Laboratory Equipment

LABORATORY EQUIPMENT

Laboratory Equipment

Compact laboratory equipment such as orbital shakers, experimental jigs, and holders optimized for research and experimental environments

OVERVIEW

Product Overview

Laboratory Equipment develops compact devices needed by research institutes, universities, and corporate R&D departments. The orbital shaker uniformly agitates samples, while experimental jigs and holders are designed considering compatibility with measurement and analysis equipment.

Product overview

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FEATURES

Key Features

Uniform Orbital Motion

Circular trajectory stirring for uniform sample mixing

Speed/Time Adjustment

Set speed and operating time to match various experimental conditions

Durable Structure

Robust mechanical design for long-duration continuous operation

Modular Design

Expandable designs such as 2-tier structures for various experiments

SPECIFICATIONS

Technical Specifications

TypeOrbital shaker / experimental jig
Motion TypeOrbital (circular trajectory) motion
Speed Range50 ~ 300 rpm (variable)
CapacityCustom platform size and holder specifications
CustomizableCustom design based on experimental purpose

APPLICATIONS

Application Areas

Chemical Experiments

Uniform stirring and mixing of reagent solutions

Bio Research

Agitation of cell culture media and samples

Academic Research

Used as laboratory equipment in universities and institutes

Quality Inspection

Uniform processing and pre-treatment equipment for specimens

EXPECTED BENEFITS

Expected Benefits

Discover the key benefits of deploying Microsensus laboratory equipment, based on real research institution cases.

Experiment Reproducibility Improvement

Consistent experimental results through precise control

Experiment reproducibility index (%) — before vs. after

68
Before
96
After
Reproducibility 68% → 96%
Data reliability significantly improved
Paper publication success rate increased
Reproducibility 68% → 96%Data reliability significantly improvedPaper publication success rate increased

Experiment Time Reduction

Maximized research efficiency through automated control

Experiment time per batch (hours) — actual lab measurements

8.5Before6.21 mo4.83 mo3.56 mo2.8Optimized
Experiment time 8.5h → 2.8h
Daily experiment batches tripled
Per-researcher productivity improved
Experiment time 8.5h → 2.8hDaily experiment batches tripledPer-researcher productivity improved

Operating Cost Reduction

Minimized maintenance burden through durable design

Annual equipment operating cost comparison (relative index) — research institution measurement

100
Existing Equipment
44
Microsensus
56% operating cost reduction
Equipment failure rate reduced 73%
Annual operating cost reduced 56%
Dedicated technical support provided
Equipment failure rate reduced 73%Annual operating cost reduced 56%Dedicated technical support provided

Research Output Improvement

Enhanced research competitiveness with high-quality data

Annual research output index trend

30
Before
45
3 mo
62
6 mo
78
1 yr
95
2 yr
SCI paper publications increased
Research project competitiveness improved
Industry-academia collaboration expanded
SCI paper publications increasedResearch project competitiveness improvedIndustry-academia collaboration expanded
Key Expected Benefits
Reproducibility 96%
Experiment Time -67%
Research Competitiveness Enhanced

APPLICATION SCENARIOS

Application Scenarios

Here is how you can utilize this in these situations. Check the scenario that fits your site.

Cell Culture Experiment Reproducibility

University Lab / Biotechnology

Situation

Uneven shaker vibration causes batch-to-batch variation in cell culture results, lowering reproducibility and affecting paper data reliability

How to Use

Deploy precision-controlled orbital shaker and automatically record temperature and speed data to maintain consistent experimental conditions

Expected Effect

Improved experiment reproducibility, secured data reliability, enhanced research outcomes

High-Speed Drug Candidate Screening

Pharmaceutical / Biotech

Situation

Processing limitations of existing equipment cause screening bottlenecks, delaying drug development schedules and causing research cost losses

How to Use

Combine high-speed multi-plate shaker with custom holders to increase per-batch throughput and operate with automated protocols

Expected Effect

Increased screening throughput, shortened development period, improved research efficiency

Stable 24-Hour Continuous Culture Operation

Biotech / Research Institution

Situation

Vibration deviations and noise during long-duration continuous operation cause unstable culture results and affect researcher work environment

How to Use

Replace with low-noise high-precision shaker and integrate remote monitoring system for immediate alerts when anomalies occur

Expected Effect

Reduced culture deviation, improved equipment utilization, stabilized research schedule

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