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ISP-100
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2WAYS.QMS
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ISP-100
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Dither Signal Characteristics
Install
Cable Diagrams
Factory Default Mode
Delay
Configuring the Software
Case of Problems
16Connector pinouts July
Battery/module tool
Procedure for Returns
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Image 137
B-11
2WAYS.QMS
Standard QuickMAPs
Page 136
Page 138
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Contents
ISP-100
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Proprietary Notice
Shipping to Manufacturer for Repair or Adjustment
Procedure for Returns
Iii
Table of Contents
PEQ
Installing VUE-IT
Processing Components
Viii
Table of Contents
Glossary Standard Quickmap Library
An Overview of the ISP-100
Conventions Used in this Manual
About this Manual
Customer Support
Unpacking
Front Panel Features see Figure
Introduction
Power Requirements
Rear Panel Features see Figure
Operating Environment
Rack Mounting
Battery/module tool
Card Installation Procedure
Analog Audio MIM-1, MIM-2, MOM-1
Cable Diagrams
Balanced Input from Balanced Output
Balanced Input from Unbalanced Output
Digital Audio MDM-1 Cards
Balanced Output to Unbalanced Input
AES/EBU Input
Spdif Input
Spdif Output
AES/EBU Output
Serial Communications
Front Panel RS-232
Connections Over 50 Feet
Rear Panel RS-232
16Connector pinouts July
Master Sync Input
General Purpose Inputs GPI
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User Modifications
Case of Problems
Factory Default Mode
Diagnostics
Retrieving Serial Numbers
Retrieving Version Numbers
Schurter P/N Telex P/N
Changing the Battery
Changing the Fuse
Finland
Denmark
Helpful Information
Technical Support
Shipping to Manufacturer for Repair or Adjustment
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Components
Filters Property
Limiter Property
LowPass Filter Property
HighPass Filter Property
Combine Property
ISP-100 Component Plots
Input Property
Output Property
Peaked HighPass Filter
Gate Linkwitz-Riley 3-way Crossover Notch Filter
System Frequency Response System Noise Floor System THD+N
System Measurements
MIM-1 & MIM-2* Analog Input Modules
Power
Performance
Miscellaneous
MOM-1 Analog Output Module
Performance Sample Rate Converter Engaged1
MDM-1 AES/EBU Digital I/O Module
Mutes
Performance Sample Rate Converter bypassed
Physical
Power
Loading the Software
Minimum System Requirements
Identifying a Serial Port
1OS mismatch dialog
Updating the ISP-100’s Operating System
3Open OS file dialog
Dialog box similar to the one in the -6 should appear
Configuring the Software
9Communications error dialog
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1VUE-IT workspace
Starting VUE-IT
2Create new project dialog
Starting a New Project
4New project created
VUE-IT File System
Mounting Projects
Archiving Projects
QuickMAP Template Files
Component Directory
Using VUE-IT
Edit see Figure
Soft Mute Ramp in Ms
Window see Figure
System Configurations see Figure
Project Manager
Input Slot Bit Level
Properties for the ISP-100
Master Clock Selection
QuickMAP Selection
Project Properties
Component Properties
QuickMAP Properties
15Component export dialog
Component Export
Component Import
QuickSET Manager
Creating New QuickSETs
Configuring Input Pins
Deleting QuickSETs
Selecting the Active QuickSET
19 GPI panel
Testing the GPI Assignments
QuickMAP Component Bypassing
QuickMAP
Input
Using the Stereo Control
Using the Pad Control
Output
Using the Relay Control
Mute Control
Digital I/O Mute RX
Sample Rate Converter
Status Information
Input Stream Format
Input Stream Emphasis
Device Status Panel
Output Meters
Processing Components
Using the Text Box
Using the Knob
Using the UP/DOWN Arrows
Combine
Polarity Control +
Fine F or Coarse C Control
Mute Control M
Bypass Control master
Familiar Controls
Compressor
Compression Ratio
Threshold
Knee Selection
Attack Time
Release Time
Detection Window
Sidechain Source
Unfamiliar Controls
Crest Factor Sensitivity
Bypass
Metering
Overshoot
Computation of Average Level
Meter
Using the Slider
Sidechain
Knee Control
Ratio Control
Two-Way Crossovers
Crossover
July
Three-Way Crossovers
Two-way Linkwitz-Riley Crossovers
Three-way Bessel and Butterworth Crossovers
7Three-way Linkwitz-Riley crossover implementation
Three-way Linkwitz-Riley Crossovers
July
8Four-way crossover implementation
Four-Way Crossovers
9Four-way Bessel & Butterworth crossover implementation
Four-way Bessel and Butterworth Crossovers
10Four-way Linkwitz-Riley crossover implementation
Four-way Linkwitz-Riley Crossovers
LPx HPx = θx LPx + HPx = θ July
Four-way
Three-way
Low, Low-Mid, Mid, Mid-High and High Controls
Link/Unlink Control
Passband Gain
Class
Cutoff Frequency
Fine F or Coarse C Control
Attenuator
Cut
Attenuation and Polarity
Processing Components Cut
Setting Delay
Delay
Bit Level
Dither
Dither Bit Level
Dither Signal Characteristics
Filter Bands
Filter
HighPass Filters
LowPass Filters
HighShelf Filters
LowShelf Filters
Parametric EQ Filters
Notch Filters
Bandwidth
Center Frequency
Peak Magnitude
Boost and Cut
Peaked HighPass Filters
Filter Type
AllPass Filters
Active Band
Frequency in Hz
Boost/Cut
Using the Filter Tool
Using the Logarithmic Log. or Linear Control
Using the Magnitude Mag. or Phase Control
Using the 24 dB, 40 dB, 120 dB Controls
Gain Trim
Isolate Iso Control
Gain and Polarity
Gain
Pre-Fader Metering PFM
Master Attenuator
Fine or Coarse Control
Processing Components Gain
Opening Time
Gate
Gated Attenuation
Closing Time
Key Channel
Attenuation and Threshold Controls
Keying from Other Channels
Open, Window, Close Controls
19Limiter component
Limiter
Release Time
Unfamiliar Controls
Metering
Computation of Average Level
Fine or Coarse Control
Selecting the Input
Select
Glossary
DSP
Glossary
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Applying QuickMAPs
Identification of Slots and Connectors
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