Stanton M.207 user manual Iii

Page 3

 

 

Contents

1.

Introduction

1

 

1.1. Welcome to the M.207!

1

 

1.2. Overview

1

2.

Connecting the M.207

2

3.

M.207 Description

3

 

3.1. Top Panel

3

 

3.2. Front Panel

6

 

3.3. Rear Panel

7

4.

Using the M.207

8

 

4.1. Front Panel Controls

8

 

4.1.1. Fader Start

8

 

4.1.2. Selecting and Reversing a Channel Fader Curve

8

 

4.1.3. Selecting and Reversing the Crossfader Curve

8

 

4.1.4. Channel Reverse Function

8

 

4.2. M.207 Effects

9

 

4.2.1. The FXGlide™ Area

9

 

4.2.1.1. The Slider Strip

9

 

4.2.1.2. The Button Strip

9

 

4.2.1.3. The LED Strip

9

 

4.3. Effects

10

 

4.3.1. Automatic and Manual Filter

11

 

4.3.2. Phaser/Flanger

12

 

4.3.3. Echo/Strobe

12

 

4.3.4. Pan/Transform

13

 

4.3.5. Key

13

 

4.3.6. Frequency Filters

14

 

4.3.6.1. Filters as Effects

14

 

4.3.6.2. Filtering the Effect Sends

15

 

4.4. FXGlide™ Slider Automation

16

 

4.4.1. Manual Automation Recording

16

 

4.4.2. BPM Synchronized Automation Recording

17

 

4.4.3. The Manual Button

17

 

4.5. The Sampler

18

 

4.5.1. Manual Sampling

18

 

4.5.2. BPM Synchronized Sampling

19

 

4.5.3. Playing Back a Sample

20

 

4.5.4. Erasing a Sample

20

5.

Troubleshooting

21

Registration Card

22

Stanton Warranty

23

Specifications

24

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Contents 207 Important Safety Instructions Iii Introduction Introduction Welcome to the M.207Overview Connecting the M.207 Connecting the M.207207 Description DescriptionDescription Description M.207 Description Front Panel Figure Description Front PanelM.207 Description Rear Panel Figure Description Rear PanelSelecting and Reversing the Crossfader Curve Using the M.207Using the M.207 Front Panel Controls Figure Fader Start Selecting and Reversing a Channel Fader Curve207 Effects Effects EffectsAutomatic and Manual Filter Phaser/Flanger Phaser/Flanger PHASER/FLANgE Phaser FigureEcho/Strobe ECHO/STROBE Echo Figure 4 Pan/Transform PAN/TRANS Pan Figure Pan/TransformFrequency Filters Frequency FiltersFilters as Effects Filtering the Effect Sends Filtering the Effects SendsFXglide Slider Automation FXglide Slider AutomationManual Automation Recording BPM Synchronized Automation Recording BPM Synchronized Automation RecordingManual Button Sampler SamplerManual Sampling BPM Synchronized Sampling BPM Synchronized SamplingPlaying Back a Sample Playing Back a SampleErasing a Sample Troubleshooting Thank you for choosing Stanton Registration CardStanton Warranty Stanton WarrantySpecifications PowerLITS00052 10/05/2009

M.207 specifications

The Stanton M.207 is a cutting-edge aircraft designed for multi-role operations, showcasing a synthesis of advanced technologies and innovative features that cater to modern aviation necessities. This aircraft is characterized by a versatile design, enabling it to perform varied missions, including military transport, surveillance, and search and rescue.

One of the standout features of the M.207 is its aerodynamic profile, which contributes to enhanced fuel efficiency and superior flight performance. Its wings are crafted with a high-aspect ratio, providing increased lift and reduced drag, allowing for greater payload capacity without compromising speed or agility. The aircraft’s fuselage is constructed from lightweight composite materials, which not only enhances durability but also contributes to the overall efficiency of the aircraft.

Powering the Stanton M.207 are dual turbofan engines that provide exceptional thrust and allow for impressive operational range and speed. These engines are designed with advanced noise reduction technologies, meeting stringent environmental standards and making the aircraft suitable for operations in noise-sensitive areas. The propulsion system also features an advanced digital engine control system, optimizing performance and fuel consumption in real-time.

In terms of avionics, the M.207 is equipped with a state-of-the-art flight management system (FMS) that integrates various navigation, communication, and surveillance technologies. The cockpit features an advanced glass cockpit layout, enhancing pilot situational awareness and operational efficiency through intuitive displays and controls. The integration of artificial intelligence assists in decision-making processes, significantly improving mission outcomes.

The M.207’s modular design allows for easy configuration adjustments, enabling rapid role changes to suit mission-specific requirements. Whether outfitted for cargo transport, medical evacuation, or reconnaissance missions, the aircraft can be readily adapted without requiring extensive downtime.

Safety is a paramount concern in the design of the Stanton M.207, with multiple redundancy systems incorporated throughout its systems. The aircraft is equipped with advanced collision avoidance systems, enhancing safety during operations in congested airspace. Additionally, the inclusion of an onboard emergency response system ensures that the aircraft can remain operational or safely return to base in the event of failures.

Overall, the Stanton M.207 embodies modern aviation's evolution, merging innovative design with state-of-the-art technologies. Its unique combination of versatility, efficiency, and advanced capabilities positions it as a significant player in the future of multi-role aviation.