Motic EasyZoom 5P
Hyper-focal digital microscope delivering 30x to 10,000x magnification through a single zoom lens body. With motorized Z-axis, precision stage, and HDR imaging, the EasyZoom 5P enables high-resolution inspection, measurement, and 3D analysis across semiconductor, electronics, medical, and materials science applications.
Product Overview
The EasyZoom 5P combines a self-designed high-resolution camera, motorized Z-axis with 0.1μm stepping, motorized 100x100mm stage, and HDR image processing. The hyper-focal optical system provides 3x greater depth of field than conventional microscopes, eliminating the need for frequent focus stacking. Built-in 2D/3D measurement and surface roughness analysis allow inspectors to capture, measure, and report without external software.

Main Features & Capabilities
Single Zoom Lens 30x–10,000x
A single zoom lens body converts from 30x to 10,000x magnification. Six interchangeable objective models (EZ-30BD through EZ-1500BD) cover the full range while maintaining long working distances for collision-sensitive samples.
Hyper-Focal 3D Observation
Proprietary optical system delivers 3x greater depth of field than conventional microscopes. Combined with EDF (Extended Depth of Field) synthesis, the system produces full-focus images even at high magnification and constructs rotatable 3D models with color-coded height maps.
Motorized Z-Axis & Stage
The motorized Z-axis achieves a minimum step of 0.1μm and resolution of 1μm, enabling precise focus stacking. The motorized stage provides 100 x 100mm travel for automated scanning and image stitching of large samples.
HDR Ultra-HD Imaging
The self-designed high-resolution camera captures multiple exposures at varying brightness levels and composites them into HDR images, eliminating glare and reflections. True color reproduction is achieved through proprietary lens coatings and semi-apochromatic objectives.
2D / 3D Measurement Suite
On-image measurement tools include line, circle, arc, angle, polyline, polygon, and counting. Automatic edge detection, area measurement, particle analysis, and mesh measurement reduce human error. 3D profile and surface roughness measurement are supported via an optional module.
High-Speed Acquisition & Stitching
Real-time image processing reduces wait times to one-third of conventional systems. The 50 fps camera enables continuous observation during measurement. Image stitching produces composites of up to 3.6 billion pixels with navigation reference points that minimize artifacts.
Description & Key Benefits



System Specifications
| Category | Model | Magnification | Field of View | Working Distance |
|---|---|---|---|---|
| Objective Lenses | EZ-30BD | 30X∼200X | 13∼2mm | 10mm |
| EZ-75BD | 75X∼500X | 5.2∼0.78mm | 11mm | |
| EZ-150BD | 150X∼1000X | 2.6∼0.39mm | 11.9mm | |
| EZ-300BD | 300X∼2000X | 1.3∼0.2mm | 11.9mm | |
| EZ-750BD | 750X∼5000X | 0.52∼0.08mm | 7.6mm | |
| EZ-1500BD | 1500X∼10000X | 0.26∼0.04mm | 3mm | |
| System | Z-Axis Resolution | 1 μm (Top) / 0.1 μm (Motorized Step) | ||
| Stage Travel | 100(X) x 100(Y) mm | |||
| Operating Temp / RH | 10°C to 40°C / Below 85% | |||
| LED Source Life | 40,000 hours | |||
Versatile Applications
Semiconductor
Silicon wafer laser grooving inspection, gold line bonding analysis at 500x, chip pin examination. The system's long working distance and high magnification enable non-contact inspection of delicate wafer surfaces.
Electronics Manufacturing
LCD panel inspection at 400x, PCB component verification, solder joint analysis. The 150° tilt stand allows multi-angle viewing of complex assemblies without repositioning the sample.
Precision Mechanics
Mechanical watch gear inspection, precision machined parts quality control, surface roughness measurement. The 3D measurement module provides profile and line roughness data for quality assurance.
Medical & Life Sciences
Syringe tip inspection at 200x, insect morphology observation, textile fiber analysis. The 50 fps camera enables live video measurement, while EDF synthesis produces full-focus images of irregular biological samples.