?

I have an MT-L Accessory Tube Lens but I am unsure about mounting it to my objective and C-Mount camera. Can you explain how it works?

Achromatic Objective(색지움 대물렌즈)

Apochromatic

Confocal Microscopy (공초점 현미경)

DIN (Deutsche Industrie Norm)

Periplan Eyepiece

Optical Cage System Application: Digital Video Microscope

Are you looking to simplify the assembly of a digital video microscope? Find out how a TECHSPEC Optical Cage System allows for quick build at Edmund Optics.

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Optical Microscopy Application: Differential Interference Contrast

Differential interference contrast (DIC) is one of the polarization techniques that can be used in optical microscopy. Learn about this technique at Edmund Optics.

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Field Number

Light Sheet Microscopy

Light sheet fluorescence microscopy uses a 2D laser sheet to illuminate a thin slice of the sample and excite fluorescence, reducing phototoxicity and damage.

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광학 케이지 시스템 어플리케이션: DIC(Differential Interference Contrast) 디지털 현미경

Differential interference microscopy enhances the contrast of object features that are otherwise difficult to observe using brightfield microscopy.

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Darkfield Illumination

Diffraction Limit (회절 제한)

Parfocality

Digital Video Microscope 대물렌즈 설치

Digital video microscopes use a camera to capture and record images. Read more about the components needed to assemble a video microscope at Edmund Optics.

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광학 현미경 용도: Fluorescence (형광)

Wondering how fluorescence microscopy works? Find out about the technique, systems, and more at Edmund Optics.

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Brightfield Illumination

Field of View (FOV)

Magnification(확대)

Numerical Aperture (NA, 개구수)

Fluorescence Microscopy: Imaging Filters가 장착된 In-Line Illumination

Want to know about fluorescence microscopy? Read this article by a Biomedical Product Line Engineer at Edmund Optics to learn more.

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Refraction

 
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