535 lines
18 KiB
Markdown
535 lines
18 KiB
Markdown
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# AON3D M2+ Wiring Instructions
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## BTT Octopus Pro v1.0.1 with External DM542T Drivers
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---
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## Overview
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This guide covers wiring your AON3D M2+ IDEX printer with:
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- **Controller**: BTT Octopus Pro v1.0.1
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- **Stepper Drivers**: External DM542T (8 units)
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- **Host**: Raspberry Pi 4/5 running FluiddPi
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### Total Connections Required
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| Category | Count | Items |
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|----------|-------|-------|
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| Motor Drivers | 8 | X, X2, Y, Y1, Z, Z1, E0, E1 |
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| Endstops | 4-6 | X-min, X-max, Y-min, (Y-max), Z-min, (Z-max) |
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| Thermistors | 4 | Extruder 0, Extruder 1, Bed, Chamber |
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| Heaters | 4 | Extruder 0, Extruder 1, Bed, Chamber |
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| Fans | 1+ | Enclosure fan (+ optional part cooling) |
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| Probe | 1 | Bed probe |
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| Power | 2 | 24V main, USB to Pi |
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---
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## PART 1: Power Supply Connections
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### 1.1 Main Power Input (24V DC)
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Connect your 24V power supply to the Octopus Pro:
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```
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Power Supply Octopus Pro
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============ ===========
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+24V ─────────────────────► VIN (+)
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GND ─────────────────────► VIN (-)
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```
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**Location**: Large screw terminals on the edge of the board labeled "POWER" or "VIN"
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**Wire Gauge**: Use 14-16 AWG for main power
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### 1.2 DM542T Driver Power
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Each DM542T driver needs its own power connection (typically 24-48V DC):
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```
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Power Supply DM542T Driver
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============ =============
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+24V to +48V ─────────────► V+ (or VCC)
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GND ──────────────────────► V- (or GND)
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```
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**Important**:
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- All DM542T drivers can share the same power supply
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- Use appropriately rated power supply (calculate total motor current)
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- Typical: 48V power supply for better high-speed performance
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---
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## PART 2: Stepper Motor Connections (DM542T Drivers)
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### 2.1 Understanding the Signal Flow
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```
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┌─────────────┐ Step/Dir/Enable ┌─────────────┐ 4-wire ┌─────────────┐
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│ Octopus │ ───────────────────────►│ DM542T │───────────────►│ Stepper │
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│ Pro │ (low current) │ Driver │ (high current)│ Motor │
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└─────────────┘ └─────────────┘ └─────────────┘
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```
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### 2.2 Octopus Pro Motor Header Pinout
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Each MOTOR header on the Octopus Pro has this pinout:
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```
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┌───┬───┬───┬───┐
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│ 1 │ 2 │ 3 │ 4 │
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└───┴───┴───┴───┘
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│ │ │ │
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│ │ │ └── EN (Enable)
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│ │ └────── DIR (Direction)
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│ └────────── STEP (Step pulse)
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└────────────── GND (Ground)
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```
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### 2.3 Motor-to-Driver Assignments
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| Octopus Header | Klipper Section | Function | STEP | DIR | EN |
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|----------------|-----------------|----------|------|-----|-----|
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| MOTOR0 | [stepper_x] | X Carriage 0 | PF13 | PF12 | PF14 |
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| MOTOR1 | [dual_carriage] | X Carriage 1 (IDEX) | PG0 | PG1 | PF15 |
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| MOTOR2 | [stepper_y] | Y Axis | PF11 | PG3 | PG5 |
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| MOTOR3 | [stepper_y1] | Y1 Axis (2nd motor) | PG4 | PC1 | PA0 |
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| MOTOR4 | [stepper_z] | Z Axis | PF9 | PF10 | PG2 |
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| MOTOR5 | [stepper_z1] | Z1 Axis (2nd motor) | PC13 | PF0 | PF1 |
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| MOTOR6 | [extruder] | Extruder 0 | PE2 | PE3 | PD4 |
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| MOTOR7 | [extruder1] | Extruder 1 | PE6 | PA14 | PE0 |
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### 2.4 Wiring Each DM542T Driver
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For **EACH** of the 8 motor drivers, make these connections:
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```
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Octopus Pro MOTOR Header DM542T Driver
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============================ =============
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Pin 1 (GND) ──────────────────────► PUL- (Pulse negative)
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├───► DIR- (Direction negative)
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└───► ENA- (Enable negative)
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Pin 2 (STEP) ─────────────────────► PUL+ (Pulse positive)
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Pin 3 (DIR) ──────────────────────► DIR+ (Direction positive)
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Pin 4 (EN) ───────────────────────► ENA+ (Enable positive)
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```
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**Visual Diagram**:
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```
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Octopus MOTOR0 DM542T #1 (X Axis)
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┌─────────────┐ ┌─────────────────┐
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│ GND ●──────┼────────┬───────────────►│ PUL- │
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│ STEP ●──────┼────────┼───────────────►│ PUL+ │
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│ DIR ●──────┼────────┼───────────────►│ DIR+ │
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│ EN ●──────┼────────┼───────────────►│ ENA+ │
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└─────────────┘ │ ┌┤ DIR- │
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├───────────────►│ ENA- │
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│ │ │
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│ │ A+ ●───────────┼──► Motor Coil A+
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│ │ A- ●───────────┼──► Motor Coil A-
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│ │ B+ ●───────────┼──► Motor Coil B+
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│ │ B- ●───────────┼──► Motor Coil B-
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│ │ │
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│ │ V+ ●───────────┼──► +24-48V
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│ │ V- ●───────────┼──► GND (Power)
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│ └─────────────────┘
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│
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└─── Common GND (can use single wire daisy-chained
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or individual wires to each driver)
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```
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### 2.5 Repeat for All 8 Drivers
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| # | Octopus Header | DM542T Label | Motor |
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|---|----------------|--------------|-------|
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| 1 | MOTOR0 | DM542T-X | X Carriage 0 |
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| 2 | MOTOR1 | DM542T-X2 | X Carriage 1 |
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| 3 | MOTOR2 | DM542T-Y | Y Motor |
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| 4 | MOTOR3 | DM542T-Y1 | Y1 Motor |
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| 5 | MOTOR4 | DM542T-Z | Z Motor |
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| 6 | MOTOR5 | DM542T-Z1 | Z1 Motor |
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| 7 | MOTOR6 | DM542T-E0 | Extruder 0 |
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| 8 | MOTOR7 | DM542T-E1 | Extruder 1 |
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### 2.6 DM542T DIP Switch Settings
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Set the DIP switches on each DM542T to match the Klipper config:
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**Microstepping** (SW5-SW8):
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| Axis | Microsteps | SW5 | SW6 | SW7 | SW8 |
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|------|------------|-----|-----|-----|-----|
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| X, X2, Y, Y1 | 16 | OFF | ON | ON | OFF |
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| Z, Z1 | 4 | ON | ON | OFF | OFF |
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| E0, E1 | 16 | OFF | ON | ON | OFF |
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**Current Settings** (SW1-SW3): Set according to your motor specs. Typical settings:
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- NEMA 23 motors: 2.0-3.0A
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- NEMA 17 extruders: 1.0-1.5A
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---
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## PART 3: Endstop Connections
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### 3.1 Endstop Pinout on Octopus Pro
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The DIAG/Endstop headers are 3-pin connectors:
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```
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┌───┬───┬───┐
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│ S │ V │ G │
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└───┴───┴───┘
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│ │ │
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│ │ └── GND (Ground)
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│ └────── +5V (for powered sensors, optional)
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└────────── Signal
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```
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### 3.2 Endstop Assignments
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| Endstop | Function | Octopus Header | Pin | Config |
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|---------|----------|----------------|-----|--------|
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| X Min | Home position Carriage 0 | DIAG0 | PG6 | `endstop_pin: PG6` |
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| X Max | Home position Carriage 1 | DIAG1 | PG9 | `endstop_pin: PG9` |
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| Y Min | Y home position | DIAG2 | PG10 | `endstop_pin: PG10` |
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| Y1 | Y1 endstop (optional) | DIAG3 | PG11 | `endstop_pin: PG11` |
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| Z Min | Z home position | DIAG4 | PG12 | `endstop_pin: PG12` |
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| Z1 | Z1 endstop (optional) | DIAG5 | PG13 | `endstop_pin: PG13` |
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### 3.3 Wiring Mechanical Endstops
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**Normally Open (NO) Switch** - most common:
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```
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Endstop Switch Octopus Pro DIAG Header
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============== =======================
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COM ──────────────────────► G (Ground)
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NO ──────────────────────► S (Signal)
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```
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Config: `endstop_pin: PG6`
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**Normally Closed (NC) Switch** - add `!` to invert:
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```
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Endstop Switch Octopus Pro DIAG Header
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============== =======================
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COM ──────────────────────► G (Ground)
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NC ──────────────────────► S (Signal)
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```
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Config: `endstop_pin: !PG6`
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### 3.4 Wiring Optical/Inductive Sensors (3-wire)
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```
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Sensor Octopus Pro DIAG Header
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====== =======================
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VCC (Brown/Red) ──────────► V (+5V)
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GND (Blue/Black) ─────────► G (Ground)
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Signal (Black/Yellow) ────► S (Signal)
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```
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---
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## PART 4: Thermistor Connections
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### 4.1 Thermistor Header Pinout
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```
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┌───┬───┐
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│ T │ G │
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└───┴───┘
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│ │
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│ └── GND (Ground)
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└────── Thermistor Signal
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```
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### 4.2 Thermistor Assignments
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| Sensor | Function | Octopus Header | Pin |
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|--------|----------|----------------|-----|
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| TH0 | Extruder 0 temperature | T0 | PF4 |
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| TH1 | Extruder 1 temperature | T1 | PF5 |
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| TH2 | Chamber temperature | T2 | PF6 |
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| TB | Bed temperature | TB | PF3 |
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### 4.3 Wiring Thermistors
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Thermistors are not polarized - either wire can go to either terminal:
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```
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Thermistor (2-wire) Octopus Pro TH Header
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=================== =====================
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Wire 1 ───────────────────► T (Signal)
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Wire 2 ───────────────────► G (Ground)
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```
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**Important**: Your M2 uses custom thermistors with voltage-based calibration. The config already includes the correct `adc_temperature` definitions.
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---
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## PART 5: Heater Connections
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### 5.1 Heater Output Specifications
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| Output | Function | Pin | Max Current | Connector |
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|--------|----------|-----|-------------|-----------|
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| HE0 | Hotend 0 | PA2 | 5A | Screw terminal |
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| HE1 | Hotend 1 | PA3 | 5A | Screw terminal |
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| HE2 | Chamber heater | PB10 | 5A | Screw terminal |
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| HB | Heated bed | PA1 | 10A | Large screw terminal |
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### 5.2 Wiring Hotend Heaters (HE0, HE1)
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```
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Heater Cartridge Octopus Pro HE0/HE1
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================ ===================
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Wire 1 ───────────────────► + (Positive terminal)
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Wire 2 ───────────────────► - (Negative terminal)
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```
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**Note**: Standard heater cartridges are not polarized.
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### 5.3 Wiring Chamber Heater (HE2)
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Same as hotend heaters:
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```
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Chamber Heater Octopus Pro HE2
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============== ===============
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Wire 1 ───────────────────► +
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Wire 2 ───────────────────► -
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```
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### 5.4 Wiring Heated Bed (HB)
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**For beds drawing less than 10A** - connect directly:
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```
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Heated Bed Octopus Pro HB
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========== ==============
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Wire 1 ───────────────────► + (Positive)
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Wire 2 ───────────────────► - (Negative)
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```
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**For high-power beds (>10A)** - use SSR (Solid State Relay):
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```
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Octopus Pro HB SSR Heated Bed
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============== === ==========
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+ ────────────────────────► DC+ (Control)
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- ────────────────────────► DC- (Control)
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AC/DC+ (Load) ────────► Bed +
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AC/DC- (Load) ◄────────┤
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│
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Power Supply (+) ──────────────────────────────────┘
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Power Supply (-) ─────────────────────────────────► Bed -
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```
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---
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## PART 6: Fan Connections
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### 6.1 Fan Header Pinout
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```
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┌───┬───┐
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│ + │ - │
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└───┴───┘
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│ │
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│ └── GND (Negative)
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└────── +24V PWM (Positive, controlled)
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```
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### 6.2 Fan Assignments
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| Fan | Function | Pin | Header |
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|-----|----------|-----|--------|
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| FAN0 | Part cooling 0 (optional) | PA8 | FAN0 |
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| FAN1 | Part cooling 1 (optional) | PE5 | FAN1 |
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| FAN2 | Enclosure/Chamber fan | PD12 | FAN2 |
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| FAN3 | Hotend fan 0 (optional) | PD13 | FAN3 |
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| FAN4 | Hotend fan 1 (optional) | PE4 | FAN4 |
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### 6.3 Wiring Fans
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```
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Fan (2-wire) Octopus Pro FAN Header
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============ ======================
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+ (Red) ──────────────────► + (Positive/PWM)
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- (Black) ────────────────► - (Ground)
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```
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|
|
||
|
|
**Enclosure Fan** (configured in Klipper):
|
||
|
|
- Connected to FAN2
|
||
|
|
- Controlled by chamber heater temperature
|
||
|
|
|
||
|
|
---
|
||
|
|
|
||
|
|
## PART 7: Probe Connection
|
||
|
|
|
||
|
|
### 7.1 Probe Wiring
|
||
|
|
|
||
|
|
Your probe connects to the dedicated PROBE header:
|
||
|
|
|
||
|
|
**For mechanical probe (2-wire)**:
|
||
|
|
```
|
||
|
|
Probe Switch Octopus Pro PROBE
|
||
|
|
============ =================
|
||
|
|
COM ──────────────────────► G (Ground)
|
||
|
|
NO/NC ────────────────────► S (Signal)
|
||
|
|
```
|
||
|
|
|
||
|
|
**For inductive/capacitive probe (3-wire)**:
|
||
|
|
```
|
||
|
|
Probe Sensor Octopus Pro PROBE
|
||
|
|
============ =================
|
||
|
|
VCC ──────────────────────► V (+5V or +24V depending on sensor)
|
||
|
|
GND ──────────────────────► G (Ground)
|
||
|
|
Signal ───────────────────► S (Signal)
|
||
|
|
```
|
||
|
|
|
||
|
|
Config: `pin: ^PG15` (the `^` enables internal pull-up)
|
||
|
|
|
||
|
|
---
|
||
|
|
|
||
|
|
## PART 8: Communication Connections
|
||
|
|
|
||
|
|
### 8.1 USB to Raspberry Pi
|
||
|
|
|
||
|
|
Connect the Octopus Pro to your Raspberry Pi via USB:
|
||
|
|
|
||
|
|
```
|
||
|
|
Octopus Pro Raspberry Pi
|
||
|
|
=========== ============
|
||
|
|
USB-C port ◄───────────────► USB port (any)
|
||
|
|
```
|
||
|
|
|
||
|
|
Use a quality USB cable - data + power capable.
|
||
|
|
|
||
|
|
### 8.2 Finding the Serial Port
|
||
|
|
|
||
|
|
After connecting, run on the Pi:
|
||
|
|
```bash
|
||
|
|
ls /dev/serial/by-id/*
|
||
|
|
```
|
||
|
|
|
||
|
|
You should see something like:
|
||
|
|
```
|
||
|
|
/dev/serial/by-id/usb-Klipper_stm32f446xx_XXXXXXXXXX-if00
|
||
|
|
```
|
||
|
|
|
||
|
|
Update `printer.cfg` with this path.
|
||
|
|
|
||
|
|
---
|
||
|
|
|
||
|
|
## PART 9: Complete Wiring Checklist
|
||
|
|
|
||
|
|
### Power
|
||
|
|
- [ ] 24V power supply connected to Octopus Pro VIN
|
||
|
|
- [ ] 24-48V power supply connected to all DM542T drivers
|
||
|
|
- [ ] USB cable from Octopus Pro to Raspberry Pi
|
||
|
|
|
||
|
|
### Motors (8 total)
|
||
|
|
- [ ] MOTOR0 → DM542T → X motor (Carriage 0)
|
||
|
|
- [ ] MOTOR1 → DM542T → X2 motor (Carriage 1/IDEX)
|
||
|
|
- [ ] MOTOR2 → DM542T → Y motor
|
||
|
|
- [ ] MOTOR3 → DM542T → Y1 motor
|
||
|
|
- [ ] MOTOR4 → DM542T → Z motor
|
||
|
|
- [ ] MOTOR5 → DM542T → Z1 motor
|
||
|
|
- [ ] MOTOR6 → DM542T → Extruder 0 motor
|
||
|
|
- [ ] MOTOR7 → DM542T → Extruder 1 motor
|
||
|
|
|
||
|
|
### Endstops
|
||
|
|
- [ ] X endstop → DIAG0
|
||
|
|
- [ ] X2/Dual carriage endstop → DIAG1
|
||
|
|
- [ ] Y endstop → DIAG2
|
||
|
|
- [ ] Y1 endstop → DIAG3 (if used)
|
||
|
|
- [ ] Z endstop → DIAG4
|
||
|
|
- [ ] Z1 endstop → DIAG5 (if used)
|
||
|
|
|
||
|
|
### Thermistors
|
||
|
|
- [ ] Extruder 0 thermistor → T0
|
||
|
|
- [ ] Extruder 1 thermistor → T1
|
||
|
|
- [ ] Chamber thermistor → T2
|
||
|
|
- [ ] Bed thermistor → TB
|
||
|
|
|
||
|
|
### Heaters
|
||
|
|
- [ ] Extruder 0 heater → HE0
|
||
|
|
- [ ] Extruder 1 heater → HE1
|
||
|
|
- [ ] Chamber heater → HE2
|
||
|
|
- [ ] Heated bed → HB (or via SSR)
|
||
|
|
|
||
|
|
### Fans
|
||
|
|
- [ ] Enclosure fan → FAN2
|
||
|
|
|
||
|
|
### Probe
|
||
|
|
- [ ] Bed probe → PROBE header
|
||
|
|
|
||
|
|
---
|
||
|
|
|
||
|
|
## PART 10: First Power-On Procedure
|
||
|
|
|
||
|
|
### Before Applying Power
|
||
|
|
1. Double-check all wiring against this guide
|
||
|
|
2. Verify no short circuits (use multimeter)
|
||
|
|
3. Ensure DM542T DIP switches are set correctly
|
||
|
|
4. Confirm power supply voltages are correct
|
||
|
|
|
||
|
|
### Power-On Sequence
|
||
|
|
1. **DO NOT** connect motors yet (just signals)
|
||
|
|
2. Power on the Octopus Pro only
|
||
|
|
3. Verify it appears on USB (`ls /dev/serial/by-id/`)
|
||
|
|
4. Flash Klipper firmware (see below)
|
||
|
|
5. Start Klipper and check for errors
|
||
|
|
6. Test endstops: `QUERY_ENDSTOPS`
|
||
|
|
7. Test thermistors: check temperatures in Fluidd
|
||
|
|
8. **Then** connect motor power and test movement
|
||
|
|
|
||
|
|
### Flashing Klipper Firmware
|
||
|
|
|
||
|
|
```bash
|
||
|
|
cd ~/klipper
|
||
|
|
make menuconfig
|
||
|
|
```
|
||
|
|
|
||
|
|
Settings for Octopus Pro v1.0.1:
|
||
|
|
- Micro-controller: **STMicroelectronics STM32**
|
||
|
|
- Processor model: **STM32F446**
|
||
|
|
- Bootloader offset: **32KiB bootloader**
|
||
|
|
- Clock Reference: **12 MHz crystal**
|
||
|
|
- Communication: **USB (on PA11/PA12)**
|
||
|
|
|
||
|
|
```bash
|
||
|
|
make clean
|
||
|
|
make
|
||
|
|
```
|
||
|
|
|
||
|
|
Copy `out/klipper.bin` to SD card as `firmware.bin`, insert into Octopus, power cycle.
|
||
|
|
|
||
|
|
---
|
||
|
|
|
||
|
|
## Troubleshooting
|
||
|
|
|
||
|
|
### Motor doesn't move
|
||
|
|
1. Check DM542T has power (LED on?)
|
||
|
|
2. Verify step/dir/enable wiring
|
||
|
|
3. Check DIP switch settings
|
||
|
|
4. Try inverting enable pin: `enable_pin: PF14` → `enable_pin: !PF14`
|
||
|
|
|
||
|
|
### Motor moves wrong direction
|
||
|
|
- Invert the DIR pin in config: `dir_pin: PF12` → `dir_pin: !PF12`
|
||
|
|
|
||
|
|
### Endstop always triggered or never triggers
|
||
|
|
- Check `QUERY_ENDSTOPS` output
|
||
|
|
- Try inverting: `endstop_pin: PG6` → `endstop_pin: !PG6`
|
||
|
|
- Verify wiring (NO vs NC switch)
|
||
|
|
|
||
|
|
### Thermistor shows wrong temperature
|
||
|
|
- Check wiring continuity
|
||
|
|
- Verify correct `sensor_type` in config
|
||
|
|
- The custom `adc_temperature` definitions should match your sensors
|
||
|
|
|
||
|
|
### Heater doesn't heat
|
||
|
|
- Check for "HEATER_ERROR" in Klipper logs
|
||
|
|
- Verify heater wiring
|
||
|
|
- Check thermistor is working (needs valid temp reading)
|