How Can the MZDH0850 High-Resolution Series Redefine Your Inspection Precision?
As an optical engineer at Guilin Microtech (MTO), I have often observed that in the world of semiconductor and micro-CNC machining, the difference between “good”
Features:
| Eyepieces | 10X/23mm |
|---|---|
| Viewing Angle | 45° |
| Field of View | φ23mm |
| Optical Mag. | 15X~100X(10X E) |
| Zoom Ratio | 6.7:1 |
| Working Distance | 82mm |
| Illuminator | LED coaxial illumination |
| Focus Holder | SF10 Fine-coarse Focus |
| Mounting Size | φ45mm |
Ideal for probe stations for the features:
Except for probe station, it is also perfect for any other inspection on the objects which requires the conditions as above.
| Eyepieces observing Magnification | 15X~100X(10X eyepieces) observation total magnification:15X~100X. |
| Zoom range | 1.5X~10X |
| Working Distance | 82mm |
| Eyetubes | 45°/Binocular eyetubes indined45° |
| Illuminators | Long life,various color,high brightness LED coaxial illumination(optional polarizer) |
| Interpupillary distance adjustment range | 52mm~76mm |
| Diopter adjustment range | ±6 Diopter |
| Focus range | Hand wheel:50mm.height of round pole is 242mm. |
| Holder and main body matching dimension | D45mm |
| Eyepieces | Item | Main body | Auxiliary Objectives | ||||
| 0.5X | 0.75X | 1.5X | 2X | 4.5X | |||
| 10X/Φ22 | Total Mag. | 15X~100X | 7.5X~50X | 11.25X~75X | 22.5X~150X | 30X~200X | 67.5X~450X |
| FOV(mm) | Φ14.67~Φ2.2 | Φ29.33~Φ4.4 | Φ19.56~Φ2.93 | Φ9.78~Φ1.47 | Φ7.33~Φ1.1 | Φ3.25~Φ0.49 | |
| 15X/Φ17 | Total Mag. | 22.5X~150X | 11.25X~75X | 16.875X~112.5X | 33.75X~225X | 45X~300X | 101.3X~675X |
| FOV(mm) | Φ11.33~Φ1.7 | Φ22.67~Φ3.4 | Φ15.11~Φ2.27 | Φ7.56~Φ1.13 | Φ5.67~Φ0.85 | Φ2.52~Φ0.38 | |
| 20X/Φ14 | Total Mag. | 30X~200X | 15X~100X | 22.5X~150X | 45X~300X | 60X~400X | 135X~900X |
| FOV(mm) | Φ9.33~Φ1.4 | Φ18.67~Φ2.8 | Φ12.44~Φ1.87 | Φ6.22~Φ0.93 | Φ4.67~Φ0.7 | Φ2.07~Φ0.31 | |
| 30X/Φ9 | Total Mag. | 45X~300X | 22.5X~150X | 33.75X~400X | 67.5X~450X | 90X~600X | 203X~1350X |
| FOV(mm) | Φ6~Φ0.9 | Φ12~Φ1.8 | Φ8~Φ1.2 | Φ4~Φ0.6 | Φ3~Φ0.45 | Φ1.3~Φ0.20 | |
| WD(mm) | 82 | 175 | 117 | 54 | 35 | 16 | |
| Main body magnification range:1.5X~10X | |||||||
| Objective | Item | CCD adapter | |
| 0.5X | 1X | ||
| 1.0X | Total optical Mag. | 0.75X~5X | 1.5X~10X |
| FOV(mm) | 4.8X6.4~0.72X0.96 | 2.4X3.2~0.36X0.48 | |
| WD(mm) | 82 | ||
| 0.5X | Total optical Mag. | 0.375X~2.5X | 0.75X~5X |
| FOV(mm) | 9.6X12.8~1.44X1.92 | 4.8X6.4~0.72X0.96 | |
| WD(mm) | 175 | ||
| 0.75X | Total optical Mag. | 0.5625X~3.75X | 1.125X~7.5X |
| FOV(mm) | 6.4X8.53~0.96X1.28 | 3.2X4.27~0.48X0.64 | |
| WD(mm) | 117 | ||
| 1.5X | Total optical Mag. | 1.125X~7.5X | 2.25X~15X |
| FOV(mm) | 3.2X4.27~0.48X0.64 | 1.6X2.13~0.24X0.32 | |
| WD(mm) | 54 | ||
| 2X | Total optical Mag. | 1.5X~10X | 3X~20X |
| FOV(mm) | 2.4X3.2~0.36X0.48 | 1.2X1.6~0.18X0.24 | |
| WD(mm) | 35 | ||
| 5X | Total optical Mag. | 3.75X~25X | 7.5X~50X |
| FOV(mm) | 0.96X1.28~0.144X0.192 | 0.48X0.64~0.072X0.096 | |
| WD(mm) | 10.1 | ||
| Zoom body magnification range 1.5X~10X | |||
| Auxiliary illuminators | MLC1000,MLR25 |
CCD adapters | 0.4X, 0.5X, 0.67X, 1.0X(Standard outfits),1.5X,2.0X | |
| Objectives | 0.3X,0.4X,0.5X,0.6X,0.75X,0.9X, |
| Infinite farness metallographic lens | Nikon, Olympus, Mitutoyo |
Stands | SD1-D ~ SD18-D |
As an optical engineer at Guilin Microtech (MTO), I have often observed that in the world of semiconductor and micro-CNC machining, the difference between “good”
In our years in the optical instruments industry, we’ve seen countless companies struggle with one critical decision: choosing the right microscope. This isn’t just about
Table of Contents What Are the Essential Functions of Microscopes in Wafer Probe Stations? Have you ever wondered what makes a microscope indispensable for wafer
Table of Contents 1. What Challenge Did We Face? In this case study, we explore how a Weld Seam Inspection Monocular Lens helps manufacturers ensure
We are thrilled to announce our participation in the LASER World of PHOTONICS CHINA 2025, Asia’s premier trade fair for the photonics industry. This event will
In modern medical diagnostics, urine analysis is a crucial routine examination. With increasing testing volumes, traditional manual microscopy is inefficient, prone to errors, and struggles
Automated page speed optimizations for fast site performance