{{ 'fb_in_app_browser_popup.desc' | translate }} {{ 'fb_in_app_browser_popup.copy_link' | translate }}
{{ 'in_app_browser_popup.desc' | translate }}
BMF microArch S230A is a professional ultra-high precision 3D printer using Projection Micro Stereolithography (PµSL) technology. 2 micrometer optical precision, supports photosensitive resin and ceramic slurry. Layer thickness 5-20μm, maximum build space 50mm(L)×50mm(W)×50mm(H) (5x higher than S130
Not enough stock.
Your item was not added to your cart.
Not enough stock.
Please adjust your quantity.
{{'products.quick_cart.out_of_number_hint'| translate}}
{{'product.preorder_limit.hint'| translate}}
Limit {{ product.max_order_quantity }} per order.
Only {{ quantityOfStock }} item(s) left.
The BMF microArch S230A is a professional ultra-high precision 3D printer using the patented Projection Micro Stereolithography (PµSL) technology. The S230A offers 2 micrometer optical precision and supports both photosensitive resin and ceramic slurry, making it an upgraded version of the nanoArch S130 with significantly larger build height (50mm vs 10mm) and stronger industrial-grade capabilities.
The microArch S230A features automated workflow, three build modes, and industrial-grade stability, ensuring precision and consistency of each print.
The microArch S230A offers 2 micrometer optical precision, the industry's highest precision standard. This enables printing of extremely fine structures, such as:
The microArch S230A supports both photosensitive resin and ceramic slurry, providing more material choices and application possibilities:
The microArch S230A achieves a build height of 50mm, 5 times larger than the nanoArch S130's 10mm. This enables printing of more complex, taller structures, such as:
The microArch S230A offers three build modes to meet different application requirements:
The microArch S230A features automated workflow, including:
The microArch S230A features industrial-grade stability, including:
The microArch S230A supports 5-20μm ultra-low layer thickness, allowing selection of optimal thickness based on application requirements, achieving maximum precision and surface quality.
The microArch S230A comes with powerful printing and slicing software supporting complex designs, optimization, and industrial-grade workflows.
| Specification Item | Parameter |
|---|---|
| Light Source | UV-LED (405nm) |
| Optical Precision | 2μm |
| Layer Thickness | 5-20μm |
| Build Size (Mode 1) | 3.84mm(L) × 2.16mm(W) × 50mm(H) |
| Build Size (Mode 2) | 50mm(L) × 50mm(W) × 50mm(H) |
| Build Size (Mode 3) | 50mm(L) × 50mm(W) × 50mm(H) |
| External Dimensions | 1720mm(L) × 750mm(W) × 1820mm(H) |
| Total Weight | 660kg |
| Power Supply | 220-240V / 50-60Hz / 2kW |
| Print File Format | STL |
| Printing Material | Photosensitive Resin, Ceramic Slurry |
The microArch S230A is ideal for biomedical chip manufacturing, capable of printing:
The microArch S230A supports ceramic slurry, capable of printing precision ceramic parts:
The ultra-high precision of the microArch S230A makes it ideal for precision optics applications:
The microArch S230A can print various precision industrial parts:
The microArch S230A is widely used in research institutions and universities for:
| Feature | microArch S230A | nanoArch S130 |
|---|---|---|
| Precision | 2μm | 2μm |
| Build Height | 50mm | 10mm |
| Max Build Size | 50×50×50mm | 50×50×10mm |
| Supported Materials | Photosensitive Resin, Ceramic Slurry | Photosensitive Resin |
| Build Modes | 3 (Single Projection, Stitching, Array) | 3 (Single Projection, Stitching, Array) |
| Automation Level | Industrial-Grade Automation | Standard Automation |
| Application Fields | Biomedical Chips, Precision Ceramics, Industrial Parts | Micro-Mechanics, Microfluidics, Optics |
| Applicable Scenarios | Industrial Production, Complex Multi-Layer Structures | Research Applications, Micro-Nano Structures |
If you are looking for industry-leading biomedical chip and precision industrial parts solutions, the BMF microArch S230A is your best choice. Contact QTS Taiwan today to learn more.