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ARDUINO MEGA CNC SHIELD
₹750.00 Original price was: ₹750.00.₹700.00Current price is: ₹700.00. inc. GST
- Supply Voltage: 12V
- Standard interfaces (as that of the extruder)
- Reserved GCI like I2C and RS232
- 3 MOSFET’s are applied to the heater/ fan and thermistor circuit.
- Another 5A is added to protect the component parts.
- An 11A fuse is added to the hotbed.
- Support 5 stepper drive board
Mega Shield, or RAMPS for short, is a powerful shield. These are made to hold all of the electronics required for a RepRap. For a cheap cost, all of the components are contained in a single tiny box. The RAMPS (RepRap Arduino Mega Shield) is an all-in-one design that combines all of the essential components for a 3D printer into a single Arduino MEGA plug-in shield. For easy maintenance, this plug-in shield design offers plug-in stepper drivers and extruder control electronics connectors. Due to its many extended interface and replacement components functionalities, this control board has a significant upgrade and extension capacity. When the pins on the back of the board are linked to the Arduino Mega, it functions as a controller board. And the front is wired up to stepper motors. Moreover, a number of Arduino expansion boards added to the system as long as the main RAMPS board is kept to the top of the stack.
RAMPS connects an Arduino Mega to the powerful Arduino MEGA platform and allows for plenty of growth. The core of most DIY 3D printers on the market is the ramps board. Also, a more compact solution to incorporate all of the systems into a small container that may be mounted. RAMPS is only functional when it is linked to its Mega 2560 and A4988/DRV8825 motherboards. Because of its ease of use and compatibility with the majority of 3D printers (all RepRap-model such as Prusa i2 and i3). Ramps1.4 + MEGA2560 + A4988/DRV8825 is becoming a popular combo for DIY 3D printers.

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- Heating bed temperature: 45 ° C - 60 ° C
- Density: 1.25 g / cm³-21.5 ° C
- Melt Flow Index: 5 (10min, 2.16kg)
- Shock resistance: 5 KJ / m²
- Dimensional accuracy: 1.70 ± 0.1 mm
- Filament weight: 1 kg
- Spool size: approx. 200 mm diameter, 50 mm spool mount, 65 mm height
- Diameter tolerances of ± 0.1mm checked with laser monitor
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Creality Children CR-100 3D Printer 100*100*80mm Printing Size 1.75mm 0.4mm Nozzle Support
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- Model: CR-100
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- Machine Size: 241*183*255mm.
- Package Size: 250*230*340mm.
- N.W: 2.8Kg.
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MACH3 interface board
- Compatible Stepper Motor Driver - Max 5 2-phase Microstep controllers
- Driver type - Pulse and Direction signal control
- Wide input voltage range: 12-24V, and with anti-reverse function.
- Output 0-10V analogue voltage for the inverter to control the spindle speed.
- Compatible with MACH3, Linux CNC (EMC2) etc. parallel-control CNC software.
- USB power supply and peripherals power phase are separate to protect computer security.
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- 5-input interface to define the Limit, Emergence-Stop, Cutter alignment, etc.
- Wide input voltage range: 12-24V, and with anti-reverse function.
- One relay output control interface, accessed by the spindle motor or the air pump, water pump, etc.
- Maximum support 5-axis stepper motor driver controllers
- Output 0-10V analogue voltage for the inverter to control the spindle speed.
- All the way to the relay output port, control spindle switch. Output port P17 mouth.
- One relay output control interface, accessed by the spindle motor or the air pump, water pump, etc.
- Weight - Approx. 75g
- Dimensions - 90 * 70 * 20mm
NEMA 23 18.9 kg-cm
- Step Angle : 1.8 °
- Holding Torque : 18.9 kg-cm
- Operating Voltage : 3.2 Volts
- Supply Current (A)Â : 2.8 A/Phase
- No. of Leads : 4
- Inductance: 3.6 mH/Phase
- Resistance : 1.13 O/Phase
- Rotor Inertia : 480 gm-cm2
- Inductance Accuracy : ±20%
- Resistance Accuracy : ±10%
- Shaft Diameter (mm)Â : 6.35
- Shaft Length (mm)Â : 20.6
- Cable Length: 30 CM
- Comparably more powerful than NEMA17 motors.
- Input pulse decides the rotation angle of the motor.
- High accuracy of around 3 to 5% a step.
- Provides good starting, stopping and reversing.
- Control of this motor is less costly because of exclusion of complex control circuitry.
- The speed is proportional to the frequency of the input pulses.

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