- Phone
-
Address
Room 602, Building A, Minggu Science and Technology Park, No. 7001 Zhongchun Road, Minhang District, Shanghai
AOPUTE Technology (Shanghai) Co., Ltd
Room 602, Building A, Minggu Science and Technology Park, No. 7001 Zhongchun Road, Minhang District, Shanghai
1. All fiber optical path: By using all fiber optical path instead of discrete optical path, the reference light and scattered light signals are no longer affected by dust and stray light interference, significantly improving the signal-to-noise ratio and anti-interference ability.
3. Large dynamic range high-speed digital correlator: Using a photon correlator with high-speed and low-speed channels, it effectively solves the contradiction between hardware resources and channel quantity, and obtains real-time correlation functions with large dynamic range and stable baseline.
4. Data filtering function: Introducing the method of quantile detection for outliers, identifying scattered light data affected by dust interference, and removing outliers to improve the accuracy of granularity measurement results.
5. Temperature trend analysis: Automatically measure particle size and Zeta potential according to the set temperature range, and detect the temperature trend of sample particle size or potential.
8. Data output: Provides data output function, making it convenient for users to view and compare measurement results in customized graphs and tables
9. Standardized Operation: The software has a Standard Operating Procedure (SOP) function, which enables measurements between different laboratories and experimenters to be conducted according to the same standard, resulting in more comparable measurement results.
10. Intelligent measurement: Automatically adjust scattered light intensity and optimize photon correlation parameters to adapt to different samples, making measurement so easy.
11. Regulatory software: The software complies with the requirements of FDA 21CFR Part 11, can set/modify user group access permissions, has electronic record/electronic signature and audit tracking functions, and meets the regulatory requirements of pharmaceutical companies.
parameter |
technical indicators |
model |
919S |
function |
Particle size, molecular weight, temperature trend |
granularity |
|
measurement method |
Dynamic Light Scattering (DLS) |
Analysis pattern |
CUMULANT, CONTIN, NNLSauto-select |
Measure angle |
90° |
Particle size range |
0.3nm-15μm* |
accuracy |
Less than 1% (NIST traceable latex standard) |
repetitiveness |
Less than 1% (NIST traceable latex standard) |
Minimum sample size |
3μL* |
Minimum sample concentration |
0.1mg/mLlysozyme |
Maximum sample concentration |
40%w/v* |
molecular weight |
|
measurement method |
SLSAnd DLS |
Molecular weight range |
340Da ~ 20MDa |
system |
|
laser |
532nmSolid state laser, 50mW* |
transmittance |
0%-100%Continuous adjustment |
detector |
High sensitivity PMT or APD* |
correlator |
Minimum sampling time 25ns, dynamic range greater than 1011 |
Temperature control range |
-10°*~120°C* |
Temperature control accuracy |
±0.1°C |
Condensation control |
Dry air blowing |
working environment |
Temperature+10 ° C~+35 ° C, relative humidity 35%~80%, no condensation |
computer interface |
USB2.0or above |
power supply |
AC100V~240V, 50/60Hz, Maximum power 120W |
size |
580mm×365mm×195mm |
weight |
18kg |
Computer operating system |
Windows 10 32/64bit operating system |
Regulatory software |
Compliant with the requirements of FDA 21 CFR Part 11, users can flexibly set usage permissions and have electronic signatures Audit tracking function, * compliant with regulatory requirements of pharmaceutical companies |
*Depends on the sample and selected components
Application of nanoparticle size and Zeta potential analyzer in the field of nanoparticle size measurement:
1. Nanomaterials: Nanomaterials not only have a lower melting point, but also a lower phase transition temperature, allowing solid-state reactions to occur at low temperatures, resulting in composite materials with good sintering performance. They can be used to study the influence of particle size on material properties of nano metal oxides, nano metal powders, and nano ceramic materials.
2. Biopharmaceuticals: can analyze proteins DNA、RNA、 Viruses, down to the granularity of various antigens and antibodies.
3. Fine chemical engineering: can be used to search for optimized particle size distribution of nanocatalysts to reduce chemical reaction temperature and improve reaction rate.
4. Paint and coating: it can be used to measure the particle size of nano particles in paint, coating, silica gel, polymer latex, water/oil lotion, pigment, ink, toner, cosmetics and other samples.
5. Food and drugs: Coating nanoparticles on the surface of drugs can enable efficient sustained release and can be made into targeted drugs, which can be used to control the size of drug particles in order to better exert the therapeutic effect of drugs.
6. Aerospace: Adding nano metal powder to rocket solid propellants can significantly improve the combustion performance of the propellant and can be used to study the optimized particle size distribution of metal powder.
7. National Defense Technology: Nanomaterials increase the efficiency of converting electromagnetic energy into thermal energy, thereby improving the absorption performance of electromagnetic waves, and can be made into electromagnetic wave absorbing materials. Different particle size nanomaterials have different optical properties and can be used to study the performance of absorbing materials.