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11

• Filter selection:

Filter

Function

ND2 (T=50%)

For brightness adjustment in 

photomicrography

ND4 (T=25%)
ND16 (T=6.25%)
Blue filter

(colour balance filter)

For routine microscopy and 

photomicrography

Green interference 

(546nm)

For phase contrast and contrast 

adjustment with black and white 

film

HE 

(didymium filter)

For colour photomicrography 

of HE stained specimen with 

tungsten type film

• A diffuser is built into the base of the microscope.

3.11. Power Cord

• Connect the socket of the of the power cord to the AC inlet 
on the rear of the base of the microscope. Plug in the other 
end of the cord to an AC outlet with ground conductor. 

4. Microscopy

4.1. Coarse And Fine Focusing

• Focusing is carried out with the coarse and fine focus knobs 
at the left and right of the microscope stand.
• The direction of vertical movement of the stage corresponds 
to the turning direction of the focus knobs.
• One rotation of the fine focus knob moves the stage 0.2mm. 
The graduation on the fine focus knob is 2 microns.

• Never attempt either of the following actions, since doing so will 
damage the focusing mechanism:
- Rotate the left and right knob while holding the other.
- Turning the coarse and fine focus knobs further than their limit.

4.2. Coarse Focus Torque Adjustment

• To increase the torque, turn the torque adjustment ring 
located behind the left-hand coarse focus knob in the direction 
indicated by the arrow. To reduce the torque, turn the ring in 
the direction opposite to that indicated by the arrow.

4.3. Coarse focus knob lock

• The coarse focus knob lock makes the stage can fixed at any 
position at which the specimen is in focus i.e. by using the 
handle to lock the coarse focus knob.
• With the specimen in focus, turn the handle to fix the knob.
• When the coarse focus knob lock is in position, the stage 
cannot be raised from that position. 
However, the fine focus knob can move the stage regardless of 
the limit but will only lower the stage.
• Lower the stage by using the coarse focus knob.

4.4. Optical Path Changeover Slider

• The optical path change over slider of the trinocular eyepiece 
tube can be used to select the amount of light distributed be-
tween the trinocular eyepiece tube and the vertical phototube.
• When the change over slider is pushed in until it reaches the 
limit, 100% of the light enters the observation tube. When the 
changer over slider is pulled out to the limit, the ratio of light
entering the observation tube and phototube will be 0:100.

Содержание 1100100401483

Страница 1: ...Motic Incorporation Ltd UL Listed Product E250223 Instruction Manual English...

Страница 2: ...ements of modern research techniques and testing methods This involves modification to the mechanical structure and optical design of our instruments Therefore all descriptions and illustrations in th...

Страница 3: ...he light reaching the objective originates from the periphery of the specimen and enters the optical system at oblique angles moving forward diagonally but still in parallel bundles toward the tube le...

Страница 4: ......

Страница 5: ...4 1 Coarse and fine focusing 4 2 Coarse focus torque adjustment 4 3 Coarse focus Knob lock 4 4 Optical path change over slider 4 5 Interpupillary distance adjustment 4 6 Diopter adjustment 4 7 Center...

Страница 6: ...is travel knob Stage Y Axis travel knob Objective Binocular eyepiece tube Eyepiece Diopter adjustment ring Eyepiece lock screw Stage Condenser focus knob Coarse focus torque adjustment ring Fine focus...

Страница 7: ...scale Condenser centering screws Specimen Holder Condenser clamp screw Photo port Optical Path Changeover lever Trinocular eyepiece tube Eyepiece tube Clamp Screw Power switch Brightness control knob...

Страница 8: ...er to prevent electric shock always turn the power switch on the power supply off before connecting the power cord Electrical Specifications a Halogen Input 90 240V 80VA 50 60Hz Lamp 6V 30W Halogen Fu...

Страница 9: ...t board is located behind the back cover plate 3 Disconnect the LED connection cables from the power sup ply printed circuit board 4 Loosen LED board locating ring take away LED board locat ing ring 5...

Страница 10: ...dless of whether it is new or nearing the end of its life b LED This is the first 3W microscopic illumination system with a global patent for long life adjustable high intensity heat gen eration and e...

Страница 11: ...while holding the other Turning the coarse and fine focus knobs further than their limit 4 2 Coarse Focus Torque Adjustment To increase the torque turn the torque adjustment ring located behind the le...

Страница 12: ...E or Fuchsin stained specimen with tungsten type film 4 5 Interpupillary Distance Adjustment Before adjusting the interpupillary distance bring a specimen into focus using the 10x objective Adjust the...

Страница 13: ...the front of the objective The immersion oil supplied by Motic is synthetic non fluo rescing and non resining oil with a refractive index of 1 515 Normally cover glass must be used with oil immersion...

Страница 14: ...lution Condenser is set too low Aperture diaphragm closed too far No cover glass Too thick or thin cover glass Immersion oil not used on immersion procedure Air bubbles in immersion oil Specified imme...

Страница 15: ...amp near end of service life Lamp not securely plugged into socket Problem Possible Cause Insufficient parfocality of objectives Eyepiece diopter not adjusted No cohesion of binocular image Magnificat...

Страница 16: ...dirt dampen a piece of gauze with diluted neu tral detergent and wipe lightly C Disinfecting the Microscope Follow the standard procedures for your laboratory D When not in use When not in use cover t...

Страница 17: ...l Mig 112 08349 Cabrera de Mar Barcelona Spain Tel 34 93 756 6286 Fax 34 93 756 6287 Motic Deutschland GmbH GERMANY Christian Kremp Strasse 11 D 35578 Wetzlar Germany Tel 49 6441 210 010 Fax 49 6441 2...

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