Elmo DSP 305 manual LSS Services, LSS Master-Slave Synchronization & Protocol

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CANopen DSP 305 Implementation Guide

MAN-CAN305IG (Ver. 1.1)

3-1

3 LSS Services

LSS services can be functionally grouped into four categories:

ƒSwitch Mode Services provide a way to logically connect the LSS Master and LSS Slave(s) for configuration purposes. They change the LSS mode attribute of the LSS Slave (see the Figure 3-1).

ƒConfiguration Services perform the actual task of configuring the layer parameters of LSS Slave(s). The configuration services are only available in configuration mode.

ƒInquiry Services provide a way for the LSS Master to determine layer parameters. The inquiry services are available only in configuration mode.

ƒIdentification Services provide a way for the LSS Master to determine the presence of a device and to check for devices with invalid Node-ID. The identification services are available in configuration and operation mode.

Configuration Mode

Switch Mode Global

Switch Mode Global

Operation_Mode

Operation_Mode

parameter with Node

parameter with Node

I.D. unchanged

I.D. unchanged

Operation Mode

Switch Mode global Operation Mode parameter with Node- ID changed.

Switch Mode selective with Matching LSS- address parameter.

Power-on

Reset

Node Diagram

Figure 3-1 LSS Slave Modes and Switching Services

3.1LSS Master-Slave Synchronization & Protocol

In the LSS Protocol all slaves use the same Communications Object (COB) to send information to the LSS Master. In order to ensure that only one LSS Slave communicates with the LSS Master at a time, a switching mechanism, under the control of the LSS Master is implemented.

A slave can only communicate with the Master after it has been switched into Configuration Mode by the master. In other words, the Master must first take the initiative. Furthermore, the Slave only communicates specific information requested by the Master.

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Contents Elmo Motion Control CANopen DSP Implementation Guide Important Notice VerContents Abbreviations and Terms IntroductionObjectives of LSS LSS Hardware Restrictions LSS Address LSS Operating RestrictionsElmo Documentation Configuration and the Operation Modes Configuration ModeOperation Mode LSS ModesLSS Services LSS Master-Slave Synchronization & ProtocolSwitch Mode Services Switch Mode GlobalSwitch Mode Selective Switch Slaves, from Specific Vendor, to Configuration ModeSpecific Error Codes Configuration ServicesConfiguration Node-ID Standard CiA Bit Timing Table Table Index Baud Rate Configuration Bit Timing ParametersTable Selector Table Table Selection 12 Activate Bit Timing Parameters Switchdelay Activate Bit Timing ParametersStore Configuration Parameters 13 SwitchDelay PeriodsInquiry Services Inquire LSS AddressInquire Node-ID 20 Inquire Revision-NumberIdentification Services LSS Identify Remote SlavesLSS Identify Slave Protocol Revision-Number-LowExample 32 Slave Serial-Number ConfirmationImplementation Rules CAL Layer Management LMTInvalid COBs Time-Outs

DSP 305 specifications

The Elmo DSP 305 is a state-of-the-art digital signal processor designed for various applications, ranging from audio processing to advanced communication systems. This versatile device is well-known for its powerful performance, compact size, and robust features, making it an essential tool for engineers and developers in the field of signal processing.

One of the standout features of the Elmo DSP 305 is its high processing power. Equipped with a multi-core architecture, it can handle complex algorithms and computations efficiently, enabling real-time processing capabilities. This is particularly beneficial for applications that require immediate response times, such as live audio effects or communication systems that necessitate low latency.

The DSP 305 supports multiple audio and data formats, allowing for seamless integration into various systems. Its compatibility with industry-standard protocols, like AES/EBU and S/PDIF, ensures that it can interface effortlessly with other audio devices. Additionally, the processor is designed to support both stereo and multichannel audio processing, making it ideal for professional sound engineers and producers.

Another notable characteristic of the Elmo DSP 305 is its advanced features in digital filtering. It offers a broad range of filter types, including FIR and IIR filters, that can be configured for specific applications. This level of customization allows for precise manipulation of audio signals, catering to different production needs. Furthermore, the DSP incorporates state-of-the-art equalization capabilities, enabling users to fine-tune sound profiles with ease.

The device also boasts a user-friendly interface, which is crucial for rapid development and programming. It includes a comprehensive software development kit (SDK) that provides extensive libraries, tools, and documentation, making it accessible even for those who are new to DSP programming. This open architecture promotes creativity, allowing developers to create innovative applications without being restricted by the hardware capabilities.

On the technological front, the Elmo DSP 305 leverages advanced power management techniques, ensuring energy efficiency which is vital for mobile and remote applications. This ensures longer operational times without compromising on performance.

In summary, the Elmo DSP 305 stands out as a powerful, flexible, and efficient digital signal processor. With its high processing power, extensive compatibility, advanced filtering, and user-friendly programming environment, it is a valuable asset for professionals in various industries aiming to push the boundaries of signal processing applications. Its innovative capabilities make it suitable for everything from high-end audio production to sophisticated communication systems, establishing it as a leader in its class.