Pioneer RS-232C manual Real Time Clock Request, Advanced Feature Menu Request

Models: RS-232C

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Current Address Request Descriptions

Explanation :

The command returns the player’s name as P1551XX where P1551

 

is the name of series and XX is a 2-digit serial code (not product serial number).

Execution :

 

 

 

 

Command String Status Return

DVD-V7200

 

 

 

 

 

?X<CR>

P155102<CR>

Series name P1551 and serial code

 

 

 

 

02

 

6.24Real Time Clock Request

Function

:

Returns the Real Time Clock

Format

:

?W

Explanation

:

The command returns the Real clock time in the following format:

YYthe last two digits of year MM month

DDdate

WWday, 00 means Monday, 06 means Sunday

HHhour 24-hour format MM minute

SSsecond

Execution :

 

 

 

Command String

Status Return

DVD-V7200

 

 

 

 

 

?W<CR>

98061002142520

Wednesday, April First, 8:30:25

 

 

<CR>

AM, 1998

6.25Advanced Feature Menu Request

Function

:

Returns the current setting of Industrial Player Menu.

Format

:

?S

Explanation

:

The player returns the current setting of Industrial Player Menu.

Basically, the return is expressed as some integer value. The value is made up with the sum of each argument you want. The default is 0 when the player was shipped. The player returns an error code if the command is issued when the player is showing Industrial Player Menu on the screen. See the description of Advanced Feature Menu Set (MS).

Execution :

 

 

 

Command String

Status Return

DVD-V7200

 

 

 

 

 

?S<CR>

112<CR>

Title repeat mode (16)

 

 

 

Baud rate is 9600bps (32)

 

 

 

Tray lock on (64)

 

 

 

 

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Page 71
Image 71
Pioneer RS-232C manual Real Time Clock Request, Advanced Feature Menu Request

RS-232C specifications

The Pioneer RS-232C is a significant component in the realm of communication technology, especially known for its application in serial communications. Initially introduced in the 1960s as part of the EIA-232 standard, RS-232C has evolved through various iterations to become a foundational interface for connecting data communication equipment (DCE) with data terminal equipment (DTE). This article outlines its main features, technologies, and characteristics.

One of the hallmark features of RS-232C is its ability to facilitate point-to-point communication. It allows for a direct link between two devices, making it suitable for a variety of applications, including modems, printers, computers, and other peripherals. The RS-232C interface typically uses a 25-pin connector, although a 9-pin variant is also common in many modern devices. This interface is based on serial communications, where bits are sent sequentially over a single channel, leveraging fewer wires compared to parallel communication methods.

In terms of technology, RS-232C operates primarily at voltage levels of +12V to -12V, which provide the necessary signaling for data transmission. The standard supports baud rates ranging from 300 to 115200 bps, accommodating various data transfer speeds depending on the needs of the hardware involved. RS-232C defines various electrical characteristics and timing requirements, ensuring robust performance over relatively short distances, typically up to 15 meters, depending on the baud rate.

Another essential aspect of the RS-232C standard is its use of asynchronous communication, allowing devices to transmit data without having to synchronize their clocks. Each data packet typically consists of a start bit, a predefined number of data bits (usually 7 or 8), an optional parity bit for error-checking, and one or more stop bits. This method allows for error detection and ensures data integrity during transmission.

Despite its age, the RS-232C interface remains relevant, especially in industrial applications, instrumentation, and legacy systems. Its simplicity, low cost, and widespread acceptance make it a versatile choice for connecting various devices, even in a world increasingly dominated by USB and other modern interfaces.

In conclusion, the Pioneer RS-232C is a remarkable testament to the enduring nature of serial communication technology. Its straightforward design, reliability, and ease of integration continue to make it a staple in numerous applications, underscoring its significance in the landscape of data communication.