Ultra High Purity CDS Solutions Featuring 316L Electropolished Stainless Steel for Superior Chemical Integrity and Safety

Ultra High Purity CDS Solutions Featuring 316L Electropolished Stainless Steel for Superior Chemical Integrity and Safety

Ultra High Purity (UHP) CDS Solutions featuring 316L electropolished stainless steel represent the pinnacle of fluid handling for the semiconductor and photovoltaic industries. The choice of 316L stainless steel is deliberate; its low carbon content provides exceptional corrosion resistance, while the electropolishing process removes surface impurities to create a mirror-like 5Ra finish. This ultra-smooth surface is critical because it eliminates microscopic “pockets” where bacteria or particles could lodge, ensuring that chemical integrity is maintained at the parts-per-trillion (ppt) level.

Beyond material purity, these systems are engineered for superior chemical integrity through seamless integration. By using proprietary diaphragm valves and precision pressure regulators, the CDS prevents “shedding”—the release of metal ions or particles into the chemical stream. This is vital for sub-micron fabrication, where even a single contaminant can lead to catastrophic yield loss during wet etching or CMP processes.

Safety is equally paramount. These stainless steel configurations are built with secondary containment and nitrogen blanketing to handle hazardous and volatile liquids securely. Combined with PLC automation and non-contact sensors, the system provides a fail-safe environment that monitors leaks and pressure in real-time. The result is a robust, high-purity delivery solution that protects both the product and the production facility.

Technical Data

Model JW-200L-CDM,JW-1000L-CDM
Special gas cabinet size W2200*D1500*H2000(double drums)/W2990*D2100*H2000(double drums)
Control cabinet power supply 220VAC, 50HZ, 0.5~3KW, leakage protection
Purge PN2,SS316 1/2″SWG
Ultra-pure water UPW, JIS 16A bonding
Compressed air CDA,SS316 1/2″SWG
Waste outlet Drain,PP DN20 Fusion Socket/Drain,PP DN25 Fusion Socket
Standard equipment PP shell + transparent PVC observation window + PFA internal pipe valve, nitrogen purging, sampling, fully automatic acid supply, automatic switching of left and right barrels. The pump body has two uses and one backup. It can automatically switch the liquid supply operation according to the liquid level in the barrel. The touch screen can display the working status of each valve and the liquid supply status of the pipeline. Automatically cut off the fluid supply, early warning and alarm of the operating status of each part of the system, self-check and confirmation of multiple safety, simple system, and supports multiple languages, supports multiple signal inputs, code scanner, high-efficiency filter, door sensor Optional

*Emergency manual operation panel
*High efficiency filter
*Door sensor

Application:
Semiconductor
Photovoltaic
Solar energy
Liquid crystal panel
Optical fiber
Other production fields

 

Speciality Chemicals Handled
HF- Hydrofluoric acid
HCL- Hydrochloric acid
H2O2- Hydrogen Peroxide
KOH- Potassium Hydroxide
HNO3- Nitric acid
NH4OH- Ammonium Hydroxide
H2SO4- Sulfuric acid

 

Function:
Liquid chemical filtration
Liquid chemical sampling
Liquid chemical circulation
Liquid chemical delivering

chemical delivery module (cdm) and chemical delivery system (cds)
chemical delivery module (cdm) and chemical delivery system (cds)
chemical delivery module (cdm) and chemical delivery system (cds)
chemical delivery module (cdm) and chemical delivery system (cds)
chemical delivery module (cdm) and chemical delivery system (cds)
chemical delivery module (cdm) and chemical delivery system (cds)
chemical delivery module (cdm) and chemical delivery system (cds)
chemical delivery module (cdm) and chemical delivery system (cds)
chemical delivery module (cdm) and chemical delivery system (cds)
chemical delivery module (cdm) and chemical delivery system (cds)
chemical delivery module (cdm) and chemical delivery system (cds)
chemical delivery module (cdm) and chemical delivery system (cds)
Shenzhen Jewellok Technology is a premier provider of Ultra-High Purity (UHP) Liquid Chemical Delivery Systems, specializing in mission-critical infrastructure for the semiconductor and photovoltaic industries. As global manufacturing pushes toward sub-micron precision, we provide the engineering excellence required to maintain chemical integrity at the parts-per-trillion (ppt) level.
Our core mission is to facilitate seamless, contamination-free chemical transport from bulk storage to the point of use. We offer a comprehensive suite of solutions, including Chemical Delivery Systems (CDS) for high-volume transport and Chemical Delivery Modules (CDM) designed for automated, high-precision blending and dilution. These systems are essential for sensitive processes such as Chemical Mechanical Planarization (CMP) and wet etching, where consistency is the key to high production yields.
Quality is built into every component. Our hardware is constructed from 316L electropolished stainless steel with a 5Ra surface finish, significantly reducing the risk of particle shedding or chemical reaction. To enhance facility uptime, our Valve Manifold Boxes (VMB) allow for discrete tool isolation, enabling maintenance without requiring a total system shutdown.
Innovation drives our design philosophy. By integrating PLC automation and non-contact sensors, we provide operators with real-time monitoring and data-driven control over their chemical distribution networks. Furthermore, safety remains our highest priority. Every Jewellok system incorporates multi-layered protection, including nitrogen blanketing, secondary containment, and advanced automated leak detection to protect both personnel and the environment.
At Jewellok, we don’t just provide equipment; we deliver the reliability and purity essential for the next generation of microelectronics. Whether you are scaling a new fabrication plant or upgrading an existing line, our UHP solutions ensure your chemicals remain as pure at the tool as they were at the source.