Light liquid paraffin oil is the highest grade, refined version of mineral oils and is an unsaturated hydrocarbon derived from petroleum. Some common petroleum refining methods for obtaining light liquid paraffin oil are thermal fractionation and chemical fractionation.
Light Liquid Paraffin Oils are produced from highly refined hydro-cracked/ hydro-treated base oils with a high degree of purity to meet IP / BP / USP standards. They have excellent oxidation / UV stability and are suitable for application in pharmaceuticals, cosmetics and food industries for direct and indirect food contact.
SG01XL-5
Broadband SiC based UV photodiode A = 7,6 mm2
Properties of the SG01XL-5 UV Photodiode
* Broadband UVA+UVB+UVC, PTB reported high chip stability
* Active Area A = 7.6 mm2
* TO5 hermetically sealed metal housing, short cap, 1 isolated pin and 1 case pin
* 10µW/cm2 peak radiation results a current of approx. 99 nA
SG01XL-5 UV Photodiode Specifications
Typical Responsivity at Peak Wavelength: 0.130/AW
Wavelength of max. Spectral Responsivity: 280nm
Responsivity Range: 221 - 358nm
Active Area: 7.6mm2
Dark Current (1V reverse bias): 25.3fA
Capacitance: 1900pF
Short Circuit (10µW/cm2 at peak): 99nA
Temperature Coefficient: < 0.1%/K
Operating Temperature: -55 ~ +170'C
Storage Temperature: -55 ~ +170'C
Soldering Temperature (3s): 260'C
Reverse Voltage: 20V
SG01M-18S
Broadband SiC based UV photodiode A = 0.20 mm2
Properties of the SG01M-18S UV Photodiode
* Broadband UVA+UVB+UVC, PTB reported high chip stability
* Active Area A = 0.20 mm2
* TO18 hermetically sealed metal housing, short cap, 1 isolated pin and 1 case pin
* 10mW/cm2 peak radiation results a current of approx. 2600 nA
SG01M-18S UV Photodiode Specifications
Typical Responsivity at Peak Wavelength: 0.130/AW
Wavelength of max. Spectral Responsivity: 280nm
Responsivity Range: 221 - 358nm
Active Area: 0.20mm2
Dark Current (1V reverse bias): 0.7fA
Capacitance: 50pF
Short Circuit (10mW/cm2 at peak): 2600nA
Temperature Coefficient: < 0.1%/K
Operating Temperature: -55 ~ +170°C
Storage Temperature: -55 ~ +170°C
Soldering Temperature (3s): 260°C
Reverse Voltage: 20V
SG01S-B18
UVB-only SiC based UV photodiode A = 0.06 mm2
Properties of the SG01S-B18 UV Photodiode
* UVB-only sensitivity, PTB reported high chip stability
* Active Area A = 0.06 mm2
* TO18 hermetically sealed metal housing, 1 isolated pin and 1 case pin
* 10mW/cm2 peak radiation results a current of approx. 750 nA
SG01S-B18 UV Photodiode Specifications
Typical Responsivity at Peak Wavelength: 0.125/AW
Wavelength of max. Spectral Responsivity: 280nm
Responsivity Range: 231 - 309nm
Active Area: 0.06mm2
Dark Current (1V reverse bias): 0.2fA
Capacitance: 15pF
Short Circuit: 750nA
Temperature Coefficient: < 0.1%/K
Operating Temperature: -55 ~ +170°C
Storage Temperature: -55 ~ +170°C
Soldering Temperature (3s): 260°C
Reverse Voltage: 20V
SG01M-C5
UVC-only SiC based UV photodiode A = 0.20 mm2
Properties of the SG01M-C5 UV Photodiode
* UVC-only sensitivity, compliant with DVGW W294, PTB reported high chip stability
* Active Area A = 0.20 mm2
* TO5 hermetically sealed metal housing, 1 isolated pin and 1 case pin
* 10mW/cm2 peak radiation results a current of approx. 2400 nA
SG01M-C5 UV Photodiode Specifications
Typical Responsivity at Peak Wavelength: 0.120/AW
Wavelength of max. Spectral Responsivity: 275nm
Responsivity Range: 225 - 287nm
Active Area: 0.20mm2
Dark Current (1V reverse bias): 0.7fA
Capacitance: 50pF
Short Circuit (10mW/cm2 at peak): 2400nA
Temperature Coefficient: < 0.1%/K
Operating Temperature: -55 ~ +170'C
Storage Temperature: -55 ~ +170'C
Soldering Temperature (3s): 260'C
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SG01XL-C5
UVC-only SiC based UV photodiode A = 7,6 mm2
Properties of the SG01XL-C5 UV Photodiode
* UVC-only sensitivity, compliant with DVGW W294, PTB reported high chip stability
* Active Area A = 7,6 mm2
* TO5 hermetically sealed metal housing, 1 isolated pin and 1 cas e pin
* 10µW/cm2 peak radiation results a current of approx. 91 nA
SG01XL-C5 UV Photodiode Specifications
Operating Temperature: -55 ~ +170'C
Storage Temperature: -55 ~ +170'C
Soldering Temperature (3s): 260'C
Active Area: 7.6mm2
Dark Current (1V reverse bias): 25.3fA
Capacitance: 1900pF
Short Circuit (10µW/cm2 at peak): 91nA
Temperature Coefficient: < -0,1%/K
Wavelength of max. Spectral Responsivity: 275nm
Responsivity Range: 225 - 287nm
SG01S-C18
UVC-only SiC based UV photodiode A = 0.06 mm2
Properties of the SG01S-C18 UV Photodiode
* UVC-only sensitivity, compliant with DVGW W294, PTB reported high chip stability
* Active Area A = 0.06 mm2
* TO18 hermetically sealed metal housing, 1 isolated pin and 1 case pin
* 10mW/cm2 peak radiation results a current of approx. 720 nA
SG01S-C18 UV Photodiode Specifications
* Typical Responsivity at Peak Wavelength: 0,120/AW
* Wavelength of max. Spectral Responsivity: 275nm
* Responsivity Range: 225 - 287nm
* Active Area: 0.06mm2
* Dark Current (1V reverse bias): 0.2fA
* Capacitance: 15pF
* Short Circuit (10mW/cm2 at peak): 720nA
* Temperature Coefficient: < 0.1%/K
* Operating Temperature: -55 ~ +170°C
* Storage Temperature: -55 ~ +170°C
* Soldering Temperature (3s): 260°C
UV Offset Inks
- UV Sheetfed Process Colors
- LED UV Sheetfed Process Colors
- Base Concentrates & Spot Colors
- UV Web Process Colors
- Led UV Web Process colors
- Dry offset inks for plastic cups
1.Features
Gallium Nitride Based Material
Schottky-type Photodiode
Photovoltaic Mode Operation
Good Visible Blindness
High Responsivity & Low Dark Current
2.Applications
UV Index Monitoring
UV-A Lamp Monitoring
UV Flexo Inks
Maxflex is a range of UV flexo inks intended
for printing of labels, tags, sleeves and
other applications found in narrow web
reproducing quality at speed.
Performance Characteristic
- Max flex inks have optimized flow for press performance
- Vibrant color strength at finer anilox with lower ink consumption
- Fast curing for higher press speed
- High Gloss
- Led flexo process colour and base colour
Premium Skincare Solutions - Formulated for Results, Priced for Business. Partner with us to deliver radiant skin and reliable quality to your customers. Made in Japan with carefully selected traditional food-based ingredients - our skincare line blends heritage and innovation to meet global demand for natural, high-quality beauty solutions. Available for wholesale and private label.
Other products:
1. Skin care
2. Body care
3. UV care
4. Oral care
5. Hair care
Properties of the tocon-abc10 sic uv photodetector
* broadband sic based uv photodetector in to5 housing with attenuator
* 0 - 5 v voltage output
* peak wavelength at 290 nm
* max. Radiation (saturation limit) at peak is 18 w/cm2, minimum radiation (resolution limit) is 1.8 mw/cm2
* applications: uv hardening control and other very high uv radiation sources
Sic uv photodetector tocon-abc10 specifications
Spectral characteristics
Typical responsivity at peak wavelength: 0.28 mv/mw/cm2
Wavelength of max. Spectral responsivity: 290nm
Responsivity range: 227 360nm
General characteristics (t=25'c, vsupply=+5 v)
Supply voltage: 2.5 - 5v
Dark offset voltage: 50âµv
Temperature coefficient at peak: < -0.3%/k
Current consumption: 150âµa
Bandwidth (-3 db): 15hz
Risetime (10-90%): 0, 069s
(other risetimes on request)
Maximum ratings
Operating temperature: -25 +85'c
Storage temperature: -40 +100'c
Soldering temperature (3s): 300'c
Properties of the sic uv photodetector tocon-abc1
* broadband sic based uv photodetector in to5 housing with concentrator lens cap
* 0 - 5 v voltage output
* peak wavelength at 280 nm
* max. Radiation (saturation limit) at peak is 18 nw/cm2, minimum radiation (resolution limit) is 1.8 pw/cm2
* applications: very low uv radiation, flame detection
Specifications
Typical responsivity at peak wavelength: 280 mv/nw/cm2
Wavelength of max. Spectral responsivity: 280 nm
Responsivity range (s=0.1*smax): 221 - 358 nm
Supply voltage: 2.5 - 5 v
Dark offset voltage: 700 uv
Temperature coefficient at peak: < -0.3 %/k
Current consumption: 150
Bandwidth (-3 db): 15 hz
Risetime (10-90%): 0.182 s
Operating temperature: -25 - +85'c
Storage temperature: -40 - +100'c
Soldering temperature (3s): 300'c
UV Flame sensor is fire detect sensor which detecs ultraviolet rays of a flame instantly and output warning signal outside. By using emergency call equipment or adjusting the sensor connection, SKH-)$& can supervise multiple sensors at a long range.
Polyether polyols are key components used in the production of polyurethanes.
Polyether-based polyurethanes exhibit enhanced hydrolytic stability and excellent resistance to weak acids and bases compared to polyester-based polyurethanes.
Polyether polyurethane can be divided into soft foam polyether, rigid foam polyether, and elastomer with polyether according to the performance of polyether products.
However, polyether-based polyurethanes are more susceptible to UV radiation and provide poor resistance to oils and fuels compared to polyester-based polyurethanes.
Application:
Polyether polyols' major use is in polyurethane foams. Flexible foams are primarily used in cushioning applications such as furniture, bedding and car seats, and in carpet underlay. Rigid foam's largest consumer is the construction industry where it is mostly used for insulation. Rigid foam is also used in commercial refrigeration and packaging. Smaller uses for polyether polyols include elastomers, adhesives and sealants, surface coatings and polyurethane fibres.
Introduction:
Benzophenone-1 is a powder polymer additive applicable to polyolefin, polyvinyl chlornamee, polystyrene etc as a stabilizer with the incorporation of 0.1% to 0.5% (based on polymer weight) required.
BP-1 is particularly recommended for using in polystyrene, epoxy, nail polish and elastomers. It is also effective to protect colorant, polymethyl methacrylate and coatings.
2,4-Dihydroxybenzophenone is mainly used as a light stabilizer for plastics and other materials, which can effectively protect plexiglass and cloth, prevent cloth from deterioration due to illumination, and is also used as an intermediate for synthesizing other ultraviolet absorbents.
Application:
It is suitable for polyolefin, polyvinyl chloride and polystyrene. It is mainly used in plastics as light stabilizer, which can effectively protect plexiglass and cloth from deterioration due to light. It is also used as an intermediate in the synthesis of other UV absorbers.
Height:10mm, 12mm, 13mm, 15mm
Gauge:3/16
Stitches:300, 310, 320, 330, ...
Dtex: 3300, 5500, 8000
Advantages of artificial grass on golf courses:
-Artificial grass is made of synthetic plastic so it is very durable, the surface has a smooth texture and pleasing color, can bring the appearance of a golf course similar to a natural golf course with a much lower initial cost.
-Perfect drainage from the perforated holes underneath the base layer and excellent UV protection, the artificial golf grass will not fade, always looking great.
-Artificial grass has uniform color and thickness, thus always keeping your golf course in the best condition.
-Artificial grass can be installed easier and faster than natural grass.
-Long term use, limited maintenance and repair.
Height:10mm, 12mm, 13mm, 15mm
Gauge:3/16
Stitches:300, 310, 320, 330, ...
Dtex: 3300, 5500, 8000
Advantages of artificial grass on golf courses:
-Artificial grass is made of synthetic plastic so it is very durable, the surface has a smooth texture and pleasing color, can bring the appearance of a golf course similar to a natural golf course with a much lower initial cost.
-Perfect drainage from the perforated holes underneath the base layer and excellent UV protection, the artificial golf grass will not fade, always looking great.
-Artificial grass has uniform color and thickness, thus always keeping your golf course in the best condition.
-Artificial grass can be installed easier and faster than natural grass.
-Long term use, limited maintenance and repair.
Description:
Chitin is a naturally occurring polysaccharide found in the shells of living organisms such as crabs, lobsters, tortoise, shrimps, and insects or it can be generated via fungal fermentation processes. And chitosan is a unique biobased polymer that is a derivative of chitin and forms the exoskeleton of arthropods. It is obtained by partial deacetylation of chitin using a chemical method or by enzymatic hydrolysis. In general, chitin with a degree of deacetylation of 70% or above is considered to be chitosan.
Application:
Chitin and its derivative chitosan are natural biopolymers which are extracted from crabs, prawns, and shrimps. Chitin consists of �²-(1,4)- linked 2-acetamido-2 deoxy-�²-D-glucose which is insoluble in water and hydrophobic in nature.
Chitin is a natural biopolymer, which is biocompatible and biodegradable and useful in many applications like biomedical, electronics, photography, and textiles. The main advantages of chitin and its derivates are the low cost and easily availability. The chitin-based composites like chitin beads, chitin nanofibers, and chitin hydrogels are used in drug delivery and tissue engineering applications. In recent times, chitin and its derivates have gained much importance in the field of electronic applications as sensors and energy storage applications. Chitin nanofiber papers are being used as flexible green electronics in solar cells and organic light-emitting diodes. Aksoy et al. prepared low-cost chitin derivatives with high conductivity, for the construction of Schottky diodes, which are useful for photoelectrical applications. Schauer et al. reported a variation of the piezoelectric effect of the chitin electrospun nanofibers.
UV-A radiation is important in material sciences and has numerous photo-biological functions that are both harmful and beneficial. Apogees new UV-A radiometers offer a low-cost option for continuously measuring UV-A radiation in outdoor environments, laboratory settings, and monitoring the filtering ability and stability of various materials.
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