1.5 inch height 8×8 LED dot matrix, bi-color
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Weight:(g/pcs)
Dimension:(mm)
Dot height:(mm)
Dot pitch:(mm)
Dot size:(mm)
Specification:
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Description:
Introduction
In the world of electronic displays, the 1.5 inch height 8×8 LED dot matrix, bi-color emerges as a compact yet versatile component crucial for modern applications. Known widely as a reliable matrix display, this technology offers both red and green LEDs, allowing for multiple color combinations in a single unit. This article provides an in-depth look at its features, applications, inherent benefits, as well as tangible impacts drawn from real-world case studies and user testimonials.
Features of the 1.5 Inch Height 8×8 Bi-Color LED Dot Matrix
The bi-color 8×8 display integrates two colors within a single matrix, typically red and green, which can be combined to create additional colors like amber. Each LED in the 8×8 matrix can be individually controlled, making it possible to display detailed images, animations, or custom characters, thereby offering tremendous flexibility in terms of visual representation.
Applications in Various Industries
The 1.5 inch height 8×8 LED dot matrix, bi-color is a preferred choice in industries ranging from advertising to consumer electronics. Its ability to display multiple colors without the need for external filters makes it especially suitable for status indicators, message displays, and interactive signage.
Advantages of Bi-Color LED Matrix Displays
The dual-color capabilities of the matrix allow for more dynamic and visually appealing displays, which are not only more engaging but also convey information more effectively. Moreover, the low power consumption and long service life of LEDs make them an economically viable option.
Case Study: Use in Public Information Displays
A notable application of the bi-color LED dot matrix was its integration into a public transport tracking system, where different colors displayed distinct bus routes, greatly simplifying passenger navigation and improving user experience.
User Testimonials
Many users have praised the bi-color matrix for its ease of use and versatility. One electronics developer shared, “Integrating the matrix display into our device dashboards has significantly enhanced the user interface with visually striking, informative displays.”
Conclusion
The 1.5 inch height 8×8 LED dot matrix, bi-color is not just a component; it’s a transformative element for many electronic applications. Its ability to deliver detailed, multi-colored visualizations in a compact form factor makes it an indispensable tool for developers and engineers across various sectors.
Call to Action
If you’re looking to enhance the visual capability of your electronic projects or products, consider the dynamic and efficient bi-color LED dot matrix. Experience the benefits of this advanced technology in your next project.
Features
- Matrix Size: This matrix has a height of 36.60mm and a display width and height of 37.60×37.60mm, providing a sizable and practical display area.
- Dot Characteristics: The dot size is 3.70mm, circular in shape, ensuring clear and distinct points of light for easy readability.
- Grid Layout: With 8 columns and 8 rows, it offers a balanced square display, ideal for various display patterns and characters.
- Bi-Color Functionality: The bi-color capability enhances the display’s versatility, allowing for more dynamic and colorful presentations.
- Energy Efficiency: Designed for low current operation, it is energy-saving and suitable for long-duration usage.
- High Visibility: The high contrast and light output ensure the display is easily readable in various lighting conditions.
- Coding Compatibility: Compatible with ASCII and EBCDIC codes, this matrix is adaptable for different programming and display requirements.
- Horizontal Stackability: It can be stacked horizontally, enabling the creation of larger, more complex displays.
- Flexible Circuit Design: Available with both column cathode and anode options, offering flexibility for different electronic circuit designs.
- Ease of Mounting: The design facilitates easy installation on printed circuit boards or sockets, simplifying its integration into projects.
- Consistent Brightness: The LED dots are categorized for luminous intensity, ensuring a uniform brightness level across the display.
- Durability: It is technically rugged, making it reliable for various applications and operational environments.
- Aesthetics: Features a standard gray surface with white dots, giving it a sleek and professional appearance.
- Environmental Compliance: Being RoHS compliant, it meets environmental standards, ensuring a reduced environmental impact.
Applications
- Dynamic Signage: Suitable for creating eye-catching signs in retail, events, or public information displays.
- Information Boards: Ideal for use in transportation systems, public areas, or control rooms for displaying information.
- Interactive Art and Education: Can be used for interactive art installations or as a tool in educational settings for teaching programming and electronics.
- Entertainment and Gaming: Appropriate for gaming consoles, arcade machines, and other entertainment devices requiring vibrant displays.
- Custom Control Panels: Perfect for building custom interfaces, indicators, or control panels in machinery or electronic devices.
- DIY Projects: An excellent choice for hobbyists or DIY enthusiasts for creating custom gadgets, lighting solutions, or experimental projects.
- Prototyping: Useful in prototyping electronic devices, especially where a compact yet clear display is necessary.
- Portable Electronic Devices: Due to its size and low power consumption, it’s well-suited for portable electronic applications.
Electrical-optical characteristics:
Part No.(Row Cathode) | Part No. (Row Anode) | Color | Material | Peak Wavelength (nm) | Voltage typ. (v) | Voltage Max. (v) | Luminous Min. | Luminous typ. |
---|---|---|---|---|---|---|---|---|
BL-M15C883DUG |
BL-M15B883DUG |
Ultra Red |
AlGaInP |
660 |
2.5 |
320 |
||
BL-M15C883DUG |
BL-M15B883DUG |
Ultra Green |
AlGaInP |
574 |
2.5 |
250 |
||
BL-M15C883EG |
BL-M15B883EG |
Orange |
GaAsP/GaP |
635 |
2.5 |
190 |
||
BL-M15C883EG |
BL-M15B883EG |
Green |
GaP/GaP |
570 |
2.5 |
195 |
||
BL-M15C883SG |
BL-M15B883SG |
Super Red |
AlGaInP |
660 |
2.5 |
250 |
||
BL-M15C883SG |
BL-M15B883SG |
Green |
GaP/GaP |
570 |
2.5 |
195 |
||
BL-M15C883UEUG |
BL-M15B883UEUG |
Ultra Orange |
AlGaInP |
630 |
2.5 |
235 |
||
BL-M15C883UEUG |
BL-M15B883UEUG |
Ultra Green |
AlGaInP |
574 |
2.5 |
250 |
Package configuration & Internal circuit diagram
Partno description:
More Information
Reflector Surface color (1st number)/ dot Lens color (2nd number):
Number | 0 | 1 | 2 | 3 | 4 | 5 |
Ref Surface Color | White | Black | Gray | Red | Green | |
Dot Epoxy Color | Water clear | White diffused | Red Diffused | Green Diffused | Yellow Diffused |
Absolute maximum ratings (Ta= 25°C)
Parameter | S | D | UR | E | Y | G | Unit | |
Forward Current IF | 25 | 25 | 25 | 25 | 25 | 30 | mA | |
Power Dissipation Pd | 60 | 60 | 60 | 60 | 60 | 65 | mW | |
Reverse Voltage VR | 5 | 5 | 5 | 5 | 5 | 5 | V | |
Peak Forward Current IPF (Duty 1/10 @1KHZ) | 150 | 150 | 150 | 150 | 150 | 150 | mA | |
Operation Temperature TOPR | -40 to +80 | °C | ||||||
Storage Temperature TSTG | -40 to +85 | °C | ||||||
Lead Soldering Temperature TSOL | Max.260+ 5°C for 3 sec Max. ( 1.6mm from the base of the epoxy bulb) | °C |
Absolute maximum ratings (Ta= 25°C)
Parameter | UHR | UE | YO | UY | UG | PG | UB | UW | Unit |
Forward Current IF | 30 | 30 | 30 | 30 | 30 | 30 | 30 | 30 | mA |
Power Dissipation Pd | 75 | 65 | 65 | 65 | 75 | 110 | 120 | 120 | mW |
Reverse Voltage VR | 5 | 5 | 5 | 5 | 5 | 5 | 5 | 5 | V |
Peak Forward Current IPF (Duty 1/10 @1KHZ) | 150 | 150 | 150 | 150 | 150 | 150 | 100 | 100 | mA |
Operation Temperature TOPR | -40 to +80 | °C | |||||||
Storage Temperature TSTG | -40 to +85 | °C | |||||||
Lead Soldering Temperature TSOL | Max.260+ 5°C for 3 sec Max. ( 1.6mm from the base of the epoxy bulb) | °C |
Related Information
Applied for:
1. Application
The Seven Segment LED is widely applied for ordinary electronic equipment (such as office equipment,
communication equipment and household applications). Checking with BETLUX’s Sales in
advance for information on applications in which exceptional reliability is required, particularly
when the failure or malfunction of the LEDs may directly jeopardize life or health (such as in
aviation, transportation, traffic control equipment, medical and life support systems and safety
devices).
2. Storage
The storage ambient for the Seven Segment LED should not exceed 30℃ temperature or 70% relative humidity.
For extended storage out of their original packaging, it is recommended that the Seven Segment LEDs be stored
in a sealed container with appropriate desiccant, or in a desiccator with nitrogen ambient.
3. Cleaning
Avoid using any unspecified chemical solvent to clean LED . For example, Trichloroethylene, Chlorosen, Acetone, and Diflon S3MC.
Any cleaning method can only be taken under normal temperature in one minute or less if it is required.
Use water to clean the Seven Segment LED if necessary under room temperature
dry it immediately after that.
4.Forming
Any unsuitable stress applied to the epoxy may break bonding wires in LED
Any forming on lead pin must be done before soldering, not during or after soldering.
Avoid applying any stress to resin in order to prevent the epoxy fracture and break on bonding wire.
While forming, please use a tie bar cut or equivalent to hold or bend the pin.
2mm from the base of resin is the minimum distance for the place bending the lead pin.
Avoid bending the lead pin at the same point twice or more.
Soldering
When soldering, leave a minimum of 2mm clearance from the base of the base of the lens to the soldering point. Dipping the lens into the solder must be avoided.
Do not apply any external stress to the lead frame during soldering while the LED is at high temperature.
Recommended soldering conditions:
IR Reflow Soldering (for SMD display) | Wave Soldering | Soldering Iron | |||
Pre-Heat | 150-180°C | Pre-Heat | 100°C Max. | Temperature | 300°C Max. |
Pre-Heat Time | 120sec Max. | Pre-Heat Time | 60sec Max. | ||
Peak Temperature | 260°C Max. | SolderWave | 260°C Max. | Soldering Time | 3sec Max.(one time only) |
Soldering Time | 10 sec Max. | Soldering Time | 5sec Max. |
Note: Excessive soldering temperature and/or time might result in deformation of the LED lens or failure of the LED
ESD(Electrostatic Discharge)
Static Electricity or power surge will damage the LED.
Suggestions to prevent ESD (Electrostatic Discharge):
n Use a conductive wrist band or anti-electrostatic glove when handling these LEDs
n All devices, equipment, and machinery must be properly grounded
n Work tables, storage racks, etc. should be properly grounded
n Use ion blower to neutralize the static charge which might have built up on surface of the LED’s
plastic lens as a result of friction between LEDs during storage and handling
ESD-damaged LEDs will exhibit abnormal characteristics such as high reverse leakage current,
low forward voltage, or “no light on” at low currents. To verify for ESD damage, check for “light on”
and Vf of the suspect LEDs at low currents.
The Vf of “good” LEDs should be>2.0V@0.1mA for InGaN product and >1.4V@0.1mA for AlInGaP
product.
LED dirve IC by Maxim Integrated
MAX6959 4½-Digit LED Display Driver
MAX6958 4½-Digit LED Display Driver
MAX6955 7-, 14-, 16-Segment LED Display Driver
MAX6956 LED Static Display Driver and I/O Port
MAX6954 7-, 14-, 16-Segment LED Display Driver
MAX6952 5 x 7 Matrix LED Display Driver
MAX6957 LED Static Display Driver and I/O Port
MAX6950 5-Digit LED Display Driver
MAX6951 8-Digit LED Display Driver
ICM7212 4-Digit LED Driver
ICM7212A 4-Digit LED Driver
ICM7212AM 4-Digit LED Driver
ICM7212M 4-Digit LED Driver
ICM7218A 8-Digit LED Driver
ICM7218B 8-Digit LED Driver
ICM7218C 8-Digit LED Driver
ICM7218D 8-Digit LED Driver
MAX7221 8-Digit LED Display Driver
MAX7219 8-Digit LED Display Driver
When selecting power for LED systems, it’s essential to understand several key parameters to ensure safe operation, longevity, and optimal performance. Here are some steps and considerations for LED power selection:
- Determine the Forward Voltage (Vf) of the LED(s):
Each LED has a forward voltage, which is the voltage at which the LED operates when the current is flowing through it. This value can typically be found in the LED’s datasheet.
- Determine the Forward Current (If) of the LED(s):
The forward current is the current at which the LED is designed to operate. Running an LED at higher than its rated current can reduce its lifespan and increase the heat it produces.
- Decide on the Configuration:
Series Configuration: When LEDs are connected in series, the forward voltages add up, but the current remains the same.
Parallel Configuration: When LEDs are connected in parallel, the forward voltage remains the same, but the currents add up. This configuration can be risky because if one LED fails or has a slightly lower forward voltage, it can cause the other LEDs to draw more current.
Calculate Total Power Requirements:
Power (W) = Total Forward Voltage (V) x Total Forward Current (A)
For example, if you have three LEDs connected in series, each with a forward voltage of 3V and a forward current of 20mA, the total power requirement would be:
Power = (3V + 3V + 3V) x 20mA = 9V x 0.02A = 0.18W
- Select an Appropriate Power Supply:
- Voltage Rating: The power supply voltage should match or slightly exceed the total forward voltage of your LED configuration.
- Current Rating: The power supply’s current rating should meet or exceed the total forward current of your LED configuration.
- Safety Margin: It’s a good practice to select a power supply that can provide at least 20% more power than your calculated requirement. This ensures the power supply isn’t operating at its maximum capacity, which can extend its life and ensure safer operation.
- Consider Additional Features:
- Dimming Capability: If you want to control the brightness of your LEDs, choose a power supply with dimming capabilities.
- Overcurrent and Overvoltage Protection: To protect your LEDs, select a power supply with built-in protection mechanisms.
- Thermal Management: Ensure that the power supply has adequate cooling, especially if it will be enclosed or in a location with limited airflow.
- Regulation and Efficiency:A power supply with good regulation will maintain a consistent voltage output despite variations in the load. High efficiency ensures minimal power is wasted as heat.
- Physical Size and Form Factor:Depending on where you plan to place the power supply, its size and shape may be critical factors.
In summary, when selecting power for LED systems, understanding your LED’s requirements and the configuration you plan to use is essential. Then, pick a power supply that meets those needs with some added safety margin, keeping in mind any additional features or constraints relevant to your project.
Here are some well-regarded brands in the industry:
- Mean Well: One of the most recognized brands in the LED power supply industry, Mean Well offers a wide range of products suitable for both indoor and outdoor applications. Their units often come with features like overcurrent protection, dimming capabilities, and high efficiency.
- Tridonic: A global leader in lighting technology, Tridonic offers LED drivers and power supplies that cater to various lighting solutions, from simple setups to advanced smart lighting systems.
- Philips Advance Xitanium: Philips is a well-known brand in the lighting industry, and their Xitanium series of LED drivers are known for reliability and performance. They cater to both indoor and outdoor LED applications.
- Osram: Another giant in the lighting industry, Osram offers a range of LED drivers and power supplies suitable for various applications, including architectural and street lighting.
- LIFUD: Specializing in LED drivers, LIFUD is known for its high-quality products that cater to both commercial and residential LED lighting solutions.
- MOSO: This brand offers a variety of LED drivers, especially for outdoor and industrial applications. Their products are known for durability and performance.
- TDK-Lambda: With a history in power electronics, TDK-Lambda offers a range of power supplies and LED drivers suitable for various applications, emphasizing reliability and advanced features.