NHD-0216K1Z-FS NEWHAVEN | Alldatasheet
Document overview
- Manufacturer or author: Provided By ALLDATASHEET.COM(FREE DATASHEET DOWNLOAD SITE)
- PDF pages: 12
Technical content
[1] NHD‐0216K1Z‐FS(RGB)FBW‐REV1 Character Liquid Crystal Display Module NHD‐ Newhaven Display 0216‐ 2 lines x 16 characters K1Z‐ Model FS‐ Transflective RGB‐ Side backlight RED, GREEN, BLUE F‐ FSTN (+) B‐ 6:00 view W‐ Wide Temperature (‐20°C ~ +70°C) REV1‐ Revision 1 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
[2] Document Revision History Revision Date Description Changed by 0 1/23/2006 Initial Release ‐ 1 6/4/2009 User Guide Reformat ‐ 2 9/16/2009 Backlight Revision BE 3 10/23/2009 Block Diagram/Initialization/electrical Revision BE 4 1/7/2010 Optical revised BE Functions and Features
- 2 lines x 16 characters
- Built‐in controller (SPLC780D or equivalent)
- Red, Green and Blue Backlights
- +5.0V power supply
- 1/16 duty, 1/5 bias
- RoHS Compliant
Notes: 1.) Driver Method: 1/16 duty, 1/5 bias, VDD5.0V VLCD 4.5V 2.) Display Type: FSTN/Positive/6:00 View 3.) Operating Temp: -20 ~70 /Storage Temp: -30 ~80 4.) Backlight Type: Side/R,G,B 5.) Driver: SPLC780D/4bit or 8bit MPU 6.) RoHS Compliant NHD-0216K1Z-FS(RGB)-FBW-REV1 Newhaven Display Mechanical Drawing LED-
[4] Pin Description and Wiring Diagram Pin No. Symbol External Connection Function Description
1 VSS Power Supply Ground
2 VDD Power Supply Power supply for logic (+5.0V) 3 V0 Adj. Power Supply Power supply for contrast (approx. 0.5V)
4 RS MPU Register select signal RS=1: DATA RS=0: COMMAND
5 R/W MPU Read/Write select signal RW=1: READ RW=0: WRITE
6 E MPU Operation enable signal Falling Edge Triggered
7‐10 DB0 – DB3 MPU Four low order bi‐directional three‐state data bus lines. These four are not used during 4‐bit operation 11‐14 DB4 – DB7 MPU Four high order bi‐directional three‐state data bus lines.
15 LED‐ Power Supply Ground for Backlight
16 LED‐RED Power Supply Power supply for backlight (2.2V) 17 LED‐GREEN Power Supply Power supply for backlight (3.3V) 18 LED‐BLUE Power Supply Power supply for backlight (3.3V) Recommended LCD connector: 2.54mm pitch 1x18 pin header Backlight connector: Pins 15‐18 of LCD connector Mates with: ‐
[5]
Electrical Characteristics
Item Symbol Condition Min. Typ. Max. Unit Operating Temperature Range Top ‐ 20 ‐ +70 ⁰ C Storage Temperature Range Tst ‐ 30 ‐ +80 ⁰ C Supply Voltage VDD 4.7 5.0 5.5 V Supply Current IDD ‐ 1.5 2.5 mA Supply for LCD (contrast) VDD‐V0 Ta=25°C ‐ 4.5 ‐ V “H” Level input Vih 2.2 ‐ VDD V “L” Level input Vil 0 ‐ 0.6 V “H” Level output Voh 2.4 ‐‐ V “L” Level output Vol ‐ ‐ 0.4 V Backlight Supply Voltage – RED Vled Ta=25°C ‐ 2.2 ‐ V Backlight Supply Current – RED Iled Ta=25°C, Vled=2.2V ‐ 20 30 mA Backlight Supply Voltage – GREEN Vled Ta=25°C ‐ 3.3 ‐ V Backlight Supply Current – GREEN Iled Ta=25°C, Vled=3.3V ‐ 20 30 mA Backlight Supply Voltage – BLUE Vled Ta=25°C ‐ 3.3 ‐ V Backlight Supply Current – BLUE Iled Ta=25°C, Vled=3.3V ‐ 20 30 mA Optical Characteristics Item Symbol Condition Min. Typ. Max. Unit Viewing Angle ‐ Vertical (Top) AV Cr ≥3 ‐ 20 ‐ ⁰ Viewing Angle ‐ Vertical (bottom) AV Cr ≥3 ‐ 50 ‐ ⁰ Viewing Angle ‐ Horizontal (left) AH Cr ≥3 ‐ 30 ‐ ⁰ Viewing Angle ‐ Horizontal (right) AH Cr ≥3 ‐ 30 ‐ ⁰ Contrast Ratio Cr 3 5 ‐ ‐ Response Time (rise) Tr ‐ ‐ 150 250 ms Response Time (fall) Tf ‐ ‐ 150 250 ms Controller Information Built‐in SPLC780D‐001. Download specification at http://www.newhavendisplay.com/app_notes/SPLC780D.pdf
[6] Table of Commands
[7] Timing Charateristics
[8]
[9] Built‐in Font Table
[10] Example Initialization Program 4-bit Initialization: void command(char i) P1 = i; //put data on output Port D_I =0; //D/I=LOW : send instruction R_W =0; //R/W=LOW : Write Nybble(); //Send lower 4 bits i = i<<4; //Shift over by 4 bits P1 = i; //put data on output Port Nybble(); //Send upper 4 bits void write(char i) P1 = i; //put data on output Port D_I =1; //D/I=HIGH : send data R_W =0; //R/W=LOW : Write Nybble(); //Clock lower 4 bits i = i<<4; //Shift over by 4 bits P1 = i; //put data on output Port Nybble(); //Clock upper 4 bits void Nybble() E = 1; Delay(1); //enable pulse width >= 300ns E = 0; //Clock enable: falling edge void init() P1 = 0; P3 = 0; Delay(100); //Wait >15 msec after power is applied P1 = 0x30; //put 0x30 on the output port Delay(30); //must wait 5ms, busy flag not available Nybble(); //command 0x30 = Wake up Delay(10); //must wait 160us, busy flag not available Nybble(); //command 0x30 = Wake up #2 Delay(10); //must wait 160us, busy flag not available Nybble(); //command 0x30 = Wake up #3 Delay(10); //can check busy flag now instead of delay P1= 0x20; //put 0x20 on the output port Nybble(); //Function set: 4-bit interface command(0x28); //Function set: 4-bit/2-line command(0x10); //Set cursor command(0x0F); //Display ON; Blinking cursor command(0x06); //Entry Mode set
[11] 8-bit Initialization: void command(char i) P1 = i; //put data on output Port D_I =0; //D/I=LOW : send instruction R_W =0; //R/W=LOW : Write E = 1; Delay(1); //enable pulse width >= 300ns E = 0; //Clock enable: falling edge void write(char i) P1 = i; //put data on output Port D_I =1; //D/I=LOW : send data R_W =0; //R/W=LOW : Write E = 1; Delay(1); //enable pulse width >= 300ns E = 0; //Clock enable: falling edge void init() E = 0; Delay(100); //Wait >15 msec after power is applied command(0x30); //command 0x30 = Wake up Delay(30); //must wait 5ms, busy flag not available command(0x30); //command 0x30 = Wake up #2 Delay(10); //must wait 160us, busy flag not available command(0x30); //command 0x30 = Wake up #3 Delay(10); //must wait 160us, busy flag not available command(0x38); //Function set: 8-bit/2-line command(0x10); //Set cursor command(0x0c); //Display ON; Cursor ON command(0x06); //Entry mode set
[12] Quality Information Test Item Content of Test Test Condition Note High Temperature storage Endurance test applying the high storage temperature for a long time. +80⁰C , 48hrs 2 Low Temperature storage Endurance test applying the low storage temperature for a long time. ‐30⁰C , 48hrs 1,2 High Temperature Operation Endurance test applying the electric stress (voltage & current) and the high thermal stress for a long time. +70⁰C 48hrs 2 Low Temperature Operation Endurance test applying the electric stress (voltage & current) and the low thermal stress for a long time. ‐20⁰C , 48hrs 1,2 High Temperature / Humidity Operation Endurance test applying the electric stress (voltage & current) and the high thermal with high humidity stress for a long time. +40⁰C , 90% RH , 48hrs 1,2 Thermal Shock resistance Endurance test applying the electric stress (voltage & current) during a cycle of low and high thermal stress. 0⁰C,30min ‐> +25⁰C,5min ‐> +50⁰C,30min = 1 cycle 10 cycles Vibration test Endurance test applying vibration to simulate transportation and use. 10‐55Hz , 15mm amplitude. 60 sec in each of 3 directions X,Y,Z For 15 minutes Static electricity test Endurance test applying electric static discharge. VS=800V, RS=1.5kΩ, CS=100pF One time 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. 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