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Utsource Holding Company Limited
Utsource Holding Company Limited 58474938-000-06-24-A
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How to Allocate the 12 Pins of a Four-Digit LED Display - Utsource Holding Company Limited

How to Allocate the 12 Pins of a Four-Digit LED Display

15-Dec-2025

In electronic display technology, the four-digit LED display is a common display device widely used in various digital display systems. It displays numbers or characters by controlling different segments (A-G) of light-emitting diodes (LEDs). For a four-digit LED display with 12 pins, proper pin allocation is crucial for achieving stable display functionality and efficient circuit design. This article will delve into the principles, specific allocation methods, and considerations for the 12 pins of a four-digit LED display in practical applications.

I. Basic Structure and Working Principle of a Four-Digit LED Display
A four-digit LED display consists of four independent seven-segment LED displays. Each display contains seven LED segments (A, B, C, D, E, F, G) and an optional decimal point (DP). These segments are connected to external circuits through specific pins. By controlling the level of these pins, the corresponding LED segment can be lit or turned off, thereby displaying the desired number or character.

II. Principles of Pin Allocation
Common Anode vs. Common Cathode: The first consideration in pin allocation for a four-digit LED display is whether it is a common anode or common cathode type. In a common-anode seven-segment display, the anodes (positive terminals) are connected together, while the cathodes (negative terminals) of each segment are led out separately. In a common-cathode seven-segment display, the cathodes are connected together, while the anodes are led out separately.

Segment Selection and Digit Selection: To display multiple digits on a seven-segment display, segment selection (controlling which number or character is displayed) and digit selection (selecting which digit is displayed) are required. Therefore, the pin assignment must clearly distinguish between segment selection pins and digit selection pins.

Pin Quantity and Function: For a four-digit seven-segment display with 12 pins, there are typically 8 segment selection pins (A-G and DP) and 4 digit selection pins (used to select which digit is displayed).

III. Specific Allocation of the 12 Pins: Segment Selection Pins: Pins A, B, C, D, E, F, and G correspond to the seven LED segments of the seven-segment display, used to control the specific number or character displayed. The DP pin is the decimal point pin, used to display the decimal point.

Digit Selection Pins: Four pins (e.g., D1, D2, D3, D4) are typically used as digit selection pins to select which digit of the LED display will be displayed. By controlling the level of these four pins, each digit of the four-digit LED display can be lit sequentially.

IV. Pin Assignment Considerations
Pin Labeling and Connection: In practical applications, the pin labels of the LED display must be carefully checked to ensure correct connection of the segment selection pins and digit selection pins. Incorrect connections may lead to display abnormalities or damage to the LED display.

Current Limiting Resistor: To protect the LED segments from overcurrent damage, a current limiting resistor is usually connected in series between the segment selection pin and the driver circuit. The resistance value of the current limiting resistor should be determined based on the rated voltage and current of the LED and the power supply voltage.

Driver Circuit: Select a suitable driver circuit based on the type of LED display (common anode or common cathode) and display requirements. The driver circuit should be able to provide sufficient current to light the LED segments and have good stability and reliability.

Display Mode: The four-digit LED display can use either static or dynamic display modes. In static display, all digits are lit simultaneously; in dynamic display, the state of the digit selection pins is quickly switched to light up each digit of the digital tube in sequence, using the persistence of vision effect of the human eye to achieve the effect of displaying multiple digits simultaneously.
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