Home Products OLED Display Graphic OLED Display WEO009616A

0.84-inch 96x16 OLED Display Module

Model No. WEO009616A

►Type: Graphic
►Structure: COG
►Size: 0.84 inch
►96 x 16 Dot Matrix
►IC:SSD1306
►3V Power supply
►1/16 duty
►Interface: I2C
►Display Color: White / Yellow / Sky Blue
►Suitable for Wearable Device

Description

0.84-inch 96x16 OLED Display Module – Compact & Efficient for Versatile Applications

The WEO009616A is a 0.84-inch OLED display module featuring a 96x16 resolution, ideal for applications requiring a compact, high-performance display. With its COG (Chip-on-Glass) design, this OLED display is ultra-thin, self-emitting (no backlight required), and energy-efficient, offering exceptional clarity and low power consumption. It is built with an SSD1306 controller and supports the I2C interface, making it easy to integrate into various embedded systems and devices.

 


 

Key Features:

  • Resolution: 96x16 pixels, delivering clear and sharp visual output.
  • Compact Design: With module dimensions of 29.1×9.2×1.45 mm, this 0.84-inch OLED fits perfectly in wearable devices, portable gadgets, and other small electronics.
  • Power Supply Flexibility: The WEO009616A supports both internal charge pump supply and external VCC supply, providing flexibility for integration into various systems.
  • OLED Technology: The module operates without a backlight, reducing power consumption and offering a high contrast ratio of 10,000:1.
  • Built-in SSD1306 Controller: Simplifies the integration process and improves overall system compatibility.
  • I2C Interface: Supports the I2C interface, making it easy to integrate with embedded systems and other devices.

 


 

Optical Performance:

  • Viewing Angle: 160° (both vertical and horizontal) for optimal visibility from various angles.
  • Brightness: 120 cd/m² at 100% checkerboard brightness.
  • Color Reproduction: White (CIE 1931 coordinates: x: 0.28, y: 0.32), providing crisp and vivid white displays.

 


 

Durability and Lifetime:

  • Operating Temperature: -40℃ to +80℃, with storage temperatures ranging from -40℃ to +85℃.
  • Lifetime: The WEO009616A module provides 20,000 hours of operation (at 100 cd/m² checkerboard brightness, at 25°C).
  • OLED Lifespan: Expected lifetime based on accelerated testing; using a screensaver mode will help extend OLED lifespan.

 


 

Applications:

This 96x16 OLED Display is perfect for a range of applications that demand compact, efficient displays:

  • Wearable Devices
  • E-cigarettes
  • MP3 Players
  • Personal Care Appliances
  • Health Monitoring Devices

 


 

Why Choose the WEO009616A 96x16 OLED Display?

  • Compact Yet Powerful: Despite its small form factor, the 0.84-inch OLED delivers superior display quality.
  • Flexible Power Options: With support for internal charge pump supply and external VCC, this module can be easily integrated into different power configurations.
  • Low Power Consumption: No backlight needed, and it provides energy-efficient performance, extending battery life for portable applications.
  • Durable and Reliable: With a wide operating temperature range and long lifespan, this display is designed to endure demanding conditions.

DRAWING

96x16 OLED Display, OLED 96x16, 0.84 OLED Display- WEO009616A

Data source ref: WEO009616AWPP3N00000

SPECIFICATIONS

Mechanical Data

Item Dimension Unit
Dot Matrix 96 x 16 Dots
Module dimension 29.1× 9.2 × 1.26 mm
Active Area 21.104 × 3.504 mm
Pixel Size 0.198 × 0.198 mm
Pixel Pitch 0.220 × 0.220 mm
Display Mode Passive Matrix
Display Color Monochrome
Drive Duty 1/16 Duty
IC SSD1306
Interface I2C
Size 0.84 inch

Absolute Maximum Ratings

Parameter Symbol Min Max Unit
Supply Voltage for Logic VDD 0 4.0 V
Supply Voltage for Display VCC 0 16.0 V
Operating Temperature TOP -40 +80 °C
Storage Temperature TSTG -40 +85 °C

Electronical Characteristics

DC Electrical Characteristics

Item Symbol Condition Min Typ Max Unit
Supply Voltage for Logic VDD 1.65 3.0 3.3 V
Supply Voltage for Display (Supplied Externally) VCC 7.0 7.5 7.8 V
Charge Pump Regulator Supply Voltage VBAT 3.3 4.2 V
Charge Pump Output Voltage for Display (Generated by Internal DC/DC) Charge Pump
VCC
7.0 7.5 7.8 V
Input High Volt. VIH 0.8×VDD VDD V
Input Low Volt. VIL 0 0.2×VDD V
Output High Volt. VOH 0.9×VDD VDD V
Output Low Volt. VOL 0 0.1×VDD V
50% check Board operating Current (VCC  Supplied Externally) ICC 7 15 mA
50% check Board operating Current (VCC  Generated by Internal DC/DC) IBAT 10 15 25 mA

Interface Pin Function

No. Symbol Function
1 C2N Positive Terminal of the Flying Inverting CapacitorNegative Terminal of the Flying Boost Capacitor
The charge-pump capacitors are required between the terminals. They must be floated when the converter is not used.
2 C2P
3 C1P
4 C1N
5 VBAT Power Supply for DC/DC Converter Circuit
This is the power supply pin for the internal buffer of the DC/DC voltage converter. It must be connected to external source when the converter is used. It should be connected to VDD when the converter is not used.
6 NC No connection
7 VSS Ground of Logic Circuit
This is a ground pin. It acts as a reference for the logic pins. It must be connected to external ground.
8 VDD Power Supply for Logic
This is a voltage supply pin. It must be connected to external source.
9 RES# Power Reset for Controller and Driver
This pin is reset signal input. When the pin is low, initialization of the chip is executed.
10 SCL I2C mode is selected, D2, D1 should be tied together and serve as SDAout, SDAin inapplication and D0 is the serial clock input, SCL.
11 SDA
12 IREF Current Reference for Brightness Adjustment
This pin is segment current reference pin. A resistor should be connected between this pin and VSS. Set the current lower than 30uA.
13 VCOMH Voltage Output High Level for COM Signal
This pin is the input pin for the voltage output high level for COM signals. A capacitor should be connected between this pin and VSS.
14 VCC Power Supply for OEL Panel
This is the most positive voltage supply pin of the chip. A stabilization capacitor should be connected between this pin and VSS when the converter is used. It must be connected to external source when the converter is not used.
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