Upgrading Of Biological Microscope

Mar 21, 2025

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In the future, in response to the continuous changes in the market, Ningbo Chiche Technology Co., Ltd. will also design the upgraded microscope in a novel way. It is expected to design avant-garde microscopes for market selection before 2026, and more choices will be based on family education.

 

The design principle of this penguin-shaped microscope:

Change the appearance of traditional microscopes, design avant-garde appearance, increase its functionality, such as using brushless motors to achieve faster focus, and equipped with an LCD screen to display the power level, using a double-layer mechanical platform (using brushless motor transmission, more accurate and more sensitive. In the future, it will also be equipped with a 10-inch LCD screen, wireless and LED microscope digital design (such as remote control and real-time data transmission), suitable for education and industrial field detection,

Built-in digital camera, wireless connection, update the configuration of traditional microscopes. Realize the integration of image processing and AI: real-time optimization and deep learning,

This microscope has the functions of traditional microscopes, such as objective lenses: 4x 10x 40x 100x, double-layer mechanical automatic platform, hinged binocular head, and digital functions, allowing users to operate the microscope more conveniently, voice broadcast and other functions will be updated later!

 

Look forward to the birth of this new microscope!

 

1. Appearance design

- Main body shape: Streamlined body with penguin upright posture, black and white as main colors

- Head: The eyepiece tube is designed as a tilted observation head (30° elevation angle), imitating the shape of a penguin head, with a built-in 10x wide-angle eyepiece

- Trunk: The main body of the microscope adopts an elliptical cross-section cylinder with non-slip texture treatment on the surface, with a maximum diameter of 120mm

- Base: Trapezoidal stable structure (150×200mm), with corrugated non-slip rubber pads designed on the bottom edge to simulate penguin flippers

 

2. Optical system

- Objective turret: 4-hole objective converter (195 standard)

- 4x (NA 0.10) achromatic objective

- 10x (NA 0.25) achromatic objective

- 40x (NA 0.65) spring objective (with iris diaphragm)

- 100x (NA 1.25) oil objective (with elastic protection device)

- Illumination system:

- Upper light source: 0.3W LED reflected illumination (adjustable color temperature 5600K±300K)

- Lower light source: 1W LED transmitted illumination (adjustable brightness in 6 levels)

- Condenser: Abbe condenser (NA 1.25) with filter slot

 

3. Mechanical structure

- Double-layer stage:

- Upper layer: Mechanical platform (120×120mm) with specimen clamp

- Lower layer: Fixed platform with integrated condenser lifting mechanism

- Moving range: 30mm vertically/30mm horizontally

- Focusing system:

- Coarse adjustment stroke: 20mm (gear rack structure)

- Fine adjustment accuracy: 0.002mm (differential tube scale)

- Operation knob: Penguin wing shape with bilateral symmetrical design

 

4. Power system

- Battery compartment: 4 18650 lithium batteries built in the base (removable)

- Battery life: low brightness mode > 8 hours/high brightness mode > 3 hours

- Charging port: Type-C fast charging (supports charging while using)

- Voltage display: LED power indicator (penguin eye area)

 

5. Ergonomics

- Observation height: eyepiece 180-210mm from the desktop (adjustable)

- Handle area: anti-slip grooves designed on both sides of the waist

- Weight distribution: The center of gravity is located at the front 1/3 of the base

- Safety design: 100x objective automatic limit protection device

 

6. Extended functions

- Mobile phone adapter bracket (optional on the top of the eyepiece tube)

- Polarized light accessory slot (located below the condenser)

- Dark field observation kit (integrated in the lower layer of the stage)

 

The design is achieved through:

1. Transforming the geometric shape of traditional microscopes into bionic shapes

2. Metaphorical combination of functional components and penguin anatomical features (such as eyepiece = head, knob = wings)

3. Humanized design of the interactive interface (in line with the body size of teenagers)

4. Mimicry of safety protection (elastic limiter hidden in the shape)

 

It realizes the organic unity of professional microscope function and interesting appearance, and is particularly suitable for use in primary and secondary school laboratories and science museums.

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