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BX61WI upright microscope
BX61WI upright microscope
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BX61WI upright microscope

Olympus BX61WI upright microscope, Olympus, authorized Olympus general agent, Olympus general agent, Olympus BX61WI general agent.

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  • 1. Assist customers in preliminary research;
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    3. Complete types of supporting instruments, reagents and consumables, everything, to meet all-round customer needs;
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    5, can provide VIP customers with a special response service on call.
  • 1. The company has its own laboratory furniture brand "MINKE";
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    3. Professional engineers come to your home to measure and provide laboratory standard solutions, which can be customized for your production and installed at your door.
  • 1. In-depth cooperation with Sinopharm Chemical Test, the largest supplier of chemical reagents in Asia, and was listed as the Sinopharm Guangdong Distribution Office;
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Double commitment guarantee:
Vibration-free system guarantees the status of live cell samples

A design concept of Olympus's new fixed stage upright microscope is crucial to its development direction and product positioning-in order to achieve higher standards of stability and reliability to meet the application of electrophysiological experiments Claim. Therefore, this system adds a lot of advanced new elements to avoid vibration and increase stability. The innovative elements also include a new observation method, and provide detailed analysis of the operability of this observation method and precise processing methods to make the image clearer. These efforts of the WI series have made the operation of patch clamp experiments smoother and more efficient than ever before. Combining the superior optical quality of the traditional UIS2 system, Olympus' new fixed stage upright microscope stands out in terms of performance and ease of use.

BX51WI + Luigs & Neumann accessories

New concept, vibration-free system design


The interchange between low magnification and high magnification does not require the conversion of the objective lens. The new concept of vibration-free system design <br style = "padding-bottom: 0px; margin: 0px; padding-left: 0px; padding-right: 0px; padding-top: 0px "> When researchers build an electrophysiology experiment system, what they are most worried about is the vibration and interference caused when changing the objective lens, which will negatively affect the sample and the connected equipment.
To solve this problem, Olympus has launched a new concept-
An intermediate magnification converter is provided, combined with the new high numerical aperture and long working distance of 20 × objective lens, researchers can achieve the mutual conversion between low magnification and high magnification without changing the objective lens.

New 20 × objective lens (XLUMPLFL20 × W) NA 0.95, WD 2.0mm
The new 20 × water immersion objective, combined with a series of intermediate magnification lenses with different magnifications, enables high-resolution observation. The mutual conversion between low magnification and high magnification is realized by the intermediate magnification converter, so it can minimize the system vibration, and the long working distance solves the problem of possible collision between the objective lens and the patch clamp that are generally more concerned .

Simultaneous fluorescence and infrared DIC observations
WI-DPMC uses a 690nm dichroic mirror. Fluorescence passes through the front optical port of WI-DPMC, and IR-DIC passes through the rear optical port. This allows two microscopic imaging systems to image at the same time, and eliminates the vibration caused by the light path conversion.

Variable magnification dual port (WI-DPMC)
The rear optical port of the WI-DPMC includes a two-stage middle magnification selector with a higher magnification 4 × middle lens and an optional low magnification (0.25 × or 0.35 ×) lens. The choice of high magnification and low magnification can be realized by a simple pull rod, which ensures that the sample is minimally affected by system vibration during microscopic inspection and measurement. IR-DIC is available in 775nm and 900nm.


New ideas for experimental operation

New concept of experimental operation with front and vibration-free and noise-free operation <br style="padding-bottom: 0px; margin: 0px; padding-left: 0px; padding-right: 0px; padding-top: 0px"> new The front operating system prevents interference with patch clamp operation. The design concept is simple, that is, the most common system operations (such as focusing or changing the excitation block) are concentrated on the front of the microscope to facilitate various operations.
Ample space is reserved on both sides of the lens body and the condenser lens, so that the necessary micromanipulators can be installed as close to the microscope as possible.

• Vibration-free fluorescent shutter • The turntable of the fluorescence excitation block can be adjusted to a shock-proof state Conversion between DIC is very simple.
• Focus of the focusing device is convenient for users to control the microscope. Coarse adjustment limit device is provided to better protect the sample.
• Provide external power supply and control panel to avoid interference caused by temperature.


Olympus offers a wide range of objective lens conversion devices for different applications WI-SRE2 pendulum objective lens conversion device
The unique small and compact design and the swing-in and swing-out design prevent the objective lens from colliding with the electrode or the micromanipulator when changing. The position of the objective lens is changed by a vibration-free spring mechanism.


Slide type objective lens conversion device WI-SLRE
This device is specially designed for two specific objectives, one is a large diameter spiral aperture, low magnification fluorescent objective (XLFLUOR 2 × / 340 or 4 × / 340), and the other is a normal diameter (RMS) spiral aperture. Objective lens. The transition is achieved by a simple horizontal swipe.


Single-position objective lens holder WI-SNPXLU
Designed for the only large diameter XLUMPLFL20 × objective lens.


RMS adapter WI-RMSAD
This adapter can mount a common helical aperture objective lens to the WI-SNPXLU.


The latest slide-out objective lens converter can avoid introducing bubbles <br style="padding-bottom: 0px; margin: 0px; padding-left: 0px; padding-right: 0px; padding-top: 0px"> This conversion The characteristic of the device is the slide-out motion when the objective lens is switched, that is, the position of the objective lens is raised when it is swinged out. In this way, the objective lens can be prevented from hitting the container wall when it is swung out. And this action can avoid introducing bubbles when the objective lens is swung in.


Special fixed stage and microscope moving platform for BXWI
XY mobile platform WI-XYM
The XY mobile stage moves the microscope body without moving the sample and electrodes. The convenient front control of the XY moving platform is particularly useful in a variety of patch clamp experiments.


Fixed stage WI-XYS
This stage is suitable for small animal and living body observation. The height of the stage can be reduced by 50mm by disassembling the pillar. The fixed stage should be used in conjunction with the XY-mobile stage (WI-XYM), which requires little work space. The screw holes and magnets provided on the stage are designed for easy installation of the micromanipulation system.


Live cell observation
The IX-SVL2 universal stage provides smooth XY movement.

New ideas for powerful features

New features provide a powerful solution for a variety of experimental needs

The new front operating system avoids interference with patch clamp operation. The design concept is simple, that is, the most common system operations (such as focusing or changing the excitation block) are concentrated on the front of the microscope to facilitate various operations.
Ample space is reserved on both sides of the lens body and the condenser lens, so that the necessary micromanipulators can be installed as close to the microscope as possible.

Perform small animal experiments

Raise the objective lens and lower the height of the stage to meet the requirements of small animal experiments. The objective lens height raising device (WI-ARMAD) is installed between the microscope body and the reflected light illumination arm, providing an additional 40mm of lifting space. Small animal experiments usually do not require transmitted light, so the condenser device can be removed. After unloading, the stage can be lowered by an additional 50mm, that is, an additional 90mm of experimental space can be added between the table and the objective lens.


Photosensitive experiment
Provide various convenient devices for adding and controlling light sources

Light box adapter U-LHAD
Can be connected to dual port adapter (U-DP).


Rectangular field diaphragm BX-RFSS
Designed for CCD imaging, protects light sensitive samples outside the imaging area from light stimulation and damage.
Pinhole field diaphragm BX-RFSPOT
Simulating point light sources can be used as an effective photosensitive experiment method.


Microinjection

BX stages and adapters for microinjection experiments
The stage adapter WI-STAD on the WI lens body is used to interface with traditional microscope stages. The compact design of the BX2 stage (U-SVRB-4, U-SVLB-4) brings the sample and micromanipulator closer to each other, providing a stable microinjection platform.


Confocal microscopy imaging system


New ideas for live cell observation

A new idea for the best image clarity that can be obtained in electrophysiology experiments.

Infrared DIC / Nomarski DIC observation

IR-DIC, optimized optical system:
Designed for 775nm and 900nm observations
Thanks to accurate aberration correction, the IR-DIC system can observe imaging from visible light to the near-infrared range (775nm / 900nm). The sharpness of the image observed in the near-infrared range is further improved, resulting in a very clear image and can Observe deeper brain slices.
• Visible light DIC
High-resolution observation of tissue surface.
• 775nm IR-DIC
Cooperate with infrared CCD to observe tissue sections. Aberration correction in the visible to infrared range minimizes defocusing.
• 900nm Nomarski DIC
Can observe thicker tissue. (Requires special polarizer and analyzer for 900nm)


Nomarsky DIC observation of Senarmont compensation <br style="padding-bottom: 0px; margin: 0px; padding-left: 0px; padding-right: 0px; padding-top: 0px"> Condenser When using Senarmont attachment, all Contrast adjustment is performed by a quarter-wave plate under the condenser, so the stage, sample, micromanipulator and objective converter can be avoided.


Oblique light illumination observation

The oblique light illumination observation optimizes the contrast of the image by changing the direction of the light and shadow of the sample. <br style="padding-bottom: 0px; margin: 0px; padding-left: 0px; padding-right: 0px; padding-top: 0px"> Olympus Introduced an oblique beam condenser (WI-OBCD) with a long working distance. The angle of light and shadow can be changed 360 degrees without moving the sample. No additional accessories are required, and oblique lighting is easy to install and control. Plastic petri dishes (usually not suitable for DIC observation) are easily imaged under oblique light. The ring diaphragm of the oblique light illumination part is available in a variety of sizes, and the conversion is also very convenient.


Macroscopic observation

2 × and 4 × macro objectives have high numerical apertures and provide fluorescent images designed for GFP imaging of large cells such as neurons. <Br style = "padding-bottom: 0px; margin: 0px; padding-left: 0px; padding- right: 0px; padding-top: 0px "> Provide 2 × and 4 × low magnification fluorescent objectives and a dedicated excitation block for GFP observation. The long working distance of the objective lens provides great convenience. The optional immersion cap (XL-CAP) can eliminate aberrations caused by liquid surface ripples on sample imaging.

BX51 / 61WI Specifications

Optical system UIS2 optical system
Material High rigidity aluminum alloy
Illuminator BX51WI Microscope body Transmitted light built-in Kohler illumination (FN22), external light source, 12V 100W long-life halogen lamp (predetermined center) (average life is about 2,000 hours)
Light intensity adjustment: DC2.5V ~ 12.6V (continuously adjustable), maximum current 8.4A
Light source TH4 Power consumption: 150W, size: 75 × 125 × 200mm, weight: 2kg
BX61WI Microscope body Transmitted light with built-in Kohler illumination (FN22), 12V 100W long-life halogen lamp (predetermined center) (average life is about 2,000 hours)
Light intensity adjustment: DC2.5V g 12.6V (continuously adjustable), maximum current 8.4A
Light source BX-UCB Power consumption: 200W, size: 125 × 216 × 310mm, weight: 5kg
focusing BX51WI Focusing via gear-driven objective lens turntable, each turn: fine adjustment 0.1mm, coarse adjustment 15mm, maximum stroke: 25mm
Coarse adjustment limit device, coarse adjustment tension adjustment device
BX61WI Electric focus
Objective lens converter WI-SRE2 Swing-out objective lens converter
WI-SLRE Slide type objective lens converter
WI-SNPXLU Single-hole objective lens converter
WI-SSNP Swing-Sliding Objective Converter
Fluorescent device BX-RFA Versatile, can be equipped with excitation light balancer and rectangular field diaphragm
BX-URA2 Universal fluorescent lighting device
Observation tube U-TR30-2 Wide field of view tilting trinocular tube, inclination angle of 30 °, three-level beam splitting (100% observation, observation compared to 20%: 80%, 100% photography), interpupillary distance adjustment 50-76mm, with diopter adjustment
U-ETR3 Trinocular positive lens tube, inclination angle of 30 °, secondary beam splitting (100% observation, 100% photography), interpupillary adjustment 50-76mm, with diopter adjustment
WI-DPMC Double beam splitting trinocular tube, with middle zoom, inclination angle of 24 °, three beam splitting methods (100% observation, 100% front light port, using two light ports at the same time), interpupillary distance adjustment 50-76mm, with diopter adjustment
Stage IX-SVL2 Mechanical stage
WI-XYS Fixed anti-vibration stage (microscope mobile)
U-SVL (R) B-4 Left (right) hand coaxial low-position drive, high wear-resistant ceramic cover stage, combined with WI-STAD, moving range: 52mm (Y) X76mm (X)

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