What is CAD/CAM?

CAD/CAM (computer-aided design and computer-aided manufacturing) refers to computer software that is used to both design and manufacture products.

CAD is the use of computer technology for design and design documentation. CAD/CAM applications are used to both design a product and program manufacturing processes, specifically, CNC machining. CAM software uses the models and assemblies created in CAD software to generate tool paths that drive the machines that turn the designs into physical parts. CAD/CAM software is most often used for machining of prototypes and finished production parts.

Manufacturing professionals are on hand to take you through a free demonstration of the capabilities of OneCNC CAD/CAM on your own product. The advantages can be demonstrated on-line or even in person.

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OneCNC CAD/CAM prides itself on being easy to use, yet powerful. However, if you want a head-start on getting the most out of your OneCNC product, we have several options available for you.

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Mks Gen V1.4 Klipper Direct

[mcu] serial: /dev/serial/by-id/usb-Arduino__www.arduino.cc__0043_...

[stepper_z] step_pin: PF4 dir_pin: PF5 enable_pin: !PD7 microsteps: 16 rotation_distance: 8 endstop_pin: ^PJ0 position_endstop: 0 position_max: 200 homing_speed: 10

[printer] kinematics: cartesian max_velocity: 300 max_accel: 3000 max_z_velocity: 5 max_z_accel: 100

[stepper_x] step_pin: PF0 dir_pin: PF1 enable_pin: !PD7 microsteps: 16 rotation_distance: 40 endstop_pin: ^PE4 position_endstop: 0 position_max: 200 homing_speed: 50 [stepper_y] step_pin: PF2 dir_pin: PF3 enable_pin: !PD7 microsteps: 16 rotation_distance: 40 endstop_pin: ^PJ1 position_endstop: 0 position_max: 200 homing_speed: 50

| Setting | Value | |------------------------|-------------------------------| | Microcontroller | Atmel ATmega2560 | | Processor model | ATmega2560 | | Communication interface | USB (ID 2341:0042) | | Baud rate | 250000 (or 115200 ) | | GPIO pins to set at startup | (Leave blank) |

cd ~/ cd klipper make menuconfig Set the following options exactly:

Save and exit, then build:

[heater_bed] heater_pin: PH4 sensor_type: EPCOS 100K B57560G104F sensor_pin: PK6 control: pid pid_Kp: 70.0 pid_Ki: 1.5 pid_Kd: 800 min_temp: 0 max_temp: 110

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[mcu] serial: /dev/serial/by-id/usb-Arduino__www.arduino.cc__0043_...

[stepper_z] step_pin: PF4 dir_pin: PF5 enable_pin: !PD7 microsteps: 16 rotation_distance: 8 endstop_pin: ^PJ0 position_endstop: 0 position_max: 200 homing_speed: 10

[printer] kinematics: cartesian max_velocity: 300 max_accel: 3000 max_z_velocity: 5 max_z_accel: 100 mks gen v1.4 klipper

[stepper_x] step_pin: PF0 dir_pin: PF1 enable_pin: !PD7 microsteps: 16 rotation_distance: 40 endstop_pin: ^PE4 position_endstop: 0 position_max: 200 homing_speed: 50 [stepper_y] step_pin: PF2 dir_pin: PF3 enable_pin: !PD7 microsteps: 16 rotation_distance: 40 endstop_pin: ^PJ1 position_endstop: 0 position_max: 200 homing_speed: 50

| Setting | Value | |------------------------|-------------------------------| | Microcontroller | Atmel ATmega2560 | | Processor model | ATmega2560 | | Communication interface | USB (ID 2341:0042) | | Baud rate | 250000 (or 115200 ) | | GPIO pins to set at startup | (Leave blank) | [mcu] serial: /dev/serial/by-id/usb-Arduino__www

cd ~/ cd klipper make menuconfig Set the following options exactly:

Save and exit, then build:

[heater_bed] heater_pin: PH4 sensor_type: EPCOS 100K B57560G104F sensor_pin: PK6 control: pid pid_Kp: 70.0 pid_Ki: 1.5 pid_Kd: 800 min_temp: 0 max_temp: 110

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