Crown IQAMB-5, IQSMX-6 Technical Information, Crown Local Net IQ-SMX-6 only, Audio, Input Section

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AMB-5 /SMX-6IQ Mixer/Multiplexer

increase in the ambient signal level above the Threshold setting. A 4:1 Expansion Ratio set- ting will raise the output gain 1 dB for every 4 dB that the ambient signal increases. Choices are 1:1, 1.5:1, 2:1, 2.5:1, 3:1, 4:1, and 5:1.

Threshold: determines at what ambient sound level the Ambience function will begin to oper- ate. It is the sound pressure level of the ambi- ent sensing input (Input 6). When the signal level of Input 6 exceeds the Threshold setting, the Ambience function begins to increase the gain of Channel 1 at a rate dictated by the Ex- pansion Ratio control. Control range is from –100 to +25 dB in 1/2-dB steps.

Ambient Offset: the level below Max Gain to which the Channel 1 gain will be set until the ambience level exceeds the Threshold setting. As the ambience level increases above the Threshold setting, the Channel 1 gain will be increased above the Ambient Offset according to the Expansion Ration setting. The Max Gain setting always limits the maximum possible gain which any input can receive. Control range is from 0 to +40 dB in 1/2-dB steps.

4.3 Crown Local Net (IQ–SMX-6 only)

The Crown Local Net (CLN) allows multiple IQ–SMX- 6 units to be linked so that their Duck Priority and Gate Count functions work together. For example, a duck priority 1 in one unit will override a priority 2 in another unit. Likewise on the gate count side, the number of open mics can be totaled among all the IQ–SMX-6 units in a CLN and all open inputs attenu- ated to prevent feedback in a large system. Use of this feature requires that the serial port of each IQ– SMX-6 be dedicated to CLN use, meaning that if the IQ–SMX-6 is to be used with CLN, it cannot be used as a system interface. Successful setup of a CLN requires that the setup be performed in a particular sequence of steps. Please refer to the IQ software documentation for setup procedures. There are five parameters which control this feature:

System On/Off: activates the Crown Local Net. This control should only be turned on for the first time after all of the following pa- rameters have been set. Please refer to the IQ software documentation for setup proce- dures.

Master On/Off: selects the master IQ–SMX-6 as required by the start-up procedure. Only one IQ–SMX-6 should be the master. Neither

the Crown Local Net nor the IQ–SMX-6 units will function properly if more than one unit is se- lected as a master.

External Functions On/Off: setting this control to ON allows the IQ–SMX-6 to participate in the Crown Local Net.

Duck On/Off: setting this control to ON allows the IQ–SMX-6 to respond to external Duck Pri- ority functions.

Gate Count On/Off: setting this control to ON allows the IQ–SMX-6 to respond to external Gate Count functions.

5 Technical Information

Following is a technical description of the operation of the IQ–AMB-5 and IQ–SMX-6 mixer/multiplexers. Re- fer to the block diagrams on the following pages for illustration of signal flow.

5.1 Audio

5.1.1 Input Section

Each audio input signal first passes through a bal- anced filter designed to eliminate RF interference. The RF filters are a balanced network of chokes, ferrite beads and capacitors that attenuate both common- mode and differential-mode signals above 500 kHz. Optional input isolation transformers can also be added by the factory.

The signal then enters the input switching circuit. This circuit can insert a 25 dB pad for line level signals or apply phantom power to the input terminals (44 volts through two 6810 ohm resistors). The signal is filtered again to eliminate lower-frequency RF energy such as interference from the AM broadcast band. The signal then goes to the preamp stage.

Each of the six input preamplifier stages is a balanced circuit providing from 13 to 46 dB of voltage gain. The preamp consists of a pair of low-noise transistors, fol- lowed by a high performance op-amp. The transistors, in effect, convert the input voltage to a current while maintaining reasonably high input impedance. Their transconductance (output current divided by input voltage) depends on the setting of the gain control. The op-amp then converts the current back to a volt- age to drive subsequent circuits.

5.1.2 VCA Sections

Each preamplifier output drives two VCAs which then

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 IQ Audio In Depth IllustrationsUnpacking WelcomeIQ Mixer / Multiplexer Controls, Connectors & Indicators Controls, Connectors & IndicatorsConnecting to a Host Computer Step Hardware InstallationSet the IQ Address Switch Connecting to the Crown Bus StepSelecting the IQ Address and Communication Parameters PIN Connect Auxiliary Devices Step Connect the Audio Wiring StepHardware OperationComputerized Control and Monitoring Automatic Mixing FeaturesInput Compressor Duck PriorityAmbience IQ-AMB-5 only Gate CountInput Section Technical InformationCrown Local Net IQ-SMX-6 only AudioControl and Interface Section IQ-AMB-5 Block Diagram IQ-SMX-6 Block Diagram IQ Audio In Depth Closer Look at Audio Signal WiringInput IQ-AMB-5 Ambient Sensing Input CableShielded Twin-leadAudio Output Section Stack InputsParalleling inputs Correct way to wire stacked units is shown below15 Internal Auxiliary Circuit Using the AUX PortMixer/Multiplexer as a 1-Loop IQ Interface Wiring the Crown Local NetCloser Look at Crown Bus Wiring IQ Address Tables IQ Address SwitchIQ 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.