PMO 13505 RITDISPLAY, PMO 13505 Datasheet

no-image

PMO 13505

Manufacturer Part Number
PMO 13505
Description
DISPLAY, OLED 128X64 YLW
Manufacturer
RITDISPLAY
Datasheet

Specifications of PMO 13505

Screen Size
25.4mm
Resolution
128 X 64
Viewing Area (h X W)
12.14mm X 21.74mm
Pixel Size (h X W)
0.17mm X 0.15mm
Voltage Rating
2.7V
Operating Temperature Range
-40°C To +70°C
Display Te
RoHS Compliant
Display Technology
OLED
Rohs Compliant
Yes
1.0 inch 128X64 dots Yellow OLED
PRODUCT NAME:
PMO13505
PRODUCT NO.:
CUSTOMER
APPROVED BY
DATE:
Pacer International
- 1 -
REV.: A02
2007/08/23

Related parts for PMO 13505

PMO 13505 Summary of contents

Page 1

Yellow OLED PRODUCT NAME: PRODUCT NO.: CUSTOMER APPROVED BY DATE: Pacer International PMO13505 - 1 - REV.: A02 2007/08/23 ...

Page 2

REVISION RECORD REV. REVISION DESCRIPTION X01 INITIAL RELEASE X02 Add the operating conditions for ■ different luminance Add the panel electrical specifications ■ Add the application circuit ■ A01 Transfer from X version ■ Add the information of module weight ...

Page 3

CONTENTS ITEM 1. SCOPE 2. WARRANTY 3. FEATURES 4. MECHANICAL DATA 5. MAXIMUM RATINGS 6. ELECTRICAL CHARACTERISTICS 6.1 D.C ELECTRICAL CHARACTERISTICS 6.2 ELECTRO-OPTICAL CHARACTERISTICS 7. INTERFACE 7.1 FUNCTION BLOCK DIAGRAM 7.2 PANEL LAYOUT DIAGRAM 7.3 PIN ASSIGNMENTS 7.4 GRAPHIC DISPLAY ...

Page 4

... SCOPE This specification is to define the general provisions and quality requirements that apply to the supply of display cells manufactured by RiTdisplay. This document, together with the Module Ass’ y Drawing, is the highest-level specification for this product. 2. WARRANTY RiTdisplay warrants that the products delivered pursuant to this specification (or order) will conform to the agreed specifications for twelve (12) months from the shipping date (" ...

Page 5

MECHANICAL DATA NO ITEM 1 Dot Matrix 2 Dot Size 3 Dot Pitch 4 Aperture Rate 5 Active Area 6 Panel Size 7 Panel Thickness 8 Module Size 9 Diagonal A/A size 10 Module Weight SPECIFICATION 128 (W) x ...

Page 6

MAXIMUM RATINGS ITEM MIN Supply Voltage (V ) -0.3 DD Supply Voltage (Vcc) Operating Temp. Storage Temp Humidity Life Time 29,000 Life Time 35,000 Life Time 45,000 Note: (A) Under Vcc = 12V 25°C, 50% RH. (B) ...

Page 7

ELECTRICAL CHARACTERISTICS 6.1 D.C ELECTRICAL CHARACTERISTICS SYMBOL PARAMETERS Analog power supply V CC (for OLED panel) V Digital power supply DD Operating current for 2.7V IREF = 10uA DD No panel attached, ...

Page 8

ELECTRO-OPTICAL CHARATERISTICS PANEL ELECTRICAL SPECIFICATIONS PARAMETER Normal mode current Standby mode current Normal mode power consumption Standby mode power consumption Normal Luminance Standby Luminance CIEx (Yellow) CIEy (Yellow) Dark Room Contrast 2000:1 Viewing Angle Response Time (1) Normal mode ...

Page 9

INTERFACE 7.1 FUNCTION BLOCK DIAGRAM 7.2 PANEL LAYOUT DIAGRAM - 9 - REV.: A02 2007/08/23 ...

Page 10

PIN ASSIGNMENTS Pin No. Pin Name This pin is the output pin for the voltage output low level for 1 VSL SEG signals. A capacitor should be connected between this pin and V This is a ground pin. It ...

Page 11

This pin is MCU interface input. When interfacing to a 6800-series microprocessor, this pin will be used as the Enable (E) signal. Read/write operation is initiated when this 19 E/RD# pin is pulled high and the CS# is pulled low. ...

Page 12

GRAPHIC DISPLAY DATA RAM ADDRESS MAP The GDDRAM is a bit mapped static RAM holding the bit pattern to be displayed. The size of the RAM is 128x80x4 bits. For mechanical flexibility, re-mapping on both Segment and Common outputs ...

Page 13

Table 5–GDDRAM address map showing Horizontal Address Increment A[2]=0, Column Address Re-map A[0]=1, Nibble Re-map A[1]=1, COM Re-map A[4]=0, and Display Start Line=00H (Data byte sequence: D0, D1, … , D5118, D5119) Table 6–GDDRAM address map showing Horizontal Address Increment ...

Page 14

INTERFACE TIMING CHART 8080-Series MPU Parallel Interface Timing Characteristics 8080-series parallel interface characteristics (Form REV.: A02 2007/08/23 ...

Page 15

REV.: A02 2007/08/23 ...

Page 16

Serial Interface Timing Characteristics Serial Interface Characteristics - 16 - REV.: A02 2007/08/23 ...

Page 17

POWER ON / OFF SEQUENCE & APPLICATION CIRCUIT 8.1 POWER ON / OFF SEQUENCE Power ON sequence: 1. Power ON V DD. 2. After V become stable, set RES# pin LOW (logic low) for at least 3us(t DD and ...

Page 18

APPLICATION CIRCUIT Component: C1: 4.7uF/16V (0805) C2: 4.7uF/25V (Tantalum type) C3: 0.1uF/16V(0603) C4: 0.1uF/16V(0603) R1: 1M ohm(0603) This circuit is for 8080 interface. 8.3 COMMAND TABLE Refer to SSD1325 IC Spec REV.: A02 2007/08/23 ...

Page 19

RELIABILITY TEST CONDITIONS No. Items High temp. 1 (Non-operation) 2 High temp. (Operation) 3 Low temp. (Operation) High temp. / High 4 humidity (Operation) Thermal shock 5 (Non-operation) 6 Vibration 7 Drop 8 ESD (Non-operation) Test and measurement conditions ...

Page 20

EXTERNAL DIMENSION - 20 - REV.: A02 2007/08/23 ...

Page 21

PACKING SPECIFICATION - 21 - REV.: A02 2007/08/23 ...

Page 22

APPENDIXES APPENDIX 1: DEFINITIONS A. DEFINITION OF CHROMATICITY COORDINATE The chromaticity coordinate is defined as the coordinate value on the CIE 1931 color chart for DEFINITION OF CONTRAST RATIO The contrast ratio is defined ...

Page 23

D. DEFINITION OF VIEWING ANGLE The viewing angle is defined as Figure 3. Horizontal and vertical (H & V) angles are determined for viewing directions where luminance varies by 50% of the perpendicular value.  = 0 ...

Page 24

APPENDIX 2: MEASUREMENT APPARATUS A. LUMINANCE/COLOR COORDINATE PHOTO RESEARCH PR-705, MINOLTA CS-100 Measurement Header Panel Plate Form B. CONTRAST / RESPONSE TIME / VIEW ANGLE WESTAR CORPORATION FPM-510 Measurement Header Panel Plate Form PR-705 / MINOLTA CS-100 Color Analyzer Westar ...

Page 25

C. ESD ON AIR DISCHARGE MODE R 330 ohms V C 150pF ESD DISCHARGE TIP RETURN GROUND PLANE - 25 - REV.: A02 EUT 2007/08/23 ...

Page 26

APPENDIX 3: PRECAUTIONS A. RESIDUE IMAGE Because the pixels are lighted in different time, the luminance of active pixels may reduce or differ from inactive pixels. Therefore, the residue image will occur. To avoid the residue image, every pixel needs ...

Related keywords