Monitor: Remote Host Commands

S1-S2-and S3-records (Data Records)

S1nnaaaad1d2d3...dncs

S2nnaaaaaad1d2d3...dncs

S3nnaaaaaaaad1d2d3...dncs

Where:

S1

indicates the record type

nnis the count of data and checksum bytes

a...a

are the data bytes

cs

is the checksum

These are data records. They differ only in that S1-records have 16-bit addresses, S2- records have 24-bit addresses, and S3-records have 32-bit addresses.

Example: =>S10801A00030FFDC95B6

In this example, the bytes 0016, 3016, FF16, DC16, and 9516 are loaded into memory starting at address 01A016.

=>S30B30000000FFFF5555AAAAD3

In this example, the bytes FF16, FF16, 5516, 5516, AA16, and AA16 are loaded into memory starting at address 3000,000016. Note that this address requires an S3-record because the address is too big to fit into the address range of an S1-record or S2-record.

S5-records (Data Count Records)

S5nnd1d2d3...dncs

Where:

S5

indicates the record type

nnis the count of data and checksum bytes

d1...dn

are the data bytes

cs

is the checksum

S5-records are optional. When they are used, there can be only one per file. If an S5-record is included, it is a count of the S1-, S2-, and S3-records in the file. Other types of records are not counted in the S5-record.

Example: =>S5030343B6

In this example, the number of bytes is 3, the checksum is B616, and the count of the S1- records, S2-records, and S3-records in the file is 34316.

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PmT1 and PmE1 User’s Manual

8-25

Page 99
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Emerson PMT1, PME1 user manual S1-S2-and S3-records Data Records, S5-records Data Count Records

PMT1, PME1 specifications

The Emerson PME1 and PMT1 are advanced solutions in the realm of process management and automation, designed to enhance the efficiency and effectiveness of industrial operations. These devices play a crucial role in improving process control and providing comprehensive data analysis, which can lead to increased productivity and reduced operational costs.

The PME1 is characterized by its robust design and highly flexible architecture, allowing it to adapt to a variety of industrial environments. It integrates seamlessly with existing systems and offers advanced connectivity options to ensure that data flow is uninterrupted across different platforms. This feature is particularly important in modern industrial settings where data silos can inhibit operational efficiency.

The PMT1, on the other hand, focuses on real-time monitoring and telemetry. Its streamlined interface allows for quick access to key metrics, enabling operators to make informed decisions promptly. This is crucial in processes where timing is essential and minor delays can lead to significant financial losses. The PMT1 supports both wired and wireless communication protocols, ensuring that data is transmitted reliably irrespective of operational conditions.

One of the main features of both the PME1 and PMT1 is their integration of cutting-edge predictive analytics. With machine learning capabilities, these devices can analyze patterns and trends within the data, providing insights that can preemptively address potential issues before they escalate into significant problems. This predictive capability contributes to minimizing downtime and optimizing maintenance schedules, thus enhancing the overall lifecycle of equipment.

Another significant characteristic of the PME1 and PMT1 is their user-friendly interface. The intuitive design allows operators of all skill levels to navigate the systems with ease, minimizing training time and increasing overall productivity. With customizable dashboards, users can tailor their views to highlight the most relevant data for their specific operational needs.

In terms of security, both devices utilize advanced cybersecurity measures to protect sensitive data from unauthorized access. This is becoming increasingly important as industries rely more on digital solutions, and the potential risks associated with data breaches grow.

In summary, the Emerson PME1 and PMT1 are sophisticated tools designed for modern industrial applications, combining powerful features, advanced technologies, and essential characteristics. Their ability to provide real-time data analysis, ensure connectivity, and enhance predictive maintenance makes them invaluable for optimizing process management in various sectors. With a focus on user experience and data security, these devices are set to redefine efficiency and productivity in industrial operations.