ESD Nitrile Palm Coated Gloves

The ESD001 uses ESD yarn and low-lint nylon as its base materials. It provides a uniform static decay rate. Combined with Kevlar fiber, the glove also offers cut resistance. The glove features a nitrile palm coating for excellent grip. It is suitable for applications such as electronics handling and precision instrument repair. M-tide offers customized ESD glove solutions.

  • ESD & Static Safe
  • Water-resistant
  • ANSI Level 6 cut resistance
  • Touchscreen compatible with fast response
  • Nitrile coating for superior grip
  • Seamless knit technology for flexible and comfortable handling
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Product Description

ESD Nitrile Palm Coated Gloves are made with a composite weave of conductive carbon fiber and Kevlar fiber. They help protect hands from cuts when assembling or repairing sharp electronic components and precision instruments. The gloves use advanced ESD control technology to effectively control the discharge rate of accumulated static electricity. Made with low-lint nylon as a base material, these gloves are ideal for cleanrooms and clean processing environments. They use high-gauge fine liner technology, resulting in lightweight, fine-textured gloves with a snug fit for precise handling. Key features of the ESD001 include:

  • Surface resistance up to 10⁸ Ω for anti-static protection
  • Made with low-lint nylon and Kevlar fiber, these gloves provide ANSI A6 cut resistance.
  • Seamless knit construction for flexible handling
  • Nitrile coating on the palm and fingertips allows for easy gripping of workpieces
  • Elastic knit cuff provides a snug fit and helps prevent slipping
  • 10-finger touchscreen compatibility allows easy operation of smartphones and touchscreen devices.
  • Machine washable for repeated use

Application

  • PCB Manufacturing and Assembly
  • Small Electronic Component Assembly
  • Sensor Maintenance in the Aerospace Industry
  • Automotive Battery Maintenance, Electronic Module Assembly, and Repair
  • Touchscreen Operation
  • Construction
ItemSpecification
BrandM-tide
Product NameESD Nitrile Palm Coated Gloves
Coating TypeNitrile Palm Coating
MaterialLow-Lint Nylon, Kevlar Fiber, Carbon Fiber
Cut LevelANSI A6
Gauge13 gauge, 18 gauge, 21 gauge
ColorWhite, Gray, Black
SizeXS, S, M, L, XL, XXL

Static electricity can damage sensitive electronic components. ESD gloves are protective equipment designed to reduce static buildup and dissipate static electricity. Conductive fibers are typically integrated into the glove liner to achieve this. M-tide offers the following ESD technical solutions:

Carbon Fiber + Low-Lint Nylon:
A common static-dissipative solution. It creates a stable static-dissipation path within the glove. It is often used in work environments with high ESD sensitivity requirements.

Copper fiber:
It offers higher conductivity than carbon fiber and is typically combined with polyester or nylon. It is commonly used for tasks with higher ESD sensitivity requirements. Surface resistance can be controlled below 7.5 × 10⁷ Ω.

PVC Bead-Coated ESD Gloves:
The coating is thin, breathable, and abrasion-resistant. The bead structure enhances grip. They are cost-effective and latex-free.

Fingertip-Coated ESD Gloves:
The coating is applied only to the fingertips. They allow for the operation of capacitive touchscreen devices. The gloves provide excellent static control on the surface.

Product Information

We offer customization services for the following:

  • Custom liner materials
  • Custom coating options
  • Custom packaging options
  • Custom product design and mass production

The minimum order quantity is 10,000 pairs/800 dozen. For special styles, the MOQ can be as low as 1,200 pairs (depending on the style).

Please contact our sales team for details.

Work gloves should be stored in a dry, well-ventilated, and cool environment, away from heat, moisture, and direct sunlight. The ideal storage temperature is typically between **10°C–25°C**. Excessively high temperatures can cause the rubber, nitrile, or coating to age, become sticky, or crack, thereby reducing protective performance.

When measuring glove sizes, first use a soft tape measure to measure palm circumference at the widest point (excluding the thumb), then measure hand length from the base of the middle finger to the fingertip. Refer to the size chart based on these two measurements to select sizes such as S, M, L, or XL. If the palm circumference and finger length correspond to different sizes, generally prioritize the palm circumference and choose a tighter or roomier fit based on personal preference.

FAQ

How do nitrile ESD gloves differ from standard ESD gloves?

In addition to providing antistatic and static-dissipative properties, nitrile-coated ESD gloves offer excellent abrasion resistance. They also provide superior grip in challenging environments such as wet or oily conditions. During routine tasks involving frequent use, gloves are subject to wear. Gloves with poor abrasion resistance may gradually lose their static protection capabilities. The nitrile coating effectively enhances durability.

The ESD001 utilizes a high-gauge seamless knit construction. The gloves are lightweight and form-fitting, providing enhanced tactile sensitivity. At the same time, the nitrile coating offers excellent grip. These gloves are suitable for tasks involving handling or assembling small parts and are suitable for extended wear.

The ESD001 is suitable for cleanroom use. The gloves are made from low-lint nylon material. They are low-shedding, helping reduce particle contamination and static effects. Combined with the nitrile coating—which has undergone vulcanization and washing processes—the gloves maintain structural stability and are less likely to release particles or chemical residues during use. The gloves have also undergone rigorous testing and are suitable for demanding cleanroom processing environments.

The ESD001 offers multiple protective features, including excellent static dissipation and grip. It also provides cut resistance. It is suitable for electronics manufacturing, aerospace applications, and precision instrument assembly and testing. It is also suitable for industries such as oil and gas and automotive, where it helps reduce safety risks associated with static sparks.

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