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  1. The DiProgress Hooke USB5 digital microscope is a versatile and fun instrument with 5Mpx resolution, magnification up to 300X and slide support. It offers direct viewing on a PC via USB socket and the ability to take images, record videos and take measurements. Suitable for all uses, from botany to entomology, from mineralogy to the study of materials and components. Technical Features Sensor: 5 Mega Pixel Resolution: 2592x1944, 2048x1536, 1920x1080, 1280x1024 Frame Rate: 30f/s Magnification: from 10x to 300x Formats: JPEG, BMP, AVI Lighting: dimmable LEDs Measurements: up to 1/1000 of a millimeter Power supply: 5V from USB port Compatibility: Windows / MAC Equipment: slide holder, caliper, MicroCapture+ software Dimensions: 110x33mm

  2. The DiProgress Hooke USB2 Digital Microscope is a fun and easy to use tool; with a magnification of up to 200X and 2Mpx resolution it will allow you to view and record the details of plants, insects, minerals, coins, stamps and objects directly on a PC via USB socket. Ideal for amateur and professional use. Technical Features Sensor: 2 Mega Pixels Resolution: 1920x1080 Full HD Frame Rate: 30f/s Magnification: from 10x to 200x Formats: JPEG, BMP, AVI Lighting: 8 dimmable LEDs Compatibility: Windows / MAC Dimensions: 110x33mm

  3. Using a new large aperture lens and CMOS, under the same ambient brightness, the exposure time of the OCAL3.0 electronic collimator is only 1/20 of that of the second-generation electronic collimator. If the light source is too strong, it is recommended to reduce the gain rather than simply reducing the exposure time. Now, new collimators can adjust the telescope's collimation in darker environments.

    The clarity of the OCAL3.0 electronic collimator image has been greatly improved. Now you can see clearer primary mirror marks and more reflection information, and it still performs well when equipped with a correction mirror. 

  4. The 1.0x flattener does not change the focal ratio of the telescope itself. After being attached to the Askar 185APO, it maintained a focal ratio of 7. The flattener corrects field curvature and coma, resulting in flatter field edges and finer star points.

  5. The 0.8x reducer can lower the focal ratio of the Askar 185APO to F5.6. This is a standard gearbox with field flattening capability. A shorter focal ratio allows the OTA to have a wider field of view and faster exposure times, making it suitable for capturing large areas of nebulae, star clusters and faint, fast-moving celestial objects.

  6. The 0.8x reducer can bring the focal ratio of the Askar 140APO to F5.6. This is a standard gearbox with field flattening capability. A shorter focal ratio allows the OTA to have a wider field of view and faster exposure times, making it suitable for capturing large areas of nebulae, star clusters and faint, fast-moving celestial objects.

  7. The 0.8x reducer can bring the focal ratio of the Askar 120APO to F5.6. This is a standard gearbox with field flattening capability. A shorter focal ratio allows the telescope to have a wider field of view and faster exposure times, making it suitable for capturing large areas of nebulae, star clusters and faint, fast-moving celestial objects.

  8. The Askar 120APO's 120mm aperture provides undeniable advantages in light-gathering power, resolution, brightness and contrast, allowing you to capture more light and present more detail and brighter objects in your images. The increased aperture area, which is 36% larger than that of the 103APO, contributes to better performance.

  9. The 1x flattener does not change the focal ratio of the telescope. After being attached to the Askar 103APO, it still maintained a focal length of f/6.8. The flattener corrects field curvature and coma, resulting in flatter field edges and finer star points.

  10. The 0.6x reducer can bring the focal ratio of the Askar 103APO to F4, also providing field flattening. Askar 103APO adopts a detachable tube design, where the back of the tube can be removed when using the 0.6x reducer, allowing the telescope to have the length needed to achieve an F4 focal ratio.

  11. The 0.8x reducer can bring the focal ratio of the Askar 103APO to F5.4. This is a standard reducer with field flattening capabilities. A shorter focal ratio allows the telescope to have a wider field of view and faster exposure times, making it suitable for capturing large areas of nebulae, star clusters, and faint, fast-moving celestial objects.

  12. Combination bracket for attaching the controller to the main unit of the IC-2730E.

  13. Controller bracket for use with MBF-1

    The MBA-5 bracket is for the control head of the IC-2730E. The MBA-5 does have holes for direct mounting to a surface. Alternatively, the MBA-5 can be held by the MBF-1 base.

    Please note that the MBF-1 suction mounting base is sold separately.

  14. Celestron StarSense Explorer 10” Dobsonian telescope with parabolic mirror and assisted pointing.

  15. Compact Desktop 36A|13.8V Power Supply sets the new standard for high quality.

    • Safety: The Intelligent Protection System protects your devices from damage
    • Quiet Operation: The low EMI and acoustic noise minimize distractions
    • Flexibility: The flexible orientation and multiple connectivity options make it easy to use
    • Convenience: The touchscreen display and USB interface make it easy to control and monitor the power supply
    • Power: The 500 watts continuous power output is enough for demanding tasks
    • Durability: The sleek design and sturdy construction make it a reliable investment

  16. Compact and accurate 3-in-1 OSL (Open, Short, Load) calibration kit for radio amateurs. It is also ideal for lab equipment, telecom

  17. Powerful VNA antenna analyzer up to 1GHz for embedded installation

  18. Celestron Star Sense Explorer 8” Dobsonian telescope with parabolic mirror and assisted pointing.

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