Description
00A-4496-AC

Recommended Use
Superior peak shape and enhanced separation of basic compounds under neutral and acidic conditions
| Technique | HPLC |
| Separation Mode | Reversed Phase |
| Brand | Kinetex |
| Phase | XB-C18 |
| Length (mm) | 150.0000 |
| Particle Size | 2.6000 |
| Internal Diameter | 0.3000 |
00A-4496-AC is a dependable industrial component developed to support stable performance and long term reliability in demanding operational environments where consistency efficiency and strength are essential for everyday workflows this component is engineered with a strong focus on durability and controlled functionality allowing it to operate smoothly under continuous workloads and repeated system demand professionals rely on 00A-4496-AC because it delivers predictable performance and supports smooth system behavior during extended usage cycles the design philosophy emphasizes balance and reliability enabling equipment to function with minimal fluctuation and steady output even during prolonged operation the structure is optimized to withstand operational stress while maintaining performance integrity Kinetex 2.6u XB-C18 100A LC Column 30 x 0.3 mm and efficiency over time 00A-4496-AC integrates easily into existing systems making it suitable for upgrades replacements and new installations without complex adjustments or extended setup requirements the component supports proper alignment and operational harmony across connected equipment which helps maintain workflow consistency and reduces the likelihood of disruption manufacturing standards prioritize precision quality and repeatability ensuring reliable operation under real world conditions including continuous use and demanding performance expectations users benefit from reduced maintenance needs which supports lower operating costs and improved productivity over extended service periods 00A-4496-AC is valued for its long service life which helps organizations minimize downtime and reduce the frequency of component replacement this reliability is especially important in environments where system stability directly impacts productivity safety and planning the practical design supports usability resilience and dependable output making it an effective choice for facilities that require consistent performance without unnecessary complexity 00A-4496-AC also contributes to operational efficiency by maintaining steady output and supporting smooth transitions during routine processes its dependable nature allows teams to focus on optimizing systems rather than managing frequent technical issues many professionals select 00A-4496-AC because it aligns with long term operational goals and supports consistent performance standards across daily use the component continues to perform effectively under sustained demand which reinforces confidence in system reliability and outcome quality organizations that prioritize dependable components often choose 00A-4496-AC to support efficiency accuracy and operational continuity the component plays a key role in maintaining balance and stability across systems while helping achieve reliable results throughout extended operational cycles the value of 00A-4496-AC lies in its ability to deliver consistent performance while adapting to the needs of advanced applications without compromising durability or ease of use facilities that depend on predictable outcomes benefit from the steady performance profile offered by this component which supports planning stability and efficient execution over time by integrating 00A-4496-AC into their systems professionals can maintain smooth operations and achieve dependable results that support long term operational success and performance confidence
Why should I choose 00A-4496-AC from Ordinals?
Ordinals supplies 00A-4496-AC with a strong focus on quality durability and consistent performance making it a dependable choice for long term industrial applications.





user –
Reliable and durable product that delivers smooth and consistent performance. Well suited for long term industrial use with dependable results.