Same-Day via Grab / Lalamove Self Pick-up
Authorized DealerAuthorized Official Malaysia WarrantyMalaysia Warranty KL Showroom & ServiceKL Showroom

Search Results for: bambu lab heatbed

Bambu Lab ASA Filament 1kg 1.75mm

Bambu Lab ASA Filament 1kg 1.75mm – grey, turquoise, red spools

Product Features

  • Extraordinary UV Resistance
  • Exceptional Temperature Resistance
  • High Impact Strength and Durability
  • Outdoor Use for Long-Term Purpose
  • Comes with High Temperature Reusable Spool
  • Diameter: 1.75mm +/- 0.03mm


Cautions for Use

  • AMS Compatible
  • AMS lite NOT Compatible
  • Enclosure Printers Required

Bambu Lab PA6 GF Filament 1kg 1.75mm

Bambu Lab PA6-GF 1.75mm 1kg glass fiber filament

Product Features

  • Built to Last
  • Dimensional Stability
  • Exceptional Thermal Properties
  • Chemical Resistance
  • Smooth Surface and More Colors
  • Diameter: 1.75mm +/- 0.03mm


Cautions for Use

  • 0.2 mm Nozzle Not Compatible
  • Stainless Steel Nozzle Not Recommended
  • Enclosure Printers Required
  • AMS Compatible
  • AMS lite NOT Compatible
  • Dry before Use

Bambu Lab X1 Heated Bed Unit V3

Bambu Lab X1 Series Heated Bed Unit V3
Manufacturer Part Number: FAC058 / SPP060
Compatibility: X1 Series (X1, X1C, X1E)
Material: Plastic, Metal
Color: Black
Packaging Weight: 1.69 kg
Packaging Size: 319 × 341 × 51 mm
Product Dimensions: 319 × 341 × 51 mm
Product Weight: 2.08 kg
Functionality: Moves up and down along the Z-axis; heated based on user-defined temperature
Features: Enhanced model adhesion; prevents warping; user-friendly replacement

Bambu Lab PLA Lite 1.75mm 1kg

Bambu Lab PLA Lite 1.75mm filament, ready stock.
Key Specifications
Printing Temperature 190–230 ºC
Bed Temperature 60 ºC
Printing Speed < 300 mm/s
Chamber Temperature 25–45 ºC
Density 1.4 g/cm³
Heat Distortion Temperature 60 ºC
Melt Flow Index 13.8 g/10 min
Tensile Strength 32 ± 5 MPa
Elongation at Break 11.2 ± 3.1 %
Flexural Strength 51 ± 3 MPa
Flexural Modulus 2240 ± 120 MPa
Impact Strength 19.0 ± 3.7 kJ/m²

Bambu Lab PLA Matte PLA Filament 1.75mm 1kg

Bambu Lab Matte PLA 1.75mm 1kg filament spool
Key Specifications
Printing Temperature 190–230 ºC
Bed Temperature 35–45 ºC
Printing Speed < 300 mm/s
Chamber Temperature 25–45 ºC
Density 1.31 g/cm³
Heat Distortion Temperature 58 ºC
Melt Flow Index 39.4 ± 3.2 g/10 min
Tensile Strength 30 ± 5 MPa
Elongation at Break 14.8 ± 4.2 %
Flexural Strength 53 ± 6 MPa
Flexural Modulus 2360 ± 250 MPa
Impact Strength 19.2 ± 3.7 kJ/m²

Bambu Lab PETG CF Filament 1KG 1.75mm

Bambu Lab PETG CF 3D printer filament spools
Key Specifications
Specific Requirement Hardened Steel Nozzle
Nozzle Temperature 240–270 ºC
Bed Temperature 65–75 ºC
Printing Speed < 200 mm/s
Chamber Temperature 35–50 ºC
Density 1.25 g/cm³
Heat Distortion Temperature 68 ºC (1.8 MPa)
Tensile Strength 35 ± 5 MPa
Elongation at Break 10.4 ± 0.6 %
Flexural Strength 70 ± 5 MPa
Flexural Modulus 2910 ± 260 MPa
Impact Strength 41.2 ± 2.6 kJ/m²

Bambu Lab A1 Series – Affordable Speed & Precision in One

Bambu Lab A1 Series – Affordable Speed & Precision in One

Product Feature

  • Full-auto calibration for effortless setup and precise printing
  • Supports multi-color printing (Combo version) for creative expression
  • Active flow rate compensation ensures consistent extrusion
  • Quick-swap nozzle with 1-clip design for fast maintenance
  • Advanced motor noise cancellation for quieter operation
  • Spacious 256×256×256 mm³ build volume for larger prints
  • Upgraded heatbed cable with Kevlar, nylon sleeving, and reinforced strain relief for durability

Bambu Lab PLA CF Carbon Fiber Filament – 1KG 1.75mm with RFID, High-Speed Easy-to-Print

Bambu PLA-CF Carbon Fiber Filament 1.75mm RFID 1KG, high-speed print.

Bambu Lab PLA-CF Carbon Fiber Filament 1.75mm 1KG – High Rigidity Matte Finish for Engineering and Prototyping Bambu Lab PLA-CF is a carbon fiber reinforced PLA filament that combines the easy printability of standard PLA with significantly improved mechanical properties. The chopped carbon fibers increase bending strength by up to 68% and bending modulus by […]