7 Segment Display Reflective LCD Screen & Custom Transmissive LCD
Display
Product Specifications
| Type | TN LCD Display |
|---|
| Backlight Color | White, Blue or Red |
|---|
| Voltage | 2.8~5.0V |
|---|
| Connector | Pin, Zebra or FPC |
|---|
| Driving Method | 1/4 Duty, 1/3 Bias |
|---|
| Polarizer Type | Transmissive |
|---|
Technical Parameters
| Item | Content | Description |
|---|
| 1 | LCD Type | TN LCD Display |
| 2 | Outline Size | Customized |
| 3 | VA Size | Custom |
| 4 | Viewing Direction | 12 O'clock |
| 5 | Voltage | 2.8V ~5.0V |
| 6 | Display Mode | Positive |
| 7 | Backlight | With or without |
| 8 | Operation Temp | -10°C TO +20°C |
| 9 | Storage Temp | -20°C TO +70°C |
| 10 | Contactor | Pin, Zebra or FPC |

Reflective Liquid Crystal Display (RLCD)
Product Introduction
Reflective LCD technology features a core structure consisting of a
bottom reflective layer, transparent electrodes, and a liquid
crystal layer. Unlike traditional LCDs, it operates without a
backlight by reflecting ambient light and controlling liquid
crystal molecule orientation through an electric field to modulate
light and form images. Available in passive and active types,
passive RLCDs rely solely on ambient light with reduced performance
in low-light conditions, while active types incorporate a top light
source for better low-light visibility, though brightness
uniformity can be challenging. Key advantages include exceptional
eye protection and ultra-low power consumption, simulating a
paper-like reading experience that reduces eye fatigue. The absence
of a backlight results in significantly lower power consumption
compared to traditional LCDs. Display clarity improves under
stronger ambient light, though initial color gamut performance may
be limited. Recent technological optimizations have enabled
full-color display capabilities.
Main Applications
RLCD technology is primarily deployed in applications requiring eye
protection, low power consumption, or outdoor visibility. In smart
education, it powers educational tablets and e-readers like the
Hisense Q5 tablet with BOE displays. Public display applications
include bus electronic signs and outdoor advertising boards,
ensuring clear information visibility even in direct sunlight.
Automotive and wearable sectors utilize RLCDs for vehicle HUD
systems and ultra-long standby smart watches, leveraging their wide
temperature operating range and minimal power requirements.
Specialized applications extend to Boeing 787 cockpit instruments,
where stable display performance is critical in demanding
operational environments.
Customized Transmissive Liquid Crystal Display
Product Introduction
Our customized transmissive LCD solutions build upon standard
transmissive liquid crystal technology, where backlight
illumination passes through the liquid crystal layer to create
images. Customization spans multiple dimensions including size
flexibility from mini wearable formats to industrial-scale
displays, material selection with stainless steel and aluminum
alloy options for harsh environments, and functional enhancements
with integrated touch modules, specialized interfaces, or sensors.
Performance parameters including brightness, resolution, and
operating temperature/humidity ranges can be tailored to specific
requirements. These displays offer full-color reproduction,
exceptional image clarity, and strong environmental adaptability to
meet diverse industrial equipment integration needs. Note that
power consumption exceeds that of reflective LCD alternatives.
Main Applications
Custom transmissive displays serve industrial, logistics,
transportation, and other professional sectors. Industrial control
applications include integration into production equipment and
automation systems for real-time operational data display, with
high-protection models designed for factory environments with dust
and vibration. Logistics and warehousing solutions incorporate
barcode scanning capabilities for efficient inventory management
and goods tracking. Traffic management systems utilize these
displays for signal control and vehicle monitoring equipment.
Additional applications span medical equipment interfaces and
commercial terminal displays, meeting the specialized functional
requirements across various industries.
Frequently Asked Questions
I want the LCD display 8 digits and the outline size is
65x30x2.8mm. Is this possible?
Yes, we can accommodate this requirement. Please provide your
detailed specifications or drawing. If specifications are
unavailable, we can analyze your samples to recommend suitable
standard products or develop custom solutions based on your
specific requirements.
This LCD meets our needs but the size is too large. Can you provide
a smaller size with modified display content?
For segment-type LCD modules requiring outline size modifications
or display content changes, new LCD glass modules are necessary.
This requires creating custom tooling specifically for your
project.
This LCD display is HTN type, but I need STN type. Can you
manufacture this?
Absolutely. We can modify the display type according to your
specifications and requirements.
I need to customize a new LCD module. Is this service available?
Yes, we specialize in custom LCD solutions. Please provide your
drawing or specify the outline size, display information (glass
thickness, polarizer, display type, connector mode, storage
temperature, operating temperature, supply voltage, viewing
direction, drive conditions), and we'll develop a tailored
solution.
What is the lead time for tooling?
Typically, tooling requires 15 to 25 days following drawing
confirmation and tooling charge payment. We'll provide exact
timelines upon finalizing your drawing specifications.
Can you send samples for evaluation?
Yes, sample orders are available for your testing and validation
purposes.
What is the production lead time?
For standard products in stock, lead time is one day post-payment.
Mass production of custom orders typically requires 15-30 days.
We'll proactively communicate if we can complete your order ahead
of schedule.