AMS 4081 user manual Installing the software PC USB Driver

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4081 User Manual

Issue 2

Installing the software – PC

USB Driver

Before continuing, please connect the 4081 by USB to the PC and power the unit up.

Before installing the control software, you will need to install a USB driver to enable communication between the PC and the 4081.

This can be downloaded from:

http://www.ams-neve.info/ftp/4081_USB_Driver.exe

When presented with the option to either Run or Save, click Save and specify a location for the file to be saved to.

This is an executable file, so once it has downloaded, double click to run and install it.

The Windows operating system will be determined, as will the correct driver for your system.

A Windows CMD screen will show the install by a series of progressing dots.

As the driver nears the end of it's installation procedure, the CMD screen will close and the Taskbar will show two messages:

The first will show that the driver has found new hardware and a USB port has been detected.

The second will show that it is ready to use.

You can now install the 4081 control software.

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Contents Neve Health & Safety Notice Table of Contents Introduction Channel Controls Mic / Line Input XLRs Rear ConnectorsPower input Mic / Line Output XLRsUnit ID dip switches Technical Earth Optional Digital / Firewire card Installing the software PC USB Driver Software Issue Standalone Control Setup PC Setup / Test Communications PortReset Current Rack / Reset All Racks Midi Port SetupCheckboxes Load Preset Store PresetMini View Installing the software Mac Issue Pro Tools Control Setup Configuring Pro Tools BlueDimensions single unit Dimensions 2 units for rack-mounting Power Requirements DimensionsMains Power

4081 specifications

AMS 4081 is a high-performance material specification for aluminum alloy products, primarily aimed at aerospace applications. This specification outlines the requirements for aluminum alloy 7075, which is known for its exceptional mechanical properties and high strength-to-weight ratio. Engineers and manufacturers in the aerospace sector often select AMS 4081 due to its superior fatigue resistance and excellent stress corrosion cracking resistance, making it ideal for critical components subjected to extreme operational conditions.

One of the key features of AMS 4081 is its impressive strength, which stems from the alloying elements of zinc, magnesium, and copper. These elements work synergistically to enhance the material's tensile strength while maintaining ductility. The yield strength of 7075 aluminum can reach up to 570 MPa (depending on the temper), resulting in components that can withstand substantial loads without deforming. This strength is especially crucial for aerospace applications where safety and reliability are paramount.

Another notable characteristic of AMS 4081 is its heat treatability. The alloy can be heat-treated to achieve a range of mechanical properties tailored to specific applications. The solution heat treatment followed by aging allows for the formation of precipitates that enhance strength, making it suitable for demanding aircraft structures, including fuselage frames, wing ribs, and landing gear components.

In terms of technologies, AMS 4081 incorporates advanced production techniques such as controlled casting and rolling. These processes ensure uniformity in the microstructure, which directly influences mechanical properties. Furthermore, modern fabrication technologies, including CNC machining and additive manufacturing, are compatible with 7075 aluminum, allowing for the efficient production of complex geometries.

Corrosion resistance is another critical feature of AMS 4081. Although aluminum is naturally resistant to corrosion due to the formation of a protective oxide layer, the additional treatment processes specified in AMS 4081 further enhance this property. The material can undergo surface treatments such as anodizing, which provides an additional barrier against corrosion, extending the lifespan of components exposed to harsh environments.

In conclusion, AMS 4081 stands out in the aerospace industry due to its high strength, heat treatability, and enhanced corrosion resistance. Its advanced manufacturing capabilities make it a preferred choice for engineers looking to design lightweight yet robust components in the pursuit of improved performance and safety in aerospace applications.