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NHD 24064WG ATMI VZ# Graphic Liquid Crystal Display Module NHD Newhaven Display 24064 240 x 64 pixels WG Display Type: Graphic A Model T White LED Backlight M STN Blue ( ) I Transmissive, 6:00 view, Wide Temperature ( 20 C ~ +70 C) VZ# With Built in Negative Voltage Supply RoHS Compliant Newhaven Display International, Inc. 2511 Technology Drive, Suite 101 Elgin IL, 60124 Ph: 847 844 8795 Fax: 847 844 8796 www.newhavendisplay.com nhtech@newhavendisplay.com nhsales@newhavendisplay.com

Document Revision History Revision Date Description Changed by 0 2/28/2008 Initial Release 1 4/9/2010 User guide reformat BE 2 5/13/2010 Updated Backlight Supply Voltage and Current MC 3 11/16/2010 Pin description update AK 4 4/11/2011 Mechanical drawing updated AK 5 5/16/2012 Optical characteristics updated AK 6 5/3/2013 Updated electrical and optical characteristics. Updated JN wiring diagram and drawing page. Added font table. Functions and Features 240 x 64 pixels Built in RA6963 controller +5.0V Power Supply 1/64 duty RoHS Compliant [2]

65.0±0.5 52.6 54.0 39.0(VA) 33.88(AA) 2.54 22.86 13.0 6.2 5.5 13.0 15.56 0.53 0.49 Mechanical Drawing A B C D 1 2 3 4 5 6 5D-SL001-03 190.0±5.0 PIN 1 PIN 3 2.0 A 13.3 23.5 26.42 A K 4-O 3.5 PTH 4-O 7.0PAD Hot Glue BL 180.0 ± 0.5 176.0 154.6 133.0(VA) 127.16(AA) 20-O 1.0 PTH 20-O 1.8 PAD Rev Description Date CONFIDENTIAL K A K Com ponent Side Hot Glue RED LINE W HITE LINE 0.53 0.49 DOT SIZE SCALE 10/1 Gen. Tolerance 05/03/13 ±0.3mm mm NHD-24064WG-ATMI-VZ 1 2 3 4 5 6 The drawing contained herein is the exclusive property of Newhaven Display International, Inc. and shall not be copied, reproduced, and/or disclosed in any format without permission. [3] 2.54 4.13 Date Unit 12.3M ax 1.6 7.7 LED B/L Model: 1 FG ND 2 V ss 3 Vdd 4 Vo 5 W R 6 RD 7 CE 8 C/D 9 Vee 10 RESET 11 D B0 12 D B1 13 D B2 14 D B3 15 D B4 16 D B5 17 D B6 18 D B7 19 FS 20 N C A B C D

Pin Description and Wiring Diagram Pin No. Symbol External Function Description Connection 1 FGND Power Supply Frame Ground 2 VSS Power Supply Ground 3 VDD Power Supply Power supply for logic (+5.0V) 4 V0 Adj. Power Supply Power supply for contrast (approx. 7V) 5 /WR MPU Active LOW Write signal 6 /RD MPU Active LOW Read signal 7 /CE MPU Active LOW chip enable 8 C/D MPU Register select signal C/D=0: DATA C/D=1: COMMAND 9 VEE Power Supply Negative voltage output ( 10V) 10 RES MPU Active LOW reset signal 11~18 DBO~DB7 MPU Bi directional 8 bit data bus 19 FS MPU Font Select: 1=6x8 fonts, 0=8x8 fonts 20 NC No Connect A LED+ Power Supply Power supply for LED Backlight (+3.5V) K LED Power Supply Ground for Backlight Recommended LCD connector: 2.54mm pitch pins Backlight connector: JST XHP 3 Mates with: B 3B XH A [4]

Electrical Characteristics Item Symbol Condition Min. Typ. Max. Unit Operating Temperature Range Top Absolute Max 20 +70 ⁰C Storage Temperature Range Tst Absolute Max 30 +80 ⁰C Supply Voltage VDD 3.0 5.5 V Supply Current IDD VDD=5.0V 12 20 ma Supply for LCD (contrast) VDD V0 Ta=25 12.0 V H Level input VIH VDD 2.2 VDD V L Level input VIL 0 0.8 V H Level output VOH VDD 0.3 VDD V L Level output VOL 0 0.3 V Backlight Supply Voltage Vled 3.5 3.6 V Backlight Supply Current Iled Vled=3.5V 80 100 128 ma Backlight Lifetime Iled=100mA 50,000 Hrs. Optical Characteristics Item Symbol Condition Min. Typ. Max. Unit Viewing Angle Top 20 ⁰ Viewing Angle Bottom 40 ⁰ Cr 2 Viewing Angle Left 30 ⁰ Viewing Angle Right 30 ⁰ Contrast Ratio Cr 3 Response Time (rise) Tr 200 300 ms Response Time (fall) Tf 200 300 ms Controller Information Built in RA6963 controller. Please download specification at http://www.newhavendisplay.com/app_notes/ra6963.pdf [5]

Table of Commands [6]

Timing Characteristics [7]

Built in Font Table [8]

Example Initialization Program void command(int A) { P1 = A; ID = 1; CE = 0; WRT = 0; WRT = 1; CE = 1; } void data(int A) { P1 = A; ID = 0; CE = 0; WRT = 0; WRT = 1; CE = 1; } void init() { RST = 1; RDD = 1; F_S = 1; data(0x00); data(0x00); commnd(0x40); data(0x00); data(0x40); command(0x42); data(0x1e); data(0x00); command(0x41); data(0x1e); data(0x00); command(0x43); command(0x80); } //Command //Data //Set Text Home Address //Low Address Columns //High Address //Set Graphic Home Address //Low Address Columns //High Address //Set Text Area //Low Address Columns //High Address //Set Graphic Areaa //Mode Set to 'OR' mode [9]

Quality Information Test Item Content of Test Test Condition Note High Temperature storage Endurance test applying the high storage +80⁰C, 200hrs 2 temperature for a long time. Low Temperature storage Endurance test applying the low storage 30⁰C, 200hrs 1,2 temperature for a long time. High Temperature Operation Endurance test applying the electric stress (voltage & current) and the high thermal stress for a long time. +70⁰C 200hrs 2 Low Temperature Operation High Temperature / Humidity Operation Thermal Shock resistance Vibration test Endurance test applying the electric stress (voltage & current) and the low thermal stress for a long time. Endurance test applying the electric stress (voltage & current) and the high thermal with high humidity stress for a long time. Endurance test applying the electric stress (voltage & current) during a cycle of low and high thermal stress. Endurance test applying vibration to simulate transportation and use. Static electricity test Endurance test applying electric static discharge. Note 1: No condensation to be observed. Note 2: Conducted after 4 hours of storage at 25⁰C, 0%RH. Note 3: Test performed on product itself, not inside a container. 20⁰C, 200hrs 1,2 +60⁰C, 90% RH, 96hrs 1,2 20⁰C,30min > 25⁰C,5min > 70⁰C,30min = 1 cycle 10 cycles 10 55Hz, 15mm amplitude. 60 sec in each of 3 directions X,Y,Z For 15 minutes VS=800V, RS=1.5kΩ, CS=100pF One time 3 Precautions for using LCDs/LCMs See Precautions at www.newhavendisplay.com/specs/precautions.pdf Warranty Information and Terms & Conditions http://www.newhavendisplay.com/index.php?main_page=terms [10]