Makerbase Monster8 V2

Makerbase MKS Monster8 V2 32-Bit Control Board User Manual

Model: Monster8 V2 | Marca: Makerbase

1. Producte acabatview

The Makerbase MKS Monster8 V2 is an advanced 32-bit control board designed for large 3D printers, offering extensive compatibility and robust features. It is an upgraded version of the MKS Monster8 V1, featuring significant improvements in protection and functionality. This board is suitable for DIY enthusiasts and professionals seeking flexible and powerful control over their 3D printing projects.

Makerbase MKS Monster8 V2 Control Board with 8 TMC2209 drivers

Figure 1: Makerbase MKS Monster8 V2 Control Board with included TMC2209 drivers.

2. Característiques clau

MKS Monster8 V2 board highlighting 8 stepper drivers and 9 motor interfaces

Figure 2: The MKS Monster8 V2 board supports 8 stepper drivers and 9 motor interfaces for versatile configurations.

Close-up of the STM32F407VET6 microcontroller on the MKS Monster8 V2

Figure 3: The high-performance STM32F407VET6 main control chip ensures efficient operation.

MKS Monster8 V2 board showing fan and power output interfaces

Figure 4: Intensive interfaces for DIY, including 3 PWM fan headers and 3 power output headers.

3. Configuració i instal·lació

3.1 Instal·lació del controlador

The MKS Monster8 V2 supports various stepper motor drivers. Ensure correct orientation and secure seating when installing drivers into the dedicated slots.

Illustration of stepper motor drivers being inserted into the MKS Monster8 V2 board

Figure 5: Proper insertion of stepper motor drivers into the mainboard.

Close-up of a stepper motor driver with a blue heatsink

Figure 6: Heatsinks are crucial for excellent heat dissipation from the drivers.

Diagram showing dimensions and specifications for a stepper motor driver

Figure 7: Detailed dimensions and electrical specifications for the stepper motor drivers.

Table illustrating microstep settings for TMC2209 drivers

Figure 8: Microstep setting configurations for TMC2209 drivers.

3.2 Firmware Installation

The MKS Monster8 V2 supports Marlin 2.0.x and Klipper firmware. For optimal performance and compatibility, it is recommended to update the firmware from the official Makerbase GitHub repository. A Klipper host, such as a Raspberry Pi or MKS PI, is required for Klipper firmware.

For detailed instructions and firmware files, visit the Makerbase MKS-Monster8 GitHub page.

3.3 Connexió a la font d'alimentació

The motherboard is equipped with a TVS power supply anti-reverse and spike protection chip to prevent damage from incorrect power connections. If the positive and negative poles of the power supply are reversed, the motherboard will not function. Always double-check wiring before powering on.

Video 1: Demonstration of the power supply anti-reverse protection. The video shows that if the power supply is connected in reverse, the board will not power on, preventing damage. It also shows how to correctly connect the power supply.

The Monster8 V2 also provides a dedicated DC5.1V/3A power output for Raspberry Pi. This ensures a stable power supply, preventing common "Currently Throttled" errors that can occur with unstable power to the Raspberry Pi.

Diagram highlighting the DC5.1V/3A power supply designed for Raspberry Pi on the MKS Monster8 V2 board.

Figure 9: The dedicated DC5.1V/3A power supply for Raspberry Pi ensures stable operation and prevents throttling issues.

4. Instruccions de funcionament

Once the board is correctly installed and firmware is loaded, you can begin operating your 3D printer. The board supports U disk printing, allowing for convenient file transfer and printing.

4.1 Visualització i control

Connect your preferred LCD or touch screen display to the EXP1/EXP2 interfaces. These displays provide a user interface for controlling printer movements, monitoring temperatures, and managing print jobs.

4.2 Funcions avançades

Utilize the DFU mode button for firmware flashing. Configure driver power selection (5V or 3.3V) and set up TMC UART and SPI modes for advanced stepper motor control. The SENSORLESS_HOMING function can be configured using the Diag0-5 pins.

MKS Monster8 V2 board showing UART, SPI, and Normal STEP/DIR modes for drivers.

Figure 10: The board supports various driver modes including UART, SPI, and Normal STEP/DIR for flexible control.

5. Maintenance and Protection

The MKS Monster8 V2 is built with several protective features to ensure longevity and reliability.

5.1 Fuse Protection

The board includes plug-in fuses that provide overcurrent protection, safeguarding the motherboard wiring effectively.

MKS Monster8 V2 board highlighting the added plug-in fuses for protection.

Figure 11: Plug-in fuses are added to the motherboard for enhanced protection.

5.2 Back EMF Protection

A dedicated protection circuit is integrated to handle back electromotive force (EMF) generated by stepper motors, significantly reducing potential damage to the motor drivers. This is particularly important when the print head is manually moved or encounters resistance.

Video 2: Demonstration of back EMF protection. The video shows a Voron printer's print head being moved manually, generating back EMF, and the board's protection circuit preventing damage, allowing normal operation after power-on.

5.3 Protecció ESD

The motherboard's MOS drive circuit and temperature measurement circuit are protected by Schottky diodes to reduce damage from external static electricity spikes to the input/output (IO) pins.

Video 3: Anti-static test of the motherboard. The video demonstrates applying 4kV static electricity to the heating head interface and temperature measurement interface, showing the board continues to function normally due to its robust protection.

6. Solució De Problemes

6.1 Power-On Issues

If the motherboard does not power on, first check if the power supply wiring is reversed. Correcting the polarity should resolve the issue. Refer to Video 1 in the Setup section for a visual guide.

6.2 Raspberry Pi "Currently Throttled" Error

This error typically indicates an unstable or insufficient power supply to the Raspberry Pi. The MKS Monster8 V2 provides a dedicated 5.1V/3A output to prevent this. Ensure your Raspberry Pi is powered directly from this interface on the Monster8 V2 board.

6.3 PL08N Leveling Sensor Signal Pin Burnout

The PL08N leveling sensor signal interface is protected by Schottky diodes with a withstand voltage of 40V. This design ensures that the signal pin of the chip will not be burned out due to sensor issues or voltage pics.

Video 4: Demonstration of PL08N leveling sensor signal pin protection. The video shows a 24V input applied to the PL08N signal pin, confirming that the board remains functional and the pin is not damaged, thanks to the integrated protection.

7. Especificacions

Component/CaracterísticaDetall
MCUSTM32F407VET6 (168MHz, 512KB Flash, 192KB RAM)
Controladors pas a pas8 Stepper Driver Slots, 9 Motor Interfaces (Driver0,1,2-1,2-2,3,4,5,6,7)
Compatibilitat de controladorsA4988, DRV8825, LV8729, TMC2208, TMC2209, TMC2225, TMC2226
Suport de firmwareMarlin 2.0.x, Klipper (requires Raspberry Pi/MKS PI host)
Interfícies de visualitzacióEXP1, EXP2 (for LCD2004, LCD12864, MKS MINI12864 V1.0/V3.0), MKS TFT24/28/32/35, MKS H43
Endstop Support6 Endstops with Power Select (X-,X+,Y-,Y+,Z-,Z+), 3D TOUCH (PA8)
Modes de conductorTMC UART, SPI Mode, SENSORLESS_HOMING (Diag0-5)
Protecció de potènciaTVS Anti-reverse & Spike Protection, Plug-in Fuses, Schottky Diodes (MOS, Endstop, Temp)
Raspberry Pi PowerIndependent DC5.1V/3A output
Bus CANBuilt-in CAN transceiver and interface
Interfície del sensor de temperaturaMAX31865
Ranura del mòdul WiFiYes (for Robin WiFi module)
Altres interfíciesIntegrated SPI communication micro SD card, reserved SPI signal UDISK, virtual USB device
Detailed diagram of the MKS Monster8 V2 board with numbered components and their functions.

Figure 12: Detailed layout of the MKS Monster8 V2 board highlighting various components and interfaces.

8. Suport i Recursos

For further assistance, firmware updates, and community support, please refer to the following resources:

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