Hitachi SP14Q003-C1 LCD Show
Hitachi SP14Q003-C1 LCD Show





The Hitachi SP14Q003-C1 is an LCD display manufactured by KOE with the next specs:
Panel Model: KOE
Panel Mannequin: SP14Q003-C1
Panel Kind: STN-LCD, LCM
Panel Dimension: 5.7 inch
Decision: 320×240, QVGA
display Mode: STN, Blue mode (Destructive), Transmissive
Energetic Space: 115.185×86.385 mm
Define: 167×109×10 mm
Floor: Antiglare
Brightness: 100 cd/m² (Typ.)
Distinction Ratio: 6:1 (Typ.)
Show Colours: Monochrome
Response Time: 120/150 (Typ.)(Tr/Td)
Frequency: 75Hz
Lamp Kind: 1 pcs CCFL (Chilly Cathode Fluorescent Lamp)
Lamp Driver: With out Driver
Sign Interface: Parallel Information (4-bit), 14 pins
Enter voltage: 3.3/5.0V (Typ.)(VDD)
The SP14Q003-C1 encompasses a 5.7-inch STN-LCD panel with a decision of 320×240 pixels, offering a QVGA show. The show operates in STN (Tremendous-Twisted Nematic) mode with blue mode (Destructive) and a transmissive configuration.
The energetic space of the show measures 115.185×86.385 mm, whereas the define dimensions are 167×109×10 mm.
It offers a response time of 120/150 ms (Tr/Td), indicating the time it takes for pixels to transition between states.
The show operates at a frequency of 75Hz, guaranteeing clean picture rendering. It makes use of a single CCFL (Chilly Cathode Fluorescent Lamp) backlight with out a separate driver.
The sign interface is parallel information with a 4-bit configuration, utilizing a 14-pin connector. The enter voltage sometimes ranges between 3.3V and 5.0V for VDD (energy provide).
General, the Hitachi SP14Q003-C1 LCD show is a 5.7-inch monochrome panel appropriate for purposes the place a low-resolution, high-contrast show is required. Its compact measurement, antiglare floor, and vast working voltage vary make it appropriate for numerous industrial and industrial purposes.
latest Update
- T-Mobile will start automatically moving some customers to pricier plans
- Nvidia’s Jensen Huang tops “most popular CEOs” survey, check out the best and worst approval ratings
- Google recently mitigated the largest DDoS attack ever, peaking at 398 million requests per second
- Illuminating errors creates a new paradigm for quantum computing
- Alternative method cuts time for computer simulation of absorption spectrum from days to hour
- MYTH #2: e-mode devices have no Qrr
- AI energy demands could soon match the entire electricity consumption of Ireland
- Self-healing phone screens could be here by 2028
- Increased power density for POL converters with smallest buck regulator modules
- New 800V N-channel depletion mode MOSFET supplied in modified SOT-223-2L package