Crown IQSMX-6, IQAMB-5 manual Computerized Control and Monitoring, Automatic Mixing Features

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AMB-5 /SMX-6IQ Mixer/Multiplexer

output channel) via RCA pin jacks. Each input en- ters the mix of the respective output channel at unity gain, and without manual or computer input control. These stack inputs allow you to multiply the number of audio inputs by stacking 2, 3, or more units to build a larger mixer. See section 5.1.4 for more infor- mation about forming larger mixers.

4.1.10 Crown Bus Connector

A4-pin removable barrier block connector is pro- vided for digital communication via the Crown Bus serial data loop to other IQ components. A ground lug is provided to connect an optional shield for the Crown Bus input.

4.1.11 Crown Bus Ground Connector

This chassis ground stud is provided to connect an optional shield for the Crown Bus cable. Only the shield of the input cable should be connected. Shielded wire will reduce the total distance a Crown Bus loop can be run, but shielding may be neces- sary to reduce interference with certain kinds of audio cables. See section 5.5 for more information about wiring the Crown Bus.

4.1.12 RS232 Serial Computer Port

A9-pin DB9 serial computer port is provided for direct communication with a computer. The mixer/ multiplexer is capable of serving as a system inter- face for up to 20 IQ mixer/multiplexers.

4.1.13 Sensing AUX Port

ATB-3M type “mini-XLR” connector is provided for AUX input and output. This port may be used to provide a control signal or sense a control signal. Pin 1 is ground reference. Pin 2 is a sensing input. A signal between +5 to +30 VDC is sensed as a logic high. Because the circuit floats, the input line must be tied to ground or a control voltage source to be used. Pin 3 is output under processor control. When on, it provides 10 VDC at 16 ma, and when off, it is effectively an open circuit (high impedance). Sec- tion 6.2 describes example applications for the AUX port.

4.2 Computerized Control and Monitoring

The following features are controlled and monitored via IQ software.

4.2.1 Manual/Auto Mode

This feature switches the mixer/multiplexer between Manual and Automatic modes. When in Manual mode, you may make changes from software that

affect VCA gain in real time. Gain may also be ma- nipulated in real time from alternate third-party con- trol systems or devices. In manual mode, once VCA gains are set via the PC (or control device) the processor maintains those settings until it receives an instruction to change.

4.2.2 Input Level Monitors

Audio level monitors are provided for each input. The level is sensed between the preamp and VCA's, with a range of –40 to +25 dBu.

4.2.3 Output Level Monitors

Audio level monitors are provided for each output. The level is sensed at each output mix bus with a range of –40 to +25 dBu.

4.2.4 Bus Output Relays

Audio bus outputs can be switched on and off with software controlled isolation relays.

4.2.5 VCA Gain Controls

Each input may be routed to either or both outputs by VCAs under processor control. The processor may, in turn, be set up to control VCAs using on board automatic intelligence or may be controlled in real time manually from software. The VCAs offer a control range of –100 to +25 dB.

Automatic Mixing Features

The following features make up the Automatic Mix- ing Feature Set, and are only functional when the mixer/multiplexer is in Auto mode. All features are common to the IQ–AMB-5 and IQ–SMX-6 unless otherwise stated.

4.2.6 Gate

The gate feature shuts off or attenuates inputs when not in use. This feature is particularly useful to pre- vent feedback caused by too many open micro- phone channels. There are four parameters which control this feature:

Max Gain control: used to set the maximum gain for an input to one of the two outputs when Auto is turned on. The Max Gain setting has different effects when different Auto functions are active. For example, when the Gate func- tion is activated the Max Gain will be the “gate open” level. When then Input Compressor/Lim- iter function is activated, it acts as the “limit,” the upper gain achieved when no compression is taking place.* Control range is from –100 to

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IQ–AMB-5 / IQ–SMX-6 Reference Manual

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Contents AMB-5/*SMX-6 Three Year Full Warranty Important Safety Instructions Exclamation Mark Symbol Lightning Bolt SymbolCrown Audio Technical Support Group Quick Install Procedure Contents Illustrations IQ Audio In DepthWelcome UnpackingControls, Connectors & Indicators IQ Mixer / Multiplexer Controls, Connectors & IndicatorsHardware Installation Connecting to a Host Computer StepConnecting to the Crown Bus Step Set the IQ Address SwitchSelecting the IQ Address and Communication Parameters PIN Connect the Audio Wiring Step Connect Auxiliary Devices StepOperation HardwareAutomatic Mixing Features Computerized Control and MonitoringDuck Priority Input CompressorGate Count Ambience IQ-AMB-5 onlyTechnical Information Crown Local Net IQ-SMX-6 onlyAudio Input SectionControl and Interface Section IQ-AMB-5 Block Diagram IQ-SMX-6 Block Diagram IQ Audio In Depth Closer Look at Audio Signal WiringInput Cable ShieldedTwin-lead IQ-AMB-5 Ambient Sensing InputStack Inputs Audio Output SectionCorrect way to wire stacked units is shown below Paralleling inputsUsing the AUX Port 15 Internal Auxiliary CircuitWiring the Crown Local Net Mixer/Multiplexer as a 1-Loop IQ InterfaceCloser Look at Crown Bus Wiring IQ Address Switch IQ Address TablesIQ Address Switch Settings from 126 to Crown Audio Customer Service Factory ServiceFactory Service Shipping Instructions Crown Factory Service Information

IQAMB-5, IQSMX-6 specifications

Crown IQSMX-6 and IQAMB-5 are revolutionary products designed for various applications in the electronic and automotive sectors, delivering high performance, reliability, and advanced features. These models showcase Crown's commitment to delivering cutting-edge solutions tailored for modern needs.

The Crown IQSMX-6 is a compact, high-efficiency power module equipped with a variety of features aimed at optimizing performance while minimizing energy consumption. One of its standout characteristics is the integration of advanced thermal management technologies. This module effectively dissipates heat, ensuring stable operation even under demanding conditions. The IQSMX-6 supports a wide input voltage range, making it adaptable for different applications, from consumer electronics to industrial machinery.

In contrast, the IQAMB-5 focuses on advanced analytics and monitoring capabilities. This model utilizes sophisticated algorithms for real-time data processing, allowing users to monitor system performance metrics and identify potential issues before they escalate. The architecture of the IQAMB-5 includes an intuitive user interface that simplifies operation, making it accessible for both skilled technicians and those new to the technology. Additionally, it features robust communication protocols, ensuring seamless integration with existing systems for enhanced interoperability.

Both models leverage Crown's proprietary technology, which includes energy-saving techniques that not only boost efficiency but also contribute to reducing operational costs. Their design emphasizes sustainability, catering to industries seeking environmentally responsible solutions. Furthermore, the compact form factor of the IQSMX-6 and IQAMB-5 enables easy installation in constrained spaces, providing versatility in deployment.

Security is another focal point for both devices. They incorporate advanced cybersecurity measures to protect data integrity and user privacy. This function is vital in today's digital landscape, where threats are ever-evolving, and organizations require reliable systems that prioritize safety.

Overall, the Crown IQSMX-6 and IQAMB-5 stand out as leading-edge solutions that embody Crown's mission to innovate and advance technology. With their distinctive features, state-of-the-art technologies, and commitment to quality, these models are poised to cater to a wide range of industries and applications, helping organizations enhance their operational capabilities while striving for sustainability. Through continuous improvements and adaptability, these products represent the future of efficient, secure, and smart technology.