Singer Safety Antistatic Gloves
Product description
These antistatic protective gloves feature a seamless knitted polyester and carbon liner designed for fine work in dry environments. The polyurethane palm coating provides excellent grip and protection while maintaining flexibility, with the uncoated back allowing hand ventilation. Certified to EN 16350:2014 for electrostatic properties and EN 388:2016+A1:2018 (2131X) for mechanical protection, these gloves offer reliable performance for light industry applications.
Product Features:
- Seamless knitted liner for improved comfort with no irritation points
- Antistatic properties from polyester/carbon material composition
- Elastic knitted wrist for secure fit and proper positioning
- Polyurethane palm coating for enhanced grip and protection
- Ventilated back design for improved comfort during extended wear
Technical Details:
- 13 gauge seamless construction
- EN 388:2016+A1:2018 certification with 2131X rating
- EN 16350:2014 compliant for electrostatic dissipative properties
- EN ISO 21420:2020 general requirements compliance
- Category II PPE according to European Regulation (EU) 2016/425
Recommended Applications:
- Light industry environments
- Fine work requiring precision in dry conditions
- Applications requiring electrostatic discharge protection
Standards:
- EN ISO 21420:2020
- EN 388:2016+A1:2018 (2131X)
- EN 16350:2014
EAN: 3660514200012, 3660514200029, 3660514200043, 3660514200050, 3660514200074, 3660514200081, 3660514200104, 3660514200111, 3660514200135, 3660514200142
Indicates the knit density of the glove liner, with higher numbers offering increased dexterity and lower numbers providing greater durability and protection.
Identifies the substance applied to the glove surface that determines grip quality, protection level, chemical resistance, and durability in specific work environments.
The visual appearance that enhances workplace safety through visibility, identification, and hazard awareness while allowing for team differentiation and brand recognition.
Defines the glove's construction and specialized features that determine protection level, dexterity, and task suitability for specific workplace applications.
Offers a snug, comfortable fit, keeping debris out. Knit cuffs provide flexibility and durability for various tasks needing hand protection.
Provides a snug, adaptable fit around the wrist. Helps keep debris out and prevents slippage with its flexible, stretchable design for secure wear.
Indicates the extent of protective coating applied to the glove, affecting grip strength, liquid resistance, durability, and task-specific dexterity.
Indicates how glove sections are joined together, affecting comfort, durability, and dexterity. Seamless options reduce friction while piped seams add reinforcement.
- Hand Protection
- Electrical Protection
- Cut Resistant
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Standards and labels
Test results
General Requirements GuideEN ISO 21420:2020 is a standard that outlines general requirements and guidelines for protective gloves, aiming to ensure their quality, performance, and suitability for various applications. When a product meets the requirements outlined in the General Requirements section of EN ISO 21420:2020, it signifies that the gloves comply with fundamental quality and performance criteria, including factors such as size, fit, ergonomics, and dexterity. The practical implications of this compliance are significant, as it assures users of the gloves' basic functionality and suitability for general hand protection purposes across a range of industries and applications. The test method involves evaluating various aspects of the gloves, including dimensions, construction, materials, and labeling, to ensure conformity with the specified requirements. Compliance with these general requirements enhances user confidence in the protective gloves' reliability and effectiveness, promoting workplace safety and facilitating compliance with regulatory standards.
ISO 14001:2015 is a standard that specifies requirements for an environmental management system (EMS). It includes requirements for how companies should design, implement, maintain and improve their EMS to ensure that they minimize negative impacts on the environment and comply with environmental regulations. Test results can include information on how well the EMS is functioning, how well it is being followed, and how effective it is in reducing environmental impacts. The standard also includes requirements for how the company should document and record their EMS performance and continuously improve it.
Test results
Environmental Management PassedThe standard ISO 14001:2015 pertains to environmental management systems (EMS). A passed test result under this standard indicates that an organization's EMS meets the stringent criteria set forth for managing environmental responsibilities systematically. This ensures sustainable development while considering environmental impacts. Specifically, ISO 14001:2015 includes requirements for a framework that an organization can follow rather than establishing environmental performance criteria. It encompasses various aspects such as compliance obligations, planning actions to address risks and opportunities, and continual improvement. The test primarily involves evaluating the effectiveness of the EMS in supporting a company to achieve its intended outcomes regarding its environmental performance. If a company has passed this evaluation, it reflects their commitment to environmental stewardship, potentially enhancing their marketability and aiding in compliance with statutory and regulatory requirements.
EN 16350:2014 is a European standard that defines the performance requirements for windows and doors in buildings. It covers testing procedures for measuring the safety and security aspects of these products. Test results should show compliance with the standard's requirements, including the resistance to forced entry, load resistance and the ability to open and close easily.
Test results
Electrostatic Properties TestedEN 16350:2014 specifies the test methods and requirements for the electrostatic properties of protective clothing used to avoid incendiary discharges, particularly in environments where there is a risk of explosion. The 'Tested' designation indicates that the material has undergone evaluation to ensure it dissipates electrostatic charges effectively under specific conditions. The standard testing method involves measuring the electrical resistance of the fabric under controlled humidity and temperature conditions to ensure that the material can safely conduct electrical charges away from the body. Protective clothing meeting this standard is essential in industries like petrochemicals, electronics manufacturing, and pharmaceuticals, where static electricity can pose a significant risk of sparking explosions or fires. This certification assures that the clothing provides a necessary level of protection against electrostatic discharge, contributing to the safety and prevention of accidents in hazardous work environments.
EN 388:2016 is a European standard for measuring the performance of protective gloves against mechanical risks (abrasion, cut, tear, and puncture). The standard includes test methods and performance requirements for gloves to be considered compliant. Test results are reported using a series of four numbers, each representing the performance level achieved in one of the tests.
Test results
Puncture Resistance Level 1The European standard EN 388:2016 addresses the puncture resistance of protective gloves, with puncture resistance classified from Levels 1 to 4. Specifically, a Level 1 result indicates minimal puncture resistance. This level of resistance is determined by a test involving a standardized stylus with a specified diameter and force. During the test, the stylus is pressed against the material with a force up to 20 Newtons to assess how well the glove can withstand penetration. A Level 1 rating signifies that the glove provides basic protection against small punctures or stabs, appropriate for areas with minimal risk. Practical implications for this test result suggest the gloves are suitable for light tasks where major risks of punctures are not anticipated, but are not adequate for handling sharp tools or heavy equipment where higher penetration resistance would be necessary.
Abrasion Resistance Level 2EN 388:2016 is an updated European standard that specifies criteria for testing gloves to protect against mechanical risks, including abrasion, cuts, tears, and puncture. The Abrasion Resistance Level 2 classification within this standard indicates a moderate level of protection against wear from rough materials. The abrasion resistance test involves subjecting the glove material to repeated cycles of sandpaper under pressure until the material wears through. Level 2 abrasion resistance means the gloves can withstand between 500 to 1999 cycles before being penetrated. This level of protection is suitable for tasks that involve handling or coming into contact with abrasive materials but not at an extreme or heavy-duty level. Gloves with Level 2 abrasion resistance are well-suited for general handling tasks, offering durability and protection to extend the life of the glove while maintaining good dexterity and comfort.
Tear Resistance Level 3EN 388:2016 is a European standard that specifies methods for testing the resistance of protective gloves against mechanical hazards, such as abrasion, cuts, punctures, and tearing. The Tear Resistance Level 3 indicates a high level of protection, where the gloves can withstand significant tearing forces. The test for determining tear resistance involves subjecting the glove material to a mechanical force until it tears, measuring the force required to initiate and continue the tear. For Level 3, gloves must withstand a force between 50 to 75 Newtons before tearing. This robust level of tear resistance is particularly suitable for demanding environments where gloves are exposed to activities that might cause extensive wear or tearing, such as handling heavy or rough materials, industrial assembly, and construction tasks. Gloves with this level of tear resistance provide enhanced durability and safety, reducing the risk of injuries and increasing the longevity of the glove in tough working conditions.
Cut Resistance, ISO 13997 Level XThe standard EN 388:2016, specifically its segment referring to ISO 13997 test, is designed to assess the cut resistance of materials used in protective gloves. A result denoted as 'Level X' means that test is not performed and the cut resistance of the product cannot be guaranteed.
Cut Resistance, Coup Test Level 1The EN 388:2016 standard is dedicated to gauging the mechanical risks for hand protection where a Cut Resistance, Coup Test Level 1 indicates minimal resistance to cutting because material achieved between 1.2 and 2.5 cycles before being cut through during the test. It means that the product tested at this level offers basic protection against shallow cuts, suitable for tasks with low risk of cut injuries. The test method used involves a rotating circular blade under a fixed force making contact with the fabric or material being tested. The blade moves back and forth across the material until a cut-through is achieved. The number of cycles required to cut through the sample at a consistent speed determines the cut resistance, with Level 1 being the second lowest rating after level 0. Products at this level are applicable in scenarios where there are minimal hazards from sharp objects, hence ideal for light duties where there is no significant risk of deep cuts.
Test results
Service Reliability PassedEN ISO 9001:2015 is a globally recognized standard that specifies requirements for a quality management system (QMS), focusing on numerous aspects of quality management in organizations, aiming to enhance customer satisfaction through the effective application of the system. The 'Service Reliability' with a 'Passed' designation indicates that an organization has successfully demonstrated its ability to consistently provide services that meet customer and regulatory requirements while aiming for continual improvement. This assessment involves evaluating various elements of the QMS including service planning, execution, and monitoring, to ensure reliability and performance consistency. The practical implications for organizations that pass this aspect of the standard are significant; it establishes them as reliable providers in their industry, enhancing customer trust and satisfaction, and potentially leading to increased business and a competitive advantage.
CE Marking is a label that shows a product meets certain safety and environmental standards set by the European Union. To get the CE Marking, a company must test and certify their product meets these standards. CE Marking is required for many products sold in the EU, including electronics, machinery, toys and medical devices. It helps ensure that products are safe for consumers and the environment, and allows for easy trade within the EU.
PPE stands for "personal protective equipment." PPE Category 2 refers to equipment that is more complex, and has a higher level of risk. Examples of PPE Category 2 include safety helmets, ear protection, and fall arrest equipment. In Europe, PPE Category 2 must meet certain safety standards set by the European Union, which means that it must be designed and manufactured to protect the user without causing harm. Companies that make or sell PPE must prove that it meets these standards. They also must have a quality management system in place and have to be audited regularly by a notified body.
SINGER Safety delivery terms
Free delivery when you order more than 1 650,00 kr from SINGER Safety
Supplier shipping fee 60,00 kr
Brand minimum 2 000,00 kr
98,53 kr
Price per 10 pairs
9,85 kr / pair
Shipping fee is 60,00 kr for orders under 1 650,00 kr
A package contains 10 pairs
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SINGER Safety
Delivery time: 5 business days
Orders from 2 000,00 €
Supplier shipping fee 60,00 €
Free shipping on orders over 1 650,00 €



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