(1) Display format : 122 32 dot-matrix ; 1/32 duty.
(2) Construction : STN / FSTN LCD, Bezel, Zebra and PCB.
(3) Optional LED or EL back-light.
(4) Controller : SED1520 or Equivalent.
(5) Besides +5V for logic circuit.
(6) Normal / Extended temperature type.
Parameter | Stand Value | Unit |
Dot size | 0.36(W) 0.41(H) | mm |
Dot pitch | 0.40(W) 0.45(H) | mm |
Viewing area | 60.0(W) 18.0(H) | mm |
Module size | 84.0(W) 44.0(H) 9.3 max (T) | mm |
Module size ( LED back-light) | 84.0(W) 44.0(H) 13.0 max (T) | mm |
Parameter | Symbol | Min | Max | Unit | |
Logic Circuit Supply Voltage | VDD-VSS | 0 | 8.0 | V | |
LCD Driving Voltage | VDD-VO | 0 | 10.0 | V | |
Input Voltage | VI | VSS | VDD | V | |
Operating Temp. | TOP | 0 | 50 | C | |
Storage Temp. | TSTG | -20 | 70 | C | |
Operating Temp. | TOP | -20 | 70 | C | |
Storage Temp. | TSTG | -30 | 80 | C |
*************************************************************************************************************
Enhancing Aerospace Technology with Liquid Crystal Displays
Introduction:
The aerospace industry is constantly evolving, seeking innovative technologies to enhance safety, efficiency, and overall performance. One such technology that has revolutionized the industry is the liquid crystal display (LCD). LCDs have become an integral part of aerospace systems, offering numerous benefits and applications. This article will explore the various ways in which LCDs are utilized in the aerospace field, highlighting their significance and impact.
1. Cockpit Displays:
One of the most prominent applications of LCDs in the aerospace industry is in cockpit displays. LCD screens offer clear, high-resolution visuals, enabling pilots to access critical information swiftly and accurately. These displays provide real-time data on flight parameters, navigation systems, weather conditions, and engine performance. With LCDs, pilots can easily interpret complex information, enhancing situational awareness and facilitating informed decision-making. Moreover, LCDs are lightweight, compact, and consume minimal power, making them ideal for aircraft installations.
2. Passenger Entertainment Systems:
Another significant application of LCDs in aerospace is in passenger entertainment systems. Modern aircraft are equipped with LCD screens embedded in the seatbacks, offering passengers a wide range of entertainment options. These displays provide high-quality video playback, gaming capabilities, and even access to internet services. LCDs ensure a pleasant and engaging travel experience for passengers, making long-haul flights more enjoyable and comfortable.
3. Communication and Control Systems:
LCDs are also extensively used in aerospace communication and control systems. From air traffic control consoles to mission control centers, LCD displays enable operators to monitor and manage various aspects of aerospace operations. These displays provide real-time data visualization, allowing operators to track aircraft movements, monitor radar systems, and communicate with pilots effectively. The high-resolution visuals and intuitive interfaces of LCDs enhance operational efficiency and enable swift decision-making.
(1) Display format : 122 32 dot-matrix ; 1/32 duty.
(2) Construction : STN / FSTN LCD, Bezel, Zebra and PCB.
(3) Optional LED or EL back-light.
(4) Controller : SED1520 or Equivalent.
(5) Besides +5V for logic circuit.
(6) Normal / Extended temperature type.
Parameter | Stand Value | Unit |
Dot size | 0.36(W) 0.41(H) | mm |
Dot pitch | 0.40(W) 0.45(H) | mm |
Viewing area | 60.0(W) 18.0(H) | mm |
Module size | 84.0(W) 44.0(H) 9.3 max (T) | mm |
Module size ( LED back-light) | 84.0(W) 44.0(H) 13.0 max (T) | mm |
Parameter | Symbol | Min | Max | Unit | |
Logic Circuit Supply Voltage | VDD-VSS | 0 | 8.0 | V | |
LCD Driving Voltage | VDD-VO | 0 | 10.0 | V | |
Input Voltage | VI | VSS | VDD | V | |
Operating Temp. | TOP | 0 | 50 | C | |
Storage Temp. | TSTG | -20 | 70 | C | |
Operating Temp. | TOP | -20 | 70 | C | |
Storage Temp. | TSTG | -30 | 80 | C |
*************************************************************************************************************
Enhancing Aerospace Technology with Liquid Crystal Displays
Introduction:
The aerospace industry is constantly evolving, seeking innovative technologies to enhance safety, efficiency, and overall performance. One such technology that has revolutionized the industry is the liquid crystal display (LCD). LCDs have become an integral part of aerospace systems, offering numerous benefits and applications. This article will explore the various ways in which LCDs are utilized in the aerospace field, highlighting their significance and impact.
1. Cockpit Displays:
One of the most prominent applications of LCDs in the aerospace industry is in cockpit displays. LCD screens offer clear, high-resolution visuals, enabling pilots to access critical information swiftly and accurately. These displays provide real-time data on flight parameters, navigation systems, weather conditions, and engine performance. With LCDs, pilots can easily interpret complex information, enhancing situational awareness and facilitating informed decision-making. Moreover, LCDs are lightweight, compact, and consume minimal power, making them ideal for aircraft installations.
2. Passenger Entertainment Systems:
Another significant application of LCDs in aerospace is in passenger entertainment systems. Modern aircraft are equipped with LCD screens embedded in the seatbacks, offering passengers a wide range of entertainment options. These displays provide high-quality video playback, gaming capabilities, and even access to internet services. LCDs ensure a pleasant and engaging travel experience for passengers, making long-haul flights more enjoyable and comfortable.
3. Communication and Control Systems:
LCDs are also extensively used in aerospace communication and control systems. From air traffic control consoles to mission control centers, LCD displays enable operators to monitor and manage various aspects of aerospace operations. These displays provide real-time data visualization, allowing operators to track aircraft movements, monitor radar systems, and communicate with pilots effectively. The high-resolution visuals and intuitive interfaces of LCDs enhance operational efficiency and enable swift decision-making.