Biochemistry Analyzer
The Biochemistry Analyzer Manufacturer!
STAC after-sales service team has over 30 years experience in IVD field, and we can meet different kinds of customer service requirement. Our technical service covers most world-wide famous brand hematology analyzer, such as Sysmex, HORIBA ABX, Mindray, etc.
Why choose us
Production Equipment
Fully automated reagent production line, GMP 100,000-class purification workshop, 10,000-class laboratory, as well as a research and development center capable of producing and researching a full range of blood analysis reagents and urine sediment analysis reagents, CNAS laboratory and internal testing laboratory.
Our Certification
All reagents are registered and CE marked. Our reagent factory meets ISO 9001 and ISO 13485 standards. Each batch of reagent is performance tested, whilst strict specifications and large lot sizes ensure a minimal lot-to-lot variation.
Our Services
If any of the products fail to function or if any of service assistance you believe necessary, please contact our service engineer. For after-sale service, we provide technical supports via E-mail, Telephone, Fax, Skype, Wechat or WhatsApp.
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Light Source |
LED Light Source,Maintenance-free |
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Test mode |
Kinetic, End ponit, Two point |
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Wavelength |
Standard filters: 340, 405, 450, 510, 546, 578, 630nm,1 free position |
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Display |
7.0" IPS LCD with touch screen, 1024x600 pixels |
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Printer |
Built-in thermal printer, 57mm printer paper |
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Flow cell & Cuvettes |
Measuring volume: 32 μL, Optical path: 10mm |
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Absorbance varition |
0.0001 Abs |
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Photometric Range |
0.000 -4.000 Abs |
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System Environment |
Linux+Qt |
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Memory |
8GB;Over 300 programs, 200000 results can be stored |
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Operating Environment |
Temperature:10℃~35℃;Humidity:30%~85% |
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Power Requirement |
Wide power supply AC 100-240V,50/ 60hz |
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Product Dimension&Weight |
L270mm*W255mm*H130mm;2KG |
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Multi-language |
Support |
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Model |
Open |
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LIS System |
Support |
Types of measurement technology do biochemistry analyzers use

Optical techniques:
Colorimetry: This is the most common method. The sample is mixed with the appropriate reagent to produce a reaction that results in a color. The concentration of the analyte determines the intensity of the color obtained.
Photometry: A light source is projected onto the sample with an appropriate wavelength while a photodetector, placed on the other side of the sample, measures the amount of light absorbed. This is directly correlated to the concentration of the analyte in the sample. There are several principles here: Absorbance (the ability of a medium to absorb light), turbidimetry (measurement of the cloudiness produced by substances suspended in a liquid medium), fluorescence (light emitted by a substance that absorbs light at one wavelength and emits light at another wavelength).
Electrochemical techniques:
Direct potentiometry: The use of ion-selective electrodes (ISE) is widespread and mainly used for assaying ions in samples. This method is used to measure ions such as Na+, K+, CI- and Li+. ISEs are sensors capable of determining the concentration of ions in a solution by measuring the current flow through an ion-selective membrane.
Indirect potentiometry: This method also uses ion-selective electrodes. It allows high throughput and is most commonly used in centralized laboratories. It requires prior dilution, unlike direct potentiometry, and the results are expressed in molarity.

Parts Of Biochemistry Analyzer
Sample Holder
This is the place to put the sample of blood or urine.
Pipette
Pipette is a small straw like structure. It is used to transfer a little amount of sample to a particular section of the machine.
Reagent Section
Reagent Section is a section where the machine adds particular substances, or reagents, to the sample.
These compounds trigger changes in the sample that aid in the identification of various substances in our blood or urine.
Mixing Area
The sample must be stirred once the reagents have been added. The mixing section ensures that all ingredients are thoroughly mixed to promote uniform chemical reactions.
Incubator
In order to speed up the reactions, the collected material may need to be warmed up after the mixing process.
For a brief while, the sample is kept at the proper temperature by the incubator, which functions similarly to a miniature oven.
Detector
After the reagents are added and mixed, this section examines the sample to determine what changes have occurred in it. It measures the changes and collects essential details about the sample using light.
Computer
In the end a computer receives all of the detector's data. After processing this data, the computer notifies the medical professional about the contents of the sample and whether it is normal or causes for worry.
Applications of Biochemistry Analyzer
Commonly used in science labs and medical settings, this device helps doctors to diagnose the problem and identify critical issues (cell related issues and diseases). Scientists also use this device to identify the structure as well as function of bio-molecules, such as nucleic acids, lipids, enzymes, etc. In simple terms, the device is ideal for performing critical tasks in an efficient and safe manner.
Besides that, it is also helpful in advancing medical research, drug investigations, diagnostic and product development approaches. Means, these fully featured devices have become the backbone of the entire medical and pharmaceutical industry. In a nutshell, such devices simply meet the needs of physicians, lab professionals as well as patients.

Preparation:
Ensure the analyzer is clean and calibrated.
Check reagent levels and replace if necessary.
Prepare quality control samples to verify accuracy.
Sample Loading:
Collect the biological sample following standard protocols.
Label the sample accurately to prevent mix-ups.
Load the sample into the analyzer's designated area.
Running the Test:
Select the appropriate test parameters on the analyzer.
Initiate the analysis process.
Monitor the analyzer for any alerts or errors.
Result Interpretation:
Once the analysis is complete, review the results displayed.
Compare the results against reference ranges to identify abnormalities.
Document and report the findings as per laboratory protocols.
Post-Analysis Maintenance:
Clean the analyzer's components to prevent contamination.
Dispose of waste materials safely.
Log maintenance activities for quality assurance.
Caution
Failure of the instrument to operate in the specified environment may result in unreliable results.
If the temperature and relative humidity cannot meet the above requirements, use an air-conditioning device.
Packaging & Delivery

FAQ
We are one of the most professional biochemistry analyzer manufacturers and suppliers in China, specialized in providing high quality OEM service. We warmly welcome you to buy customized biochemistry analyzer at low price from our factory. Contact us for quotation.
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