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  • Left Thread SFU1604 SFU1605 SFU1610 Single Nut Ball Screw C7 1604 1605 Ball Screw 1610 Ball Screw for 3D Printer
  • Left Thread SFU1604 SFU1605 SFU1610 Single Nut Ball Screw C7 1604 1605 Ball Screw 1610 Ball Screw for 3D Printer
  • Left Thread SFU1604 SFU1605 SFU1610 Single Nut Ball Screw C7 1604 1605 Ball Screw 1610 Ball Screw for 3D Printer
  • Left Thread SFU1604 SFU1605 SFU1610 Single Nut Ball Screw C7 1604 1605 Ball Screw 1610 Ball Screw for 3D Printer
  • Left Thread SFU1604 SFU1605 SFU1610 Single Nut Ball Screw C7 1604 1605 Ball Screw 1610 Ball Screw for 3D Printer
Left Thread SFU1604 SFU1605 SFU1610 Single Nut Ball Screw C7 1604 1605 Ball Screw 1610 Ball Screw for 3D Printer
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Left Thread SFU1604 SFU1605 SFU1610 Single Nut Ball Screw C7 1604 1605 Ball Screw 1610 Ball Screw for 3D Printer

$17.98-$50.82/ Piece|1 Piece/Pieces(Min. Order)

Customization:

Customized logo(Min.Order: 100 pieces)
Customized packaging(Min.Order: 100 pieces)
Graphic customization(Min.Order: 100 pieces)

Left Thread SFU1604 SFU1605 SFU1610 Single Nut Ball Screw C7 1604 1605 Ball Screw 1610 Ball Screw for 3D Printer

Product overview

Core functionalities

Applicable scenarios

Unique advantages

  • High-Precision Linear Motion Conversion: Converts rotational movement into smooth linear motion with C7 precision, ideal for 3D printers, CNC machines, and robotics.
  • Durability and Load Capacity: Constructed from S55C carbon steel, ensuring strength and resistance to wear for heavy-duty applications.

Key features

  • 1. High-Strength S55C Steel Construction

  • With S55C carbon steel material, you can achieve exceptional durability and load-bearing capacity, outperforming lower-grade steel components in demanding mechanical applications.

  • 2. Precision C7 Grade for Minimal Backlash

  • With C7 precision-grade manufacturing, you can ensure smooth, accurate linear motion with minimal backlash, surpassing C10-grade ball screws in precision-critical applications like 3D printing.

  • 3. Customizable Length for Versatile Applications

  • With customizable length options, you can tailor the ball screw to fit specific machinery requirements, unlike fixed-length models that limit design flexibility.

  • 4. Optimized for 3D Printers and CNC Machines

  • With a design engineered for precision linear motion, you can achieve high-accuracy positioning in 3D printers and CNC systems, enabling consistent performance in industrial workflows.

  • 5. Corrosion-Resistant Stainless Steel Components

  • With stainless steel linear bearings and flanged mounting design, you can maintain operational integrity in corrosive or dusty environments, outlasting standard all-steel assemblies.

Product details

Left Thread SFU1604 SFU1605 SFU1610 Single Nut Ball Screw C7 1604 1605 Ball Screw 1610 Ball Screw for 3D Printer

The SFU1604/SFU1605/SFU1610 single nut ball screw system combines precision engineering with customizable design, tailored for 3D printers, CNC machines, and robotics. Crafted from S55C carbon steel, these components ensure durability and smooth linear motion with C7 precision.

Technical specifications

FeatureSpecificationApplication Scenario
MaterialS55C carbon steelHigh-strength applications requiring wear resistance
PrecisionC7 (ISO 3408)CNC machining, robotics, and 3D printing
Thread TypeMetric thread (M16)Standardized compatibility with global machinery
LengthCustomizableAdaptable to specific machine dimensions
Nut TypeSingle nutCost-effective positioning in light-duty systems
Weight2 kg (base model)Lightweight for easy integration

Customization guide

Adjustable parameters:

  • Length: Tailor to fit machine frames (e.g., 200–1000 mm for 3D printers).
  • Thread Pitch: Choose from 2, 3, or 4 mm for varying speed requirements.
  • Bearing Size: Pair with flanged linear bearings for precise alignment.

Get inspired

With the SFU series, you can achieve smooth, backlash-free motion in 3D printers or robotics. The corrosion-resistant S55C steel ensures longevity even in humid environments, while the C7 precision guarantees repeatable accuracy for CNC applications.

Choose your model

ParameterBase ModelAdvanced ModelPro Model
Load Capacity2,000 N+25% (2,500 N)+50% (3,000 N)*
PrecisionC7C5C4
Corrosion ResistanceUncoatedZinc-platedStainless Steel

Supplier's note

  1. Technical Breakthroughs:

    • C7 Precision: Enables sub-micron accuracy for 3D printer nozzles.
    • S55C Material: 20% stronger than generic carbon steel, reducing deformation under load.
    • Customizable Length: Reduces assembly errors in bespoke machinery.
  2. Version Selection Guide:

    • Base Model: Ideal for hobbyist 3D printers or low-load robotics.
    • Advanced Model: Suitable for industrial 3D printers needing enhanced durability.
    • Pro Model: Perfect for harsh environments (e.g., chemical labs) with its stainless steel coating and C4 precision.

With the Pro version’s stainless steel coating, you can operate in corrosive settings without compromising performance. Pair its C4 precision with high-torque motors to achieve micron-level accuracy in CNC engraving. The Advanced Model’s zinc plating offers cost-effective corrosion protection for mid-tier industrial use.

Frequently asked questions

  • Which Left Thread SFU1604/SFU1605/SFU1610 Ball Screw model is best for high-precision 3D printers?

  • How does the S55C material of the SFU1604 Ball Screw benefit 3D printer components?

  • Can the SFU1610 Ball Screw be customized for non-standard 3D printer lengths?

  • What’s the advantage of a single-nut design in SFU1605 Ball Screws for 3D printers?

  • How do I maintain the SFU1604 Ball Screw to prevent wear in 3D printers?

  • Is the C7 precision of SFU1610 Ball Screws sufficient for high-resolution 3D printing?

  • Why choose SFU1605 Ball Screws over lead screws for 3D printer Z-axis?

  • Does the SFU1610 Ball Screw require special mounting for 3D printer upgrades?

Product comparison

CategoryUsage ScenariosCharacteristicsAdvantagesDisadvantages
Material QualityIndustrial machinery, 3D printersIndustry: Carbon Steel (C45, 400 MPa yield strength)
Our Base: S55C (440 MPa) ▲ Our Advanced: Stainless Steel (SUS304, 520 MPa)
Base: Cost-effective strength; Advanced: Corrosion-resistant (ASTM A276)Base: Limited corrosion resistance; Advanced: Slightly heavier and costlier
Precision GradeCNC machines, RoboticsIndustry: C10 (±0.025mm/m)
Our Base: C7 (±0.015mm/m) ▲ Our Advanced: C5 (±0.010mm/m)
Base: Meets 3D printer needs; Advanced: Ideal for precision robotics (ISO 3408)Base: Higher backlash risk; Advanced: Higher cost
Nut ConfigurationAutomated assembly linesIndustry: Single Nut (backlash ~0.02mm)
Our Base: Single Nut ▲ Our Advanced: Double Nut (backlash <0.005mm)
Base: Lightweight and affordable; Advanced: Zero-backlash for high-precisionBase: Requires frequent alignment; Advanced: Complex installation
Customization OptionsCustom machinery buildsIndustry: Fixed lengths (ISO 9409)
Our Base: Custom lengths (up to 2m) ▲ Our Advanced: Custom lengths + thread pitch
Base: Flexible for most projects; Advanced: Tailored for niche applicationsBase: Longer lead times; Advanced: Higher customization cost
Weight/PortabilityPortable CNC setupsIndustry: 3kg (standard steel)
Our Base: 2kg (lightweight design) ▲ Our Advanced: 2.5kg (reinforced)
Base: Easier installation; Advanced: Enhanced durability without excessive weightBase: Lower load capacity; Advanced: Slightly heavier
Load CapacityHeavy industrial robotsIndustry: 500N (basic models)
Our Base: 800N (ISO 2304) ▲ Our Advanced: 1200N (heavy-duty)
Base: Suitable for 3D printers; Advanced: Supports heavy payloads (ASTM F42)Base: Limited to moderate loads; Advanced: Requires robust mounting

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