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Custom Cleaning Brush

Anti Static Brush

Anti Static Brush provides controlled brush contact for precision electronics and static-control cleaning across contacts, slots, and boards. Working width, brush geometry, mounting, and fill are set around the machine path and the way lint, oxide, and flux residue must be released or carried away.

Anti Static Brush cleaning brush
Made to OrderDimensions, fill, density and interface configured to the project
Brush TypeCustom Roller and Conveyor Brushes
ApplicationsConnector & Slot CleaningPCB CleaningPrinter & Scanner CleaningSemiconductor Wafer & Chip Cleaning
MaterialsConductive NylonAnti-static FilamentNylon PA

Product Features

Static dissipation during cleaning — Conductive or dissipative filaments provide a controlled path for electrostatic charge while dust is removed.

Low-abrasion contact for sensitive parts — Conductive nylon or other specified antistatic filament removes dust from boards, sensors, films, and optics without metal-wire scraping.

Narrow access between components — Slim heads reach connector rows, terminals, slots, and densely assembled electronic areas.

Grounding-ready construction — Conductive handles, metal channels, grounding leads, or machine mounting can be incorporated to maintain electrical continuity.

Filament density matched to particle size — Fine, closely spaced fibers collect light dust, while firmer fill can move larger fibers and production debris.

Configured for the ESD workstation or machine — Head width, trim, resistance range, handle, grounding method, and mounting can be customized.

Product Overview

Anti Static Brush is used where repeatable contact is needed across contacts, slots, and boards rather than isolated hand cleaning. The active brush face clears lint, oxide, and flux residue while the holder, shaft, plate, or hub stays outside the interference path and supports the required working width. The brush must control contact load, particle shedding, conductivity, and access to fine features.

Key dimensions start with Brush head diameter 5–200 mm and Brush head length 5–200 mm. The brush uses a roller and conveyor structure to maintain contact along the required working width. The specified interface is shaft-mounted / flange. Conductive Nylon, Anti-static Filament, and Nylon PA are the principal material directions in the current specification. Powered brush selection requires the actual shaft or hub details and the speed used by the equipment.

Technical Specifications

Head width5–200 mm
Trim length10–40 mm
Carbon or metal fiber diameter0.008–0.012 mm
Conductive nylon diameter0.045 mm
resistance10³–10⁹ Ω
MountingGrounded handle, strip, plate, or machine holder
Contact settingUse 0.5–3 mm engagement or a surface load below 2 N/cm² on fragile substrates.
ESD resistance10³–10⁹ ohms where required
Electrical resistance10³–10⁹ ohms, selected for conductive or static-dissipative duty
Fill materialsConductive Nylon, Anti-static Filament, and Nylon PA
Cleaning zoneprecision electronics and static-control cleaning
Contact surfacecontacts, slots, boards, terminals, optical end faces, films, carriers, and precision housings
Residue classlint, oxide, flux residue, polishing particles
Access and motionthe brush must control contact load, particle shedding, conductivity, and access to fine features
Cleaning dutyprecision electronics, static-control cleaning on contacts, slots, boards, terminals
Variant configurationAnti Static Brush: strip, roller, hand-held construction with Conductive Nylon, Anti-static Filament, Nylon PA fill for precision electronics and static-control cleaning on contacts, slots, boards, terminals.

Application Areas

Anti Static Brush is primarily mapped to Connector & Slot Cleaning. When adapting this brush to another job, confirm the workpiece surface, how debris will leave the area, and the required finish.

  • Anti Static Brush is best suited to electronics, connector, PCB, battery, cleanroom, terminal, slot, and static-control cleaning.
  • The antistatic, conductive, PVA, abrasive, plate, disc, or precision roller brush follows contacts, slots, housings, boards, terminals, film, precision holes, and equipment surfaces while the fill displaces dust, lint, oxide, flux residue, particles, and static-attracted contamination.
  • Use this configuration when the available access supports low-load contact on electronics, connectors, PCB, battery, ceramic, or semiconductor surfaces.

Selection Guidance

Structure fit

Match the roller and conveyor brush geometry to contacts, slots, and boards, the available access, and powered operation. Confirm Brush head diameter 5–200 mm and Brush head length 5–200 mm against the complete working envelope before finalizing the brush.

Contact material

Choose from Conductive Nylon, Anti-static Filament, and Nylon PA according to the behavior of lint, oxide, and flux residue, the surface sensitivity, and any wet, chemical, temperature, or hygiene requirements. Choose stiffness by looking at filament size, free trim length, and density together with the material.

When to use another solution

For Anti Static Brush, use another cleaning method when lint, oxide, and flux residue cannot be released by controlled filament contact, when contacts, slots, and boards cannot tolerate the selected contact material, or when the access path prevents safe engagement and residue removal.

Customization Options

Brush Head Diameter (mm)5–200 [Industry Reference Range; Legacy Source]
Brush Head Length (mm)5–200 [Industry Reference Range; Legacy Source]
Handle Length (mm)Not Applicable (No separate handle in this product configuration)
Handle Grip Diameter (mm)Not Applicable (No explicit grip or handle-diameter dimension in the product specification)
Bristle MaterialConductive Nylon, Anti-static Filament, Nylon PA
Handle Material304 Stainless Steel
Mounting / InterfaceShaft-Mounted / Flange
Grip StyleNot Applicable (Machine-Mounted Brush)
ColorCustom PANTONE Color ([Industry Reference Range])
Logo ProcessLaser Engraving / Screen Printing / Pad Printing ([Industry Reference Range])
Surface TreatmentSmooth / Textured / Overmolded / Coated (Depending on Substrate; [Industry Reference Range])

Frequently Asked Questions

How should Anti Static Brush be selected?

Start with electronics, connector, PCB, battery, cleanroom, terminal, slot, and static-control cleaning, contacts, slots, housings, boards, terminals, film, precision holes, and equipment surfaces, and dust, lint, oxide, flux residue, particles, and static-attracted contamination. Then set Head width, Trim length, and Carbon or metal fiber diameter, choose the fill from the material and residue table, and match the mounting interface and operating condition.

Which dimensions define Anti Static Brush?

The primary dimensions are Head width (5–200 mm), Trim length (10–40 mm), and Carbon or metal fiber diameter (0.008–0.012 mm). Also provide the minimum clearance, working envelope, trim or engagement, and the existing holder, shaft, stem, thread, or handle.

Which filament or contact material is used for Anti Static Brush?

The primary options are Conductive Nylon, Anti-static Filament, and Nylon PA. The final choice follows surface sensitivity, residue adhesion, wet or dry use, temperature, chemicals, conductivity, and required cutting action.

When is Anti Static Brush not the best cleaning method?

Anti Static Brush is not the first choice for ionized air, vacuum, PVA sponge, megasonic, wipe, or solvent cleaning where bristle contact is unsuitable.

What information is required to quote Anti Static Brush?

Send the part or machine drawing, photos of contacts, slots, housings, boards, terminals, film, precision holes, and equipment surfaces, Head width, Trim length, Carbon or metal fiber diameter, and Conductive nylon diameter, the residue description, wet or dry conditions, motion or use method, temperature, preferred Conductive Nylon, Anti-static Filament, and Nylon PA, quantity, and the existing interface or sample.

Custom Manufacturing RFQ

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An accurate custom quote starts with the dimensions, working surface, residue, material choice, connection, quantity, and reference files.

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