Madge Networks 1200, 1300 manual 12.1″ TFT LCD FPC Asm. for Hitachi 27L0581

Models: 1300 1200

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No.

Description

FRU No.

 

 

 

 

12.1TFT LCD FPC Asm. (for Hitachi

27L0581

 

LCD)

 

 

 

 

 

12.1HPA LCD FPC Asm.

27L0552

 

 

 

6

12.1Hinge Asm (R,L)

08K6547

 

12.1LCD Hinge (L)

 

 

12.1LCD Hinge (R)

 

 

 

 

7

LCD Rear Cover Asm for 12.1(for

08K6541

 

Sanyo LCD, W/W, and for 12.1HPA

 

 

LCD)

 

 

12.1LCD rear cover

 

 

LCD panel mica

 

 

LCD latch (L)

 

 

LCD latch (R)

 

 

LCD latch spring *2

 

 

IBM Logo

 

 

LCD panel Deco plate

 

 

 

 

 

LCD Rear Cover Asm for 12.1(for

08K6652

 

Sanyo LCD, Japan)

 

 

12.1LCD rear cover

 

 

LCD panel mica

 

 

LCD latch (L)

 

 

LCD latch (R)

 

 

LCD latch spring *2

 

 

IBM Logo

 

 

LCD panel Deco plate

 

 

 

 

 

LCD Rear Cover Asm for 12.1(for

04P3127

 

Hitachi LCD, W/W)

 

 

12.1LCD rear cover

 

 

IBM Logo

 

 

 

 

 

LCD Rear Cover Asm for 12.1(for

04P3128

 

Hitachi LCD, Japan)

 

 

12.1LCD rear cover

 

 

IBM Logo

 

 

 

 

8

LED board Asm.

08K3170

 

 

 

9

LED-Inverter Cable for 12.1LCD

27L0577

 

 

 

 

LED-Inverter Cable for Hitachi 12.1

08K3167

 

LCD

 

 

 

 

 

LG/IBM Logo Kit

08K5860

 

for LCD Rear Cover

 

 

for KBD Bezel

 

 

 

 

10

Hinge Cap Asm. (for 12.1& 13.0)

08K6549

 

 

 

ThinkPad i Series 1200/1300 105

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Madge Networks 1200, 1300 manual 12.1″ TFT LCD FPC Asm. for Hitachi 27L0581

1300, 1200 specifications

Madge Networks was a pioneering entity in the networking industry, notably recognized for its advanced solutions in the area of Token Ring technology during the late 20th century. The Madge Networks 1200 and 1300 series, launched in the mid-1990s, represented significant advancements in network performance and reliability.

The Madge Networks 1200 series was designed to cater to businesses looking for a robust networking infrastructure. This series supported Token Ring networks, which offered advantages such as reduced collision domains, enhanced fault tolerance, and improved data integrity. With a throughput of up to 16 Mbps, the 1200 series provided companies with the ability to efficiently handle data-intensive applications. Its architecture allowed for seamless integration with existing networks, ensuring a smooth transition for organizations upgrading their infrastructure.

On the other hand, the Madge Networks 1300 series took performance a step further. It offered higher throughput capabilities, advancing up to 100 Mbps. This was a remarkable leap for organizations striving for increased bandwidth and lower latency in their communications. The 1300 series featured more advanced management tools, providing network administrators with enhanced visibility and control over network performance. These tools facilitated real-time monitoring and troubleshooting, which were vital for maintaining optimal network health.

Both series utilized proprietary technologies such as the Madge Token Ring ASIC, which improved reliability and performance under high-load conditions. They also featured support for multiple network topologies and configurations, making them highly versatile for different business environments. The hardware was designed for easy scalability, allowing enterprises to expand their networking capabilities without significant overhauls.

Security features were also integrated into both the 1200 and 1300 series. With built-in functionalities for network access control and error detection, these devices ensured a secure networking environment. Each device was engineered to support redundancy protocols, minimizing chances of service disruptions, crucial for mission-critical applications.

In summary, the Madge Networks 1200 and 1300 series exemplified the networking innovations of their era, combining performance with reliability and scalability. They catered to various business needs, providing a flexible and secure networking solution that paved the way for future advancements in enterprise networking. Their legacy continues to influence modern networking technologies.