Manual
Table Of Contents
- Introduction
- SECTION 1 Getting Started
- CHAPTER 1 HALTECH IG5 INSTALLATION
- 1.1 Overview
- 1.2 Installation Summary
- 1.3 Expanded Installation Guide
- 1.3.1. Manifold Absolute Pressure (MAP) Sensor
- 1.3.2. Coolant Temperature Sensor
- 1.3.3. Inlet Air Temperature Sensor
- 1.3.4. The Throttle Position Sensor (TPS)
- 1.3.5. Mounting the Igniter
- 1.3.6. Route Wiring Harness and Connect Sensors
- 1.3.7. Power Relays
- 1.3.8. Electronic Control Unit (ECU)
- 1.3.9. Flying Leads
- 1.3.10. Install and connect any Optional Outputs
- 1.3.11 Connect the Trigger Sensor
- 1.3.12 Connect the ECU
- CHAPTER 2 GETTING ONLINE
- CHAPTER 3 ENGINE IDENTIFICATION
- CHAPTER 4 USING HALTECH SOFTWARE
- CHAPTER 5 STARTING THE ENGINE
- CHAPTER 1 HALTECH IG5 INSTALLATION
- SECTION 2 Other Adjustable Features
- SECTION 3 Software Features
- SECTION 4 IG5 Optional Outputs
- CHAPTER 12 SOFTWARE ACCESS
- CHAPTER 13 AUXILIARY OUTPUTS
- 13.1 Description
- 13.2 Turbo Waste Gate Control (TWG)
- 13.3 Dual Intake Valve Control (DIV)
- 13.4 Torque Converter Lockup (TCC)
- 13.5 Electric Thermatic Fan Control (TF)
- 13.6 Electric Intercooler Fan Control (IF)
- 13.7 Shift Light Illumination (SL)
- 13.8 Anti-Stall Solenoid Control (AS)
- 13.9 Turbo Timer (TT)
- 13.10 NOS Switch
- SECTION 5 Appendices

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6 cylinder engine
For a six cylinder 3 magnets are required in total, positioned exactly 120° apart.
Figure 2: Typical 6 Cylinder
8 cylinder engine
For an eight cylinder 4 magnets are required in total, positioned exactly 90° apart.
Figure 3: Typical 8 Cylinder Application
The ignition setup for the S1 needs to be configured in the following way:
Trigger Edge : Rising
Trigger type : Standard
Home Edge : Falling
The S2 Hall Effect Sensor
The S2 sensor which is identified by a grey cable gland operates in the following way:
As a south pole passes the sensor face the signal in the secondary (PIN D) channel is
switched to a low state. As a north pole passes the sensor a low state will only occur on the
primary channel (PIN C).