BIGTREETECH BTT Octopus Max EZ for 3D Printer
- Product Code: EPI29054
- Availability: 3
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Rs.7175.00
- (Excluding 18% GST)
OR
BIGTREETECH Octopus MAX EZ, a 32-bit motherboard, is an upgraded version of Octopus Pro developed by the 3D printing team of BTT Its self-developed stepper motor sockets enhance safety and user experience, and it adds a series of features that Octopus Pro does not have, greatly enhancing its DIY capabilities. BIGTREETECHs Octopus Max EZis a 32-bit motherboard with many interfaces for versatile upgrade possibilities. The main board is compatible with Klipper and Marlin as well as with a Raspberry Pi.
BIGTREETECH BTT Octopus Max EZ meets the normal operating requirements, but besides these, it also supports various improvements such as upgrading to a dual extruder or running the EZ-MAX31865. It also serves as a replacement in case of a burned-out driver port. The main board is equipped with fail-safe EZ drivers, and has a protected chip and a pinless design, making it extra safe to use.The 32-bit 550MHz ARM Cortex-M7 STM32H723ZET6 microcontroller is compatible with both Marlin and Klipper.
Note: Refer to Manual in the ATTACHMENTS section for more info. regd. the product.
Features:
- 10 driver ports for versatile applications
- PS5450-5A enables direct power supply with a Raspberry Pi
- eFuse for a fast response and precise protection
- CNC fan voltage is freely selectable between 5, 12 and 24 V
- 3 x 4 pins fan port designed for water cooling
- 550MHz ARM Cortex-M7 STM32H723ZET6
Package Includes:
1 x BIGTREETECH BTT Octopus Max EZ for 3D Printer
1 x DIY Crimp Terminal Set
20 x 2.54mm Black Jumper
20 x 2.0mm Black Jumper
1 x 50cm USB2.0 Type-C Data Cable
Attachments :
DownloadBrand/Manufacturer | Generic |
Country Of Origin | China |
Packer / Importer Address | Constflick Technologies Limited, Building No 13 and 14, 3rd Floor, 2nd Main, Siddaiah Road, Bangalore, Karnataka - 560027 India. |
MRP | Rs. 0 (Inclusive of all Taxes) |
* Product Images are shown for illustrative purposes only and may differ from actual product.