Address

Register Name

 

 

 

SONET/SDH Transmit Registers

 

 

0x0B4

Transmit G1 Control

 

 

0x0B5

Reserved

 

 

0x0B6-0x0F5

Transmit J1 Bytes (64)

 

 

0x0F6

Reserved

 

 

0x0F7

POH Error Generation

 

 

0x0F8

Transmit C2 Byte

 

 

 

SONET/SDH Receive Registers

 

 

0x0F9

Receive LOH Monitor Delta

 

 

0x0FA

Receive SOH Monitor Delta

 

 

0x0FB

Reserved

 

 

0x0FC

Receive LOH Monitor Masks

 

 

0x0FD

Receive SOH Monitor Masks

 

 

0x0FE

Reserved

 

 

0x0FF

Receive TOH Monitor Control 1

 

 

0x100

Reserved

 

 

0x101

Receive Framer Position Control

 

 

0x102

Receive LOH Status

 

 

0x103

Receive SOH Status

 

 

0x104-0x113

Receive J0 Bytes (16)

 

 

0x114

Receive S1 LSBs

 

 

0x115

Receive K2 Byte

 

 

0x116

Reserved

 

 

0x117

Receive K1 Byte

 

 

0x118-0x119

Receive B1 Error Count

 

 

0x11A

Reserved

 

 

0x11B-0x11D

Receive B2 Error Count

 

 

0x11E

Reserved

 

 

0x11F-0x121

Receive M1 Error Count

 

 

(continues)

45

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Image 45
Agilent Technologies HDMP-3001 manual Address Register Name SONET/SDH Transmit Registers, SONET/SDH Receive Registers

HDMP-3001 specifications

Agilent Technologies, a prominent name in electronics and measurement technology, offers a wide range of products that cater to various industries. Among its notable offerings is the HDMP-3001, a high-speed, serial data transceiver designed to facilitate robust communications in electronic systems. The HDMP-3001 stands out with its ability to handle high bandwidths, making it particularly suited for applications requiring rapid data transfer, such as telecommunications, computer networking, and high-performance computing.

One of the main features of the HDMP-3001 is its advanced signaling technology. By employing differential signaling, the transceiver minimizes electromagnetic interference and enhances signal integrity. This is crucial in environments with multiple electronic devices operating simultaneously, as it ensures data is transmitted clearly and without degradation.

The HDMP-3001 operates at a maximum data rate of 1 Gbps, allowing for efficient data transfer over short distances. This capability is coupled with a flexible architecture that enables users to configure the transceiver for various applications. The device supports both point-to-point and point-to-multipoint configurations, giving engineers the versatility they need in designing communication links.

Moreover, the HDMP-3001 features on-chip clock recovery functionality, which simplifies system design by reducing the number of external components needed. This built-in feature allows the transceiver to maintain synchronization even as data rates increase, further enhancing performance.

The low power consumption characteristic of the HDMP-3001 is another notable advantage. This makes it an attractive choice for battery-operated devices and systems where power efficiency is critical. The transceiver’s design ensures optimal performance while minimizing heat generation and power draw, enabling longer operational lifetimes.

In terms of physical characteristics, the HDMP-3001 comes in a compact, surface-mount package, allowing for easier integration into various circuit board designs. The small form factor, combined with its innovative technology, makes it a popular choice among engineers seeking to improve data transmission reliability without compromising on space or power constraints.

Overall, Agilent Technologies' HDMP-3001 is a formidable solution for high-speed serial data transmission, characterized by its robust performance, low power consumption, and versatile configuration options. With these features, it continues to be an essential component in the evolving landscape of electronic communications.