
- H2D and H2D Laser / 0.2mm Stainless Steel

- Jade White (10100)
- Bambu Green (10501)
- Red (10200)
- Blue (10601)
- Gray (10103)
- Black (10101)
- Sunflower Yellow (10402)
- Indigo Purple (10701)
- Hot Pink (10204)
- Pumpkin Orange (10301)
- Cocoa Brown (10802)
- MistletoeGreen (10502)
- Cyan (10603)

- Red (33200)
- Blue (33600)
- Black (33102)
- White (33100)
- Gray (33101)

- White (65104)

- Clear (66400)

(TPU 85A must be printed with 0.6/0.8mm nozzle)
- Frozen (51900)
- Blaze (51901)
- Black (51103)
- White (51105)
- For the first batch, there is a temporary purchase limit of one machine per customer.
- Order will be shipped out from DE warehouse in 1-3 business days once being processed.
- Shipping rates vary by locations. See our Shipping policy for details.




































Item | Specification | |
Printing Technology | Fused Deposition Modeling | |
Body | Build Volume (W*D*H) | Single Nozzle Printing: 325*320*325 mm³ Dual Nozzle Printing: 300*320*325 mm³ Total Volume for Two Nozzles: 350*320*325 mm³ |
Chassis & Shell | Aluminum, Steel, Plastic and Glass | |
Laser Safety Windows | Equipped on Laser Edition, normal H2D can upgrade through Laser Upgrade Kit | |
Air Assist Pump | Equipped on Laser Edition, normal H2D can upgrade through Laser Upgrade Kit | |
Physical Dimensions | Physical Dimensions | 492*514*626 mm³ (Package size:620*620*755mm³) |
Net Weight | 31 kg (Gross weight:H2D: 38.5 kg; H2D AMS Combo: 42.3 kg; H2D Laser Full Combo: 46.2 kg) |
|
Toolhead | Hotend | All Metal |
Extruder Gear | Hardened Steel | |
Nozzle | Hardened Steel | |
Max Nozzle Temperature | 350 °C | |
Included Nozzle Diameter | 0.4 mm | |
Supported Nozzle Diameter | 0.2 mm, 0.4 mm, 0.6 mm, 0.8 mm | |
Filament Diameter | 1.75 mm | |
Extruder Motor | Bambu Lab High-precision Permanent Magnet Synchronous Motor | |
Heatbed | Supported Build Plate Type | Textured PEI plate, Smooth PEI Plate |
Max Heatbed Temperature | 120 ℃ | |
Speed | Max Speed of Toolhead | 1000 mm/s |
Max Acceleration of Toolhead | 20,000 mm/s² | |
Max Flow for Hotend (Standard Flow Hotend) |
40 mm³/s(Test parameters: 250 mm round model with a single outer wall; Bambu Lab ABS; 280 °C printing temperature) |
|
Max Flow for Hotend (Optional High Flow Hotend) |
65 mm³/s(Test parameters: 250 mm round model with a single outer wall; Bambu Lab ABS; 280 °C printing temperature) |
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Chamber Temperatur Control | Active Chamber Heating | Supported |
Max Temperature | 65 °C | |
Air Purification | Pre-filter Grade | G3 |
HEPA Filter Grade | H12 | |
Activated Carbon Filter Type | Granulated Coconut Shell | |
Cooling | Part Cooling Fan | Closed Loop Control |
Auxiliary Part Cooling Fan | Closed Loop Control | |
Chamber Heat Circulation Fan | Closed Loop Control | |
Cooling Fan for Hotend | Closed Loop Control | |
Main Control Board Fan | Closed Loop Control | |
Chamber Exhaust Fan | Closed Loop Control | |
Supported Filament Type | PLA, PETG, TPU, PVA, BVOH, ABS, ASA, PC, PA, PET, Carbon/Glass Fiber Reinforced PLA, PETG, PA, PET, PC, ABS, ASA, PPA CF/GF, PPS, PPS CF/GF |
Supported |
Sensor | Live View Camera | Built-in; 1920*1080 |
Nozzle Camera | Built-in; 1920*1080 | |
BirdsEye Camera | Built-in; 3264*2448(Equipped with Laser Edition) | |
Toolhead Camera | Built-in; 1920*1080 | |
Door Sensor | Supported | |
Filament Run Out Sensor | Supported | |
Filament Tangle Sensor | Supported | |
Filament Odometry | Supported with AMS | |
Power Loss Recovery | Supported | |
Electrical Requirements | Voltage | 100-120 VAC / 200-240 VAC, 50/60 Hz |
Max Power* | 2200 W@220 V / 1320 W@110 V | |
Average Power | 1050 W@220 V / 1050 W@110 V | |
Electronics | Touchscreen | 5-inch 720*1280 Touchscreen |
Storage | Built-in 8 GB EMMC and USB Port | |
Control Interface | Touchscreen, mobile App, PC App | |
Neural Processing Unit | 2 TOPS | |
Software | Slicer & Software | Bambu Studio, Bambu Suite, Bambu Handy Supports third-party slicers which export standard G-code, such as Super Slicer, PrusaSlicer and Cura, but certain advanced features may not be supported. |
Supported Operating System | MacOS, Windows | |
Wi-Fi | Operating Frequency | 2412-2472 MHz, 5150-5850 MHz (FCC/CE) 2400-2483.5 MHz, 5150-5850 MHz (SRRC) |
Wi-Fi Transmitter Power (EIRP) | 2.4 GHz: <23 dBm (FCC); <20 dBm (CE/SRRC/MIC) 5 GHz Band1/2: <23 dBm (FCC/CE/SRRC/MIC) 5 GHz Band3: <30 dBm (CE); <24 dBm (FCC) 5 GHz Band4: <23 dBm (FCC/SRRC); <14 dBm (CE) |
|
Wi-Fi Protocol | IEEE 802.11 a/b/g/n | |
10W & 40W Laser Module |
Laser Type | Semiconductor Laser |
Laser Wavelength | Engraving Laser: 455 nm ± 5 nm Blue Light Height Measuring Laser: 850 nm ± 5 nm Infrared Light |
|
Laser Power | 10 W ± 1 W; 40 W ± 2 W | |
Laser Spot Dimension | 10W: 0.03 mm * 0.14 mm; 40W: 0.14 mm * 0.2 mm | |
Working Temperature | 0 °C–35 °C | |
Max Engraving Speed | 10W: 400 mm/s; 40W: 1000 mm/s | |
Max Cutting Thickness | 10W: 5 mm; 40W: 15mm (Basswood Plywood) | |
Laser Safety Class for Laser Module | Class 4 | |
Overall Laser Safety Class* | Class 1 | |
Engraving Area | 10W: 310 mm * 270 mm; 40W: 310 mm * 250 mm | |
XY Positioning Accuracy | < 0.3 mm | |
Z Height Measuring Method | Micro Lidar | |
Z Height Measuring Accuracy | ± 0.1 mm | |
Flame Detection | Supported | |
Temperature Detection | Supported | |
Door Sensor | Supported | |
Laser Module Installation Detection | Supported | |
Safety Key | Included | |
Ventilation Pipe Adapter Outer Diameter | 100 mm | |
Supported Material Type | Wood, rubber, metal sheet, lether, dark acrylic, stone, and more | |
Cutting Module | Cutting Area | 300*285 mm² |
Drawing Area | 300*255 mm² | |
Supported Pen Diameter | 10.5 mm-12.5 mm | |
Cutting Mat Type | LightGrip and StrongGrip Cutting Mats | |
Blade Type | 45°*0.35 mm | |
Blade Pressure Range | 50 gf-600 gf | |
Max Cutting Thickness | 0.5 mm | |
Blade and Pen Recognition | Supported | |
Cutting Mat Type Detection | Supported | |
Supported Image Type | Bitmap and Vector Images | |
Supported Material Type | Paper, vinyl, leather, and more |

H2D AMS Combo | H2D Laser Full Combo | H2D | |
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The H2D laser full combo has a built-in air pump and air pipe on the back of the printer, and is pre-installed with a BirdsEye camera. The front door, left and right side Laser Protective Windows, and top cover are all designed with laser protection. The packaging list includes a laser module, a cutting module, a smoke exhaust pipe and its adapter, as well as an emergency stop button.
We plan to launch a laser upgrade kit for the non-laser version of H2D. The upgrade kit is expected to be released in June and will also provide installation instructional videos to help users complete the upgrade smoothly.
It is important to note that the air pump in the upgrade kit is an external air pump, which has a different installation structure from the built-in air pump in the full set. When using it, it can only be installed externally and connected to the machine through an air tube.
Yes, the left and right hotends have identical structures and materials, and can be used interchangeably.
The H2D supports a maximum of 4 AMS 2 Pro and 8 AMS HT connected simultaneously, a total of 12 units with 24 slots.
Because H2D is a dual-hotend printer, and in the most extreme scenario, all AMS can be connected to one hotend while the other hotend uses an external spool holder, it can support up to 25 colors.
The first-generation AMS has been confirmed to have full plug-and-play compatibility and can be used with the H2D for multi-color printing, but it does not support the AMS drying function.
Due to the fundamental differences in the feeding mechanism and buffering structure, the H2D does not support the AMS lite.
The two 4-pin ports on the back are reserved for future expansion accessories. For example, to upgrade a non-laser version of the printer to a laser version, one of these ports can be used to connect an external air pump.
Although the hotend of the H2D series is similar to the A1 hotend in structure , it is not exactly the same.
The H2D hotends are specifically designed for the H2D printer, offering optimized compatibility. For example, they support a larger maximum volumetric flow rate, lower clogging risk, more precise nozzle offset calibration between the left and right hotends, and automatic hotend type recognition via the live camera. Therefore, to ensure optimal print quality, it is strongly recommended not to use A1 hotends on the H2D printer.
Therefore , to ensure you get the best print quality, we strongly recommend that you do not use the A1 hotend for H2D printers.
Purchasing additional H2D hotends for use on A1 printers is feasible. However, you will also need to use the H2D hotend silicone sock.
Both the 10W and 40W laser modules are blue light lasers that support processing a variety of materials, including wood, rubber, metal sheets, leather, dark acrylic, and stone. However, due to differences in power and size, there are the following distinctions:
- Maximum cutting thickness(For Basswood Plywood):
10W laser module: 5mm;
40W laser module: 15mm; - Maximum engraving speed(For Basswood Plywood):
10W laser module: 400mm/s ;
40W laser module: 1000mm/s ; - Processable Area:
10W laser module: Maximum processing area X310mm * Y270mm, maximum processing height 280mm;
40W laser module: Maximum processing area X310mm * Y250mm, maximum processing height 265mm;
The package does not include a standard USB flash drive. You can still initiate printing normally without a USB, as the printer has built-in storage space to run print files.However, without a USB inserted, the following functions will be affected:
1. The recording and time-lapse photography functions can't be turned on;
2. Printing cannot be initiated through the LAN;
3. Print files cannot be sent to the machine for storage through the studio;
4. Log files cannot be exported;
USB requirements: USB2.0 protocol or above (actual minimum write speed needs to be greater than 10M/s), supported file formats are FAT32 and exFAT. And the printer only supports mounting one USB, and cannot connect multiple USB via a USB hub.
The hotend to be used for printing has already been determined when the model file is sliced. As for the built-in models, the right hotend has been selected during the slicing process, so it is impossible to change the hotend used for printing on the printer screen.When you slice the file in Bambu Studio and send the print task , you can freely choose to use the left hotend or the right hotend. For some filaments, such as TPU and PPS/PPA-CF, it is recommended to use specific hotends for printing.
For more details on H2D filament printing, please check the wiki.
H2D is equipped with an efficient exhaust system that effectively removes smoke and dust generated by laser operations, significantly reducing contamination. During R&D, we conducted rigorous testing to ensure that with regular machine cleaning, the impact of smoke and dust on performance and precision is negligible. For detailed cleaning instructions, please refer to: wiki
Due to the flexible nature of TPU filaments, there are some operational issues that can arise during feeding and printing. To facilitate TPU printing, we have created a dedicated Wiki guide. Simply follow the instructions in the Wiki to successfully print with TPU filaments: wiki
Because laser processing involves using high-energy lasers on potentially flammable materials, we strongly advise users not to leave the machine unattended during laser operations. Please maintain constant vigilance over the machine's operational status and ensure that there are no flammable or explosive materials in the machine's surroundings. For more information please refer to: wiki
For more information about H2D, refer to the official wiki.