Product Details:
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Product: | 0.96 Inch OLED Display Module | Resolution: | 128x64 Graphics |
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Driver IC: | SSD1306BZ Or Equivalent | Outline Dim.: | 26.7x19.26x1.41 (mm) |
Display Color: | White&Blue Optional | Touch Screen: | Without Touch Screen (Optional) |
Viewing Direction: | All Viewing Angles | Interface: | 6800, 8080, SPI, I2C |
Connection: | Soldering/Hotbar (customizable) | Pin Number: | 30 Pins (Can Be Customized) |
Life Time: | 50,000 Hours @60cd/m2 | Compliance: | REACH & RoHS Compliant |
Highlight: | SPI Interface OLED Display Module,0.96 Inch OLED Display Module,128x64 OLED Display Module |
0.96 inch OLED Display SPI interface Product Introduction
Product Quick Review
Description
SF-OS096HX-12864W-01 is a 128x64 resolution COG graphic OLED display module, diagonal size 0.96 inch. The model is designed as consumer grade which is having the advantage of competitive price. The module is built-in with SSD1306 IC; it supports 6800, 8080, I2C and 4-wire SPI serial interface. The supply voltage for logic is 3V, supply voltage for display is 7.5V, display with 50% check board current is 6mA @ 7.5Vcc (typical value), driving duty 1/64.
SF-OS096HX-12864W-01 this 0.96 inch COG Graphic OLED module is suitable for wearable device, smart home applications and etc. This module can be operating at temperatures from -40℃ to +70℃; its storage temperatures range from -40℃ to +85℃.
Product advantages
SAEF Technology is a professional OLED Module Supplier. We provide a wide range of standard passive matrix OLED (PMOLED) / OLED dot matrix display and custom design Character OLED modules, Graphic OLED displays and OLED display panels. Mechanical structure includes Chip on Board (COB), Chip on Glass (COG), and TAB (Tape Automated Bonded) types. Customers can upgrade applications from STN LCD to OLED displays easily. SAEF OLED modules are featured with all the important advantages:
0.96 inch Thin OLED Display Product Drawing
Interface Pin Definition
PIN NO. | SYMBOL | TYPE | FUNCTION DESCRIPTIONS | |||||
1 | NC(GND) | P | It should be connected to external ground. | |||||
2 | C2P |
I |
C1P/C1N-Pin for charge pump capacitor. C2P/C2N-Pin for charge pump capacitor. Connect to each other with a capacitor. They must be floated when the Charge pump not use. |
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3 | C2N |
as above |
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4 | C1P | as above | ||||||
5 | C1N | as above | ||||||
6 |
VBAT |
P |
Power supply for charge pump regulator circuit. It must be connected to external source when charge pump is used. It must be float when charge pump is not used. |
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7 | NC | NC | ||||||
8 | VSS | P | Ground pin. It must be connected to external ground. | |||||
9 | VDD | P | Power pin for logic circuit. It must be connected to external source. | |||||
10 | BS0 | Interface Select Pins | ||||||
11 | BS1 | Interface Select Pins | ||||||
12 | BS | Interface Select Pins | ||||||
13 | CS# | I | Chip Select input pin. Active “L” | |||||
14 | RES# | I | Hardware reset input pin. Active “L” . | |||||
15 |
D/C# |
I |
This is Data/Command control pin. When the pin is pulled HIGH, the data at D[7:0] is data. When the pin is pulled LOW, the data at D[7:0] is command. In I2C mode, this pin acts as SA0 for slave address section. When 3-wire serial interface is selected, this pin must be connected to VSS |
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16 |
R/W# |
I |
read/write select pin. is selected, this pin must be connected to |
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17 |
E# |
I |
read/write enable pin. is selected, this pin must be connected to |
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18 | D0 |
I/O |
These are 8-bit bi-directional data bus to be connected to microprocessor’s Data bus. When serial interface mode is selected, D2 should be kept NC, D1 will be the serial data input: SDIN, D0 will be the serial clock input: SCLK. When I2C mode is selected, D2, D1 should be tied together and serve as SDA and D0 is the serial clock input, SCL. |
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19~25 | D1~D7 |
These are 8-bit bi-directional data bus to be connected to microprocessor’s Data bus. When serial interface mode is selected, D2 should be kept NC, D1 will be the serial data input: SDIN, D0 will be the serial clock input: SCLK. When I2C mode is selected, D2, D1 should be tied together and serve as SDA and D0 is the serial clock input, SCL. |
26 |
IREF |
I |
Current reference for brightness adjustment. This is segment output current reference pin. A resistor should be connected between this pin and VSS .Set the current at 12.5 uA maximum. |
27 | VCOMH | O |
COM signal deselected voltage level. A capacitor should be connected between this pin and VSS. |
28 |
VCC |
P |
Power supply for OLED driving voltage. A capacitor should be connected between this pin and VSS, when charge pump is used. It must be connected to external source when charge pump is not used. |
29 | VLSS | P | This is an analog ground pin. It should be connected to VSS externally. |
30 | NC(GND) | P | It should be connected to external ground. |
Absolute Maximum Ratings
Characteristic | Symbol | Standard Value | Unit | Notes | ||
MIN | TYP | MAX | ||||
Power Supply Voltage(1) | VDD | -0.3 | - | +4.0 | V | 1,2 |
Power Supply Voltage(2) | VBAT | -0.3 | - | 4.5 | V | 1,2 |
Power Supply Voltage(3) | VCC | 0 | - | 15.0 | V | 1,2 |
Operating Temperature | TOPR | -40 | - | +70 | 0C | |
Storage Temperature | TSTG | -40 | - | +85 | 0C | 3 |
LifeTime (120 cd/m2) | 10000 | - | - | hour | 4 | |
LifeTime (80 cd/m2) | 30000 | - | - | hour | 4 | |
LifeTime (60 cd/m2) | 50000 | - | - | hour | 4 |
Note 1: All the above voltages are on the basis of “VSS = 0V” .
Note 2: When this module is used beyond the above absolute maximum ratings, permanent breakage of the module may occur. Also, for normal operations, it is desirable to use this module under the conditions according to Section 9-1 “DC ELECTRICAL CHARACTERISTICS” . If this module is used beyond these conditions, malfunctioning of the module can occur and the reliability of the module may deteriorate.
Note 3: The defined temperature ranges do not include the polarizer. The maximum withstood temperature of the polarizer should be 80.C.
Note 4: VCC = 9.0V, Ta = 25°C, 50% Checkerboard.
End of lifetime is specified as 50% of initial brightness reached. The average operating lifetime at room temperature is estimated by the accelerated operation at high temperature conditions.
DC Electrical Characteristics
Symbol | Parameter | Test condition | Standard Value | Unit | ||
MIN | TYP | MAX | ||||
VDD | Logic Supply Voltage | - | 1.65 | 2.8 | 3.3 | V |
VBAT | Charge Pump Regulator Supply Voltage | Internal Charge Pump Enable | 3.5 |
- |
4.2 | V |
VCC | Operating Voltage for OLED (Generated by charge pump) | Internal Charge Pump Enable | 7.0 | 7.5 | V | |
VCC | Operating Voltage for OLED (Supplied Externally) | Internal Charge Pump Disable | 8.5 | 9.0 | 9.5 | V |
VIH | High Logic Input Level | 0.8*VDD | - | - | V | |
VIL | Low Logic Input Level | - | - | 0.2*VDD | V | |
VOH | High Logic Output Level | IOUT = 100µA, 3.3MHz | 0.9*VDD | - | - | V |
VOL | Low Logic Output Level | IOUT = 100µA, 3.3MHz | - | - | 0.1*VDD | V |
IDD, SLEEP | IDD, Sleep Mode Current | - | - | 10 | uA | |
IBAT, SLEEP | IBAT, Sleep Mode Current | - | - | 10 | uA | |
ICC, SLEEP | ICC, Sleep Mode Current | - | - | 10 | uA | |
IDD | VDD Supply Current | - | 50 | 150 | uA | |
ICC |
VCC Supply Current (VCC Supplied Externally) |
VDD = 2.8V, VCC = 9V, 100% Display Area Turn on |
- |
9.0 | 15.0 | mA |
IBAT |
IBAT Supply Current (VCC Generated by charge pump) |
VDD = 2.8V, VCC = 7.25V, 100% Display Area Turn on |
- |
25.6 |
32.0 |
mA |
Optical Characteristics
Symbol | Parameter | condition | Standard Value | Unit | ||
MIN | TYP | MAX | ||||
Lbr |
Brightness (VCC Supplied Externally) |
120 |
- |
- |
cd/m2 | |
Lbr |
Brightness (VCC Generated by charge pump) |
80 |
120 |
- |
cd/m2 |
|
(x) | C.I.E. (White) | C.I.E. 1931 | 0.25 | 0.29 | 0.33 | |
(y) | 0.27 | 0.31 | 0.35 | |||
CR | Dark Room Contrast | - | 2000:1 | - | ||
Viewing Angle | - | 160 | - | degree |
0.96 inch Thin OLED Display Product Image
Factory Facilities and Certificates
Contact Person: Cologne Ke
Tel: +8613502983321
Fax: 86-755-2370-9419