Surenoo SOA3 C1602E Character OLED Module User Manual

SOA3 C1602E Character OLED Module

Specifications:

Item Specifications
Number of Characters 16 characters x 2 Lines
Module dimension 85.0 x 30.0 x 10.0(MAX) mm
View area 66.0 x 16.0 mm
Active area 56.95 x 11.85 mm
Dot size 0.55 x 0.65 mm
Dot pitch 0.60 x 0.70 mm
Character size 2.95 x 5.55 mm
Character pitch 3.6 x 6.3 mm
Panel type OLED, White / Blue / Yellow / Green / Red
Duty 1/16

Product Usage Instructions:

1. External Dimensions:

Refer to the provided external dimensions diagram for detailed
measurements.

2. Pin Description:

The parallel interface pin description is as follows:

Pin No. Symbol External Connection
1 VDD Power Supply

3. Electrical Characteristics:

Operating Temperature Range: -40°C to +80°C
Storage Temperature Range: -40°C to +80°C
Supply Voltage: 3.0V to 5.0V
Supply Current: 24mA to 31mA
Other electrical characteristics as per the manual.

4. Block Diagram:

Block Diagram

5. Optical Characteristics:

Optimal Viewing Angles:
– Top: 80°
– Bottom: 80°
– Left: 80°
– Right: 80°
Contrast Ratio: 2000:1
Other optical characteristics as per the manual.

Frequently Asked Questions (FAQ):

Q: Can this module display multiple languages?

A: Yes, this module can display multiple languages based on the
character set supported.

Q: What is the optimal operating voltage for this module?

A: The optimal operating voltage for this module is in the range
of 3.3V to 5.0V as per the manual specifications.

Q: Is there a backlight feature available in this OLED
module?

A: No, this OLED module does not feature a backlight as it
utilizes OLED technology for display.

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SHENZHEN SURENOO TECHNOLOGY CO.,LTD.
SOC1602E Series
CHARACTER OLED MODULE USER MANUAL
Please click the following image to buy the sample

Model No.: SO3AC1602E

Shenzhen Surenoo Technology Co.,Ltd. www.surenoo.com
Skype: Surenoo365

Reference Controller Datasheet
Character OLED Module Selection Guide

WS0010

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Model No.: SO3AC1602E

1. FUNCTIONS & FEATURES
· 2 lines x 16 characters · Built-in LCD comparable controller · Parallel MPU interface (Default 6800 MPU parallel) · +3.0V or +5.0V Power Supply · RoHS compliant

2. MECHANICAL SPECIFICATIONS

Item
Number of Characters Module dimension View area Active area Dot size Dot pitch Character size Character pitch Panel type Duty

Dimension

Unit

16 characters x 2 Lines

85.0 x 30.0 x 10.0(MAX)

mm

66.0 x 16.0

mm

56.95 x 11.85

mm

0.55 x 0.65

mm

0.60x 0.70

mm

2.95 x 5.55

mm

3.6 x 6.3

mm

OLED, White / Blue / Yellow / Yellow / Green / Red

1/16

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3. EXTERNAL DIMENSIONS

Model No.: SO3AC1602E

1

2

7.65

10.25

A

14.48

7.0 9.08 3.0 15.0

14 13

3
85.0 0.5 71.2
6 6 .0 (V A ) 5 6 .9 5 (A A )

30.0 0.5 16.0(VA) 11.85(AA)
24.0

B

21

43.25

2.0

81.0

7.38

2.54 2.0
C
14 13 14- 1.0 PTH 14- 1.8 PAD

15.24

(P2.54*6)

21

D Notes:

PIN DETAIL

1. Driver: 1/16 Duty

2. Emitng Color: White / Yellow / Green / Blue / Red

3. Optmal View: Full View

4. Operatng Voltage: 3.3-5.0V

5. Operatng / Storage Temp: -40°C – 80°C

1

2

3

6.3

5.55

0.75

0.7

0.65

4

5

6

Rev

Description

Date

10.0M ax

4.8

A

4- 2.5 PTH 4- 5.0 PAD

3.6

2.95

0.6

0.55

0.65

B

1

Vdd

1.6

2

Vss

3

NC

4

RS

5

R /W

6

E

7

DB0

C

8

DB1

9

DB2

10 DB3

11 DB4

12 DB5

13 DB6

14

DB7

D

DOT SIZES SCALE 5/1
4

The non-specified tolerance of dimension is 0.3mm.

Unit
mm

SHENZHEN SURENOO TECHNOLOGY CO.,LTD.

Gen. Tol. Date Part Number:

±0.3 02/10/17

SOC1602E

5

6

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Model No.: SO3AC1602E

4. PIN DESCRIPTION

Parallel Interface (default):

Pin No.

Symbol

External Connection

1

VDD

2

V SS

3

NC

Power Supply Power Supply

4

RS

MPU

5

R/W

MPU

6

E

MPU

7-10 DB0 ­ DB3

MPU

11-14 15 16

DB4 ­ DB7 NC NC

MPU –

Function Description Supply Voltage for OLED and logic Ground No Connect Register select signal. RS=0: Command, RS=1: Data Read/Write select signal, R/W=1: Read R/W: =0: Write Operation enable signal. Falling edge triggered. Four low order bi-directional three-state data bus lines. These four are not used during 4-bit operation. Four high order bi-directional three-state data bus lines. No Connect No Connect

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5. BLOCK DIAGRAM

Model No.: SO3AC1602E

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Model No.: SO3AC1602E

6 . ELECTRICAL CHARACTERISTICS

Item Operating Temperature Range Storage Temperature Range

Symbol TOP TST

Condition Absolute Max Absolute Max

Min.

Typ.

-40

-40

Supply Voltage Supply Current “H” Level input “L” Level input “H” Level output “L” Level output

VDD

3.0

5.0

IDD

TOP = 25°C, VDD=5.0V

24

31

VIH

0.8 * VDD

VIL

VSS

VOH

0.8 * VDD

VOL

VSS

Max.

Unit

+80

C

+80

C

5.3

V

40

mA

VDD

V

0.2*VDD

V

VDD

V

0.2 * VDD

V

7 . OPTICAL CHARACTERIES

Optimal Viewing Angles

Item Top Bottom Left Right

Symbol
Y+ YXX+

Condition

Min.

Typ.

Max.

Unit

80

80

80

80

Contrast Ratio

CR

2000:1

Rise Response Time Fall Brightness Lifetime

TR

10

TF

10

50% checkerboard

100

120

TOP=25°C

100,000

50% checkerboard

µs

µs

cd/m2

Hrs.

Note: Lifetime at typical temperature is based on accelerated high-temperature operation. Lifetime is tested at

average 50% pixels on and is rated as Hours until Half-Brightness. The Display OFF command can be used to extend

the lifetime of the display.

Luminance of active pixels will degrade faster than inactive pixels. Residual (burn-in) images may occur. To avoid

this, every pixel should be illuminated uniformly.

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Model No.: SO3AC1602E

8. COMMAND TABLE

Code

Max

Instruction RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

Description

Execution Time

Clears entire

Clear Display 0 0

0

0

0

0

0

0

0

1

display. Does not change

2ms

DDRAM address.

Sets DDRAM

Return Home

0 0

0

0

0

0

0

0

1

Address to 0x00.

0

Returns shifted

display to original

600us

position.

Sets cursor to auto

Entry Mode Set

0

0

0

0

0

0

0

1

I/D

S

Increment or Decrement, and

600us

sets display shift.

Sets Display (D)

Display ON/OFF control

0 0

0

0

0

0

1

D

C

ON/OFF.

B

Sets Cursor (C) ON/OFF.

600us

Sets Blinking (B) of

cursor ON/OFF.

Cursor/Displ ay Shift

0

0

0

0

0

1

S/C R/L

0

Moves cursor &

0

shifts display without changing

DDRAM contents.

600us

Set interface data

Function Set 0 0

0

0

1

DL

1

0

FT1 FT0 length.

600us

Select Font Table.

Set CGRAM address

0

0

0

1

ACG5 ACG4 ACG3 ACG2 ACG1

ACG0

Move to CGRAM address.

600us

Set DDRAM address

0

0

1

ADD6 ADD5 ADD4 ADD3 ADD2 ADD1

ADD0

Move to DDRAM address.

600us

Read Busy Flag &

0 1

Read Busy Flag BF AC6 AC5 AC4 AC3 AC2 AC1 AC0 (BF) and Address

600us

Address

Counter.

Write data to CGRAM or DDRAM

1 0

Write Data

Write data to CGRAM or DDRAM

600us

Read data

from CGRAM or

1 1

Read Data

Read data from CGRAM or DDRAM

600us

DDRAM

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Model No.: SO3AC1602E

9. INSTRUCTION DESCRIPTIONS
When an instruction is being executed, only the Busy Flag read instruction can be performed. During execution of an instruction, the Busy Flag = “1”. When BF = “0” instructions can be sent to the controller.

Clear Display

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

0

0

0

0

0

0

1

This instruction is used to clear the display by writing 0x20 in all DDRAM addresses. This instruction does not change the

DDRAM Address.

Return Home

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

0

0

0

0

0

1

0

This instruction is used to set the DDRAM Address to 0x00 and shifts the display back to the original state. The cursor (if

on) will be at the first line’s left-most character. The DDRAM contents on the display do not change.

Entry Mode Set

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

0

0

0

0

1

I/D

S

I/D = Increment/Decrement

When I/D = “1”, the DDRAM or CGRAM Address with automatically increment when a character code is written into or

read from the DDRAM or CGRAM. The auto-increment will move the cursor one character space to the right.

When I/D = “0”, the DDRAM or CGRAM Address with automatically decrement when a character code is written into or

read from the DDRAM or CGRAM. The auto-decrement will move the cursor one character space to the left.

S = Shift Entire Display When S = “1”, the entire display is shifted to the right (when I/D = “0”) or left (when I/D = “1”).

I/D=1, S=1

I/D=0, S=1

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Model No.: SO3AC1602E

Display ON/OFF

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

0

0

0

1

D

C

B

D = Display ON/OFF

When D = “1”, the display is turned ON. When D = “0”, the display is turned OFF. Contents in DDRAM are not changed.

C = Cursor ON/OFF When C = “1”, the cursor is displayed. The cursor is displayed as 5 dots on the 8th line of a character. When C = “0”, the
cursor is OFF.

B = Blinking Cursor When B = “1”, the entire character specified by the cursor blinks at a speed of 409.6ms intervals. When B = “0”, the character does not blink, the cursor remains on.

Cursor/Display Shift

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

0

0

1

S/C R/L

0

0

S/C R/L Shift Function

0

0 Shifts the cursor position to the left (AC is decremented by 1).

0

1 Shifts the cursor position to the right (AC is incremented by 1).

1

0 Shifts the entire display to the left. The cursor follows the display shift.

1

1 Shifts the entire display to the right. The cursor follows the display shift.

When the display is shifted repeatedly, each line moves only horizontally. The second line display does not shift into the first line. The Address Counter does not change during a Display Shift.

Function Set

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

0

1

DL

1

0

FT1 FT0

DL = Interface Data Length

When DL = “1”, the data is sent or received in 8-bit length via DB7…DB0.

When DL = “0”, the data is sent or received in 4-bit length via DB7…DB4. When the 4-bit data length is used, the data

must be sent or received in two consecutive writes/reads to combine the data into full 8-bits.

FT1, FT0 = Font Table Selection

FT1 FT0 Font Table

0

0 English / Japanese

0

1 Western European #1

1

0 English / Russian

1

1 Western European #2

Note: Changing the font table during operation will immediately change any data currently on the display to the corresponding character on the newly selected font table.

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Model No.: SO3AC1602E

Set CGRAM Address

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

1 ACG5 ACG4 ACG3 ACG2 ACG1 ACG0

This instruction is used to set the CGRAM address into the Address Counter. Data can then be written to or read from

the CGRAM locations. See section: “How to use CGRAM”.

ACG5…ACG0 is the binary CGRAM address.

Set DDRAM Address

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

1 ADD6 ADD5 ADD4 ADD3 ADD2 ADD1 ADD0

This instruction is used to set the DDRAM address into the Address Counter. Data can then be written to or read from

the DDRAM locations.

ADD6…ADD0 is the binary DDRAM address.

Line 1 = Address 0x00 through 0x0F

Line 2 = Address 0x40 through 0x4F

1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 00 01 02 03 04 05 06 07 08 09 0A 0B 0C 0D 0E 0F 40 41 42 43 44 45 46 47 48 49 4A 4B 4C 4D 4E 4F

Read Busy Flag and Address Counter

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0

1

BF AC6 AC5 AC4 AC3 AC2 AC1 AC0

This instruction is used to read the Busy Flag (BF) to indicate if the display controller is performing an internal operation.

The Address Counter is read simultaneously with checking the Busy Flag.

When BF = “1”, the controller is busy and the next instruction will be ignored.

When BF = “0”, the controller is not busy and is ready to accept instructions.

AC6…AC0 is the binary location of either the CGRAM or DDRAM current address.

Write Data to CGRAM or DDRAM

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

1 0

Write Data

This instruction is used to write 8-bits of data to the CGRAM or DDRAM at the current address counter. After the write is

complete, the address is automatically incremented or decremented by 1 according to the Entry Mode.

Read Data from CGRAM or DDRAM

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

1 1

Read Data

This instruction is used to read 8-bits of data to the CGRAM or DDRAM at the current address counter. After the read is

complete, the address is automatically incremented or decremented by 1 according to the Entry Mode.

The Set CGRAM Address or Set DDRAM Address Instruction must be executed before this instruction can be performed,

otherwise the first Read Data will not be valid.

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Model No.: SO3AC1602E

10. MPU INTERFACE
When DL is set for 8-bit mode, the display interfaces with the MPU with DB7…DB0 (DB7 is the MSB). When DL is set for 4-bit mode, the display interfaces with the MPU with only DB7…DB4 (DB7 is the MSB). Each instruction must be sent in two operations, the 4 high-order bits first, followed by the 4 low-order bits. The Busy Flag must be checked after completion of the entire 8-bit instruction.
6800-MPU Parallel Interface (default)

Item Address setup time Address hold time System cycle time Pulse width (write) Pulse width (read) Data setup time Data hold time Read access time Output disable time

Signal RS RS
E E DB7…DB0 DB7…DB0 DB7…DB0 DB7…DB0

Symbol tAS68 tAH68 tCY68 tPW68(W) tPW68(R) tDS68 tDH68 tACC68 tOD68

Min. Typ. Max. Unit Note

20

– ns

0

– ns

500 –

– ns

250 –

– ns

250 –

– ns

40

– ns

20

– ns

– 180 ns CL=100pF

10

– ns

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8080-MPU Parallel Interface

Model No.: SO3AC1602E

Item Address setup time Address hold time System cycle time Pulse width (write) Pulse width (read) Data setup time Data hold time Read access time Output disable time

Signal RS RS
/WR /RD DB7…DB0 DB7…DB0 DB7…DB0 DB7…DB0

Symbol tAS80 tAH80 tCY80 tPW80(W) tPW80(R) tDS80 tDH80 tACC80 tOD80

Min. Typ. Max. Unit Note

20

– ns

0

– ns

500 –

– ns

250 –

– ns

250 –

– ns

40

– ns

20

– ns

– 180 ns CL=100pF

10

– ns

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Model No.: SO3AC1602E

11. SERIAL INTERFACE
In serial interface mode, instructions and data are both sent on the SDI line and clocked in with the SCL line. /CS must go LOW before transmission, and must go HIGH when switching between writing instructions and writing data. The data on SDI is clocked into the LCD controller on the rising edge of SCL in the following format:
Instruction transmission:

*Note: RS and RW should be used between each instruction. Data transmission:

*Note: RS and RW only need to be set at the start of continuous data transmission.
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Model No.: SO3AC1602E

Item Serial clock cycle SCL high pulse width SCL low pulse width CSB setup time CSB hold time Data setup time Data hold time Read access time

Signal DB5 (SCL) DB5 (SCL) DB5 (SCL)
CSB CSB DB7 (SDI) DB7 (SDI) DB6 (SDO)

Symbol tCYS tWHS tWLS tCSS tCHS tDSS tDHS tACCS

Min. Typ. Max. Unit

300 –

– ns

100 –

– ns

100 –

– ns

150 –

– ns

150 –

– ns

100 –

– ns

100 –

– ns

– 80 ns

Note

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12. BUILT IN FONT TABLES
English/Japanese (FT[1:0] = 00, default)

Model No.: SO3AC1602E

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Western European table 1 (FT[1:0] = 01)

Model No.: SO3AC1602E

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English/Russian (FT[1:0] = 10)

Model No.: SO3AC1602E

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Western European table 2 (FT[1:0] = 11)

Model No.: SO3AC1602E

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Model No.: SO3AC1602E

13. HOW TO USE CGRAM

The Character Generator RAM (CGRAM) is used to generate custom 5×8 character patterns. There are 8 available addresses: CGRAM Address 0x00 through 0x08.

Character Code DDRAM address on Font Table used to write CGRAM character to display

CGRAM Address

Character Patterns (CGRAM data)

Character Patterns (CGRAM data)

5 4 3 2 1 0 76543210

0x00 0x01 0x02..0x06 0x07

0 0 0 0 00 0 01 0 10 0 11 1 00 1 01 1 10 1 11
0 0 1 0 00 0 01 0 10 0 11 1 00 1 01 1 10 1 11
. . . . .. . . . . .. . . . . .. . . . . .. 1 11 0 00
0 01 0 10 0 11 1 00 1 01 1 10 1 11

– – – 1 1 1 1 0 Character pattern #0 – – – 10001 – – – 10001 – – – 11110 – – – 10100 – – – 10010 – – – 10001 – – – 0 0 0 0 0 Cursor position – – – 1 0 0 0 1 Character pattern #1 – – – 01010 – – – 11111 – – – 00100 – – – 11111 – – – 00100 – – – 00100 – – – 0 0 0 0 0 Cursor position – – – . . . . . – – – . . . . . – – – . . . . . – – – . . . . . – – – 0 0 0 0 0 Character pattern #7 – – – 01010 – – – 00000 – – – 00000 – – – 10001 – – – 01110 – – – 00100 – – – 0 0 0 0 0 Cursor position

Notes: “-” = Not used The cursor line position can be used, it will be displayed as a logic-OR if the cursor is turned ON. CGRAM is stored in positions 0x00 through 0x07 of the font table. Therefore, to write the first CGRAM character to the display, you would move the cursor to the desired DDRAM location on the display and write character data 0x00.

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Model No.: SO3AC1602E

14. LNITIALIATION SWUENCE
8-bit mode:
Power ON
Wait for power stabilization: 1ms

Function Set:

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

0

1

1

1

0

X

X

Check BUSY flag Display OFF:

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

0

0

0

1

0

X

X

Check BUSY flag Display Clear:

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

0

0

0

0

0

0

1

Check BUSY flag Entry Mode Set:

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

0

0

0

0

1

1

0

Check BUSY flag Home Command:

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

0

0

0

0

0

1

0

Check BUSY flag Display ON:

RS R/W DB7 DB6 DB5 DB4 DB3 DB2 DB1 DB0

0 0

0

0

0

0

1

1

X

X

Initialization End

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4-bit mode:
Power ON Wait for power stabilization: 1ms Function Set:

RS R/W DB7 DB6 DB5 DB4

0 0

0

0

1

0

0 0

0

0

1

0

0 0

1

0

X

X

Check BUSY flag Display OFF:

RS R/W DB7 DB6 DB5 DB4

0 0

0

0

0

0

0 0

1

0

X

X

Check BUSY flag Display Clear:

RS R/W DB7 DB6 DB5 DB4

0 0

0

0

0

0

0 0

0

0

0

1

Check BUSY flag Entry Mode Set:

RS R/W DB7 DB6 DB5 DB4

0 0

0

0

0

0

0 0

0

1

1

0

Check BUSY flag

Home Command:

RS R/W DB7 DB6 DB5 DB4

0 0

0

0

0

0

0 0

0

0

1

0

Check BUSY flag Display ON:

RS R/W DB7 DB6 DB5 DB4

0 0

0

0

0

0

0 0

1

1

X

X

Initialization End

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Model No.: SO3AC1602E

15.QUALITY LNFORMATION

Test Item

Content of Test

Test Condition

High Temperature storage Test the endurance of the display at high +80C , 240hrs

storage temperature. Low Temperature storage Test the endurance of the display at low

-40C , 240hrs

High Temperature

storage temperature. Test the endurance of the display by

+80C 240hrs

Operation

applying electric stress (voltage & current)

Low Temperature

at high temperature. Test the endurance of the display by

-40C , 240hrs

Operation

applying electric stress (voltage & current)

High Temperature /

at low temperature. Test the endurance of the display by

+60C , 90% RH , 240hrs

Humidity Operation

applying electric stress (voltage & current)

Thermal Shock resistance

at high temperature with high humidity. Test the endurance of the display by applying electric stress (voltage & current)

-40C,30min -> 25C,5min -> 80C,30min = 1 cycle

during a cycle of low and high

100 cycles

temperatures.

Vibration test

Test the endurance of the display by

10-22Hz , 15mm amplitude.

applying vibration to simulate

22-500Hz, 1.5G

transportation and use.

30min in each of 3 directions

X,Y,Z

Atmospheric Pressure test Test the endurance of the display by

115mbar, 40hrs

applying atmospheric pressure to simulate

Static electricity test

transportation by air. Test the endurance of the display by

VS=800V, RS=1.5k, CS=100pF

applying electric static discharge.

One time

Note 1: No condensation to be observed. Note 2: Conducted after 2 hours of storage at 25C, 0%RH.

Note 3: Test performed on product itself, not inside a container.

Evaluation Criteria:

1: Display is fully functional during operational tests and after all tests, at room temperature.

2: No observable defects.

3: Luminance >50% of initial value.

4: Current consumption within 50% of initial value

Note
2 1,2 2 1,2 1,2
3
3

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Documents / Resources

Surenoo SOA3 C1602E Character OLED Module [pdf] User Manual
SOA3 C1602E, S 3AOC1602E, SOA3 C1602E Character OLED Module, SOA3 C1602E, Character OLED Module, OLED Module, Module

References

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