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NHD-160128WG-BTGH-VZ#-1

NHD-160128WG-BTGH-VZ#-1

  • 厂商:

    NEWHAVEN

  • 封装:

    -

  • 描述:

    Graphic LCD Display Module Transflective Blue (Gray - Inverted) STN - Super-Twisted Nematic Parallel...

  • 数据手册
  • 价格&库存
NHD-160128WG-BTGH-VZ#-1 数据手册
Product Specification NHD-160128WG-BTGH-VZ#-1 Newhaven Display International, Inc. 2661 Galvin Court, Elgin, IL 60124 USA Ph: 847.844.8795 | Fx: 847.844.8796 www.newhavendisplay.com REACH Compliant RoHS Compliant Table of Contents Document Revision History ……………………………………………………………………………………………………………………..…. 2 Functions and Features …………………………………………………………………………………………………………………..………….. 2 Mechanical Drawing ………………………………………………………………………………………………………..…………….….……... 3 Pin Description ……………………………………………………………………………………………………………………………….….……… 4 Electrical Characteristics ……………………………………………………………………………….…………………………………….…….. 5 Optical Characteristics ………………………………………………………………………………………………………………………………… 5 Driver Information ……………………………………………………………………………………………………..………………………………. 5 Table of Commands ……………………………………………………………………………………………………………….…………………… 6 Timing Characteristics ………………………………………………………………………………………………………………………………… 7 Quality Information …………….……………………………………………………………………………………..………………………..……. 9 Additional Resources ➢ Support Forum: http://www.nhdforum.newhavendisplay.com ➢ Github: https://github.com/newhavendisplay ➢ Example Code: https://www.newhavendisplay.com/example_code.html ➢ Knowledge Center: https://www.newhavendisplay.com/knowledge_center.html ➢ Quality Center: https://www.newhavendisplay.com/quality_center.html ➢ Precautions for using LCDs/LCMs: https://www.newhavendisplay.com/specs/precautions.pdf ➢ Warranty / Terms & Conditions: https://www.newhavendisplay.com/terms.html 1 Document Revision History Revision Date Description Changed By 0 3/16/10 Initial Release - 1 4/13/10 User guide reformat BE 2 4/21/10 Block diagram update BE 3 5/14/10 Updated Input and Output Voltages in Electrical Characteristics MC 4 5/15/17 Mechanical, Electrical & Optical Characteristics Updated TM 5 12/29/17 Supply Current Updated SB 6 9/20/19 Updated Drawing, Controller Link AS 7 4/8/20 Glass Panel Updated SB 8 6/24/20 Updated 2D Mechanical Drawing Page, Logic Voltage & Quality Information AS 9 7/8/20 Fixed typo on 2D Mechanical Drawing AS 10 5/12/21 Electrical, Optical & Controller IC Updated ZP 11 8/18/21 Updated Mechanical Drawing ZP Functions and Features • • • • 160 x 28 pixels Built-in RA6963N1 controller +5.0V Power Supply 1/128 duty 2 1 3 Mechanical Drawing 4 5 6 SYMBOL 7 8 REVISION DATE A 129.0 0.5 118.0 101.0(VA) 95.96(AA) 14.0 16.52 3.5 2.9 3.5 7 10.0 12.62 A 2 2.54 16.5max 11.9 2.5 Pin Assignment 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 20.00 22.86 (P2.54*9) NEWHAVEN DISPLAY 12.00 C 102.0 0.5 96.2 95.0 88.0 82.0(VA) 76.76(AA) 39.6 B 20- 1.0 PTH 20- 1.8 PAD NHD-160128WG-BTGH-VZ#-1_Rev1B www.newhavendisplay.com C-PO#-datecode-Serial Number Made in China Label on Backside D 1.6 4- 3.5PTH 4- 5.5PAD 57.5 4.0 57.0 3.5 122.0 E F 1 0.60 0.56 1/128 Duty STN Posi�ve / Gray / Transflec�ve 6:00 5.0V VDD, 19.2V VLCD White LED RA6963N1 2 3 C D E Standard Tolerance: (Unless otherwise specified) Linear: ±0.3mm Unless otherwise specified: 0.60 0.56 Notes: 1. Driver: 2. Display Mode: 3. Op�mal View: 4. Voltage: 5. Backlight: 6. Driver IC: FG Vss VDD Vo Vee WR RD CE D/C HALT RESET DB0 DB1 DB2 DB3 DB4 DB5 DB6 DB7 NC B • Dimensions are in Millimeters • Third Angle Projection Drawing/Part Number: NHD-160128WG-BTGH-VZ#-1 Drawn By: Drawn Date: Z.Palrang 08/18/2021 Approved By: Approved Date: Do Not Scale Drawing Z.Palrang 08/18/2021 Revision: 1B Size: A3 Scale: NS Sheet 1 of 1 This drawing is solely the property of Newhaven Display International, Inc. The information it contains is not to be disclosed, reproduced or copied in whole or part without written approval from Newhaven Display. 4 5 6 7 8 F Pin Description and Wiring Diagram Pin No. 1 2 3 4 5 6 7 8 9 10 11 12-19 20 A K Symbol FG VSS VDD V0 VEE /WR /RD /CE C/D /HALT /RESET DB0-DB7 NC LED+ LED- External Connection Power Supply Power Supply Power Supply Adj. Power Supply Power Supply MPU MPU MPU MPU MPU MPU Power Supply Power Supply Function Description Frame Ground Ground Power supply for Logic (+5.0V) Power supply for contrast (approx. -14.2V) Negative voltage output (-16.0V) Active LOW Write signal Active LOW Read signal Active LOW Chip Select signal. Register select signal. C/D=1: Command C/D=0: Data Active LOW Clock operating stop signal Active LOW Reset signal This is an 8-bit Bi-directional data bus No Connect Backlight Anode (128mA @ 3.5V) Backlight Cathode (Ground) Recommended LCD connector: 2.54mm pitch pins Backlight connector: Mates with: - 4 Electrical Characteristics Item Operating Temperature Range Storage Temperature Range Supply Voltage Supply Current Supply for LCD (contrast) “H” Level input “L” Level input “H” Level output “L” Level output Backlight Supply Voltage Backlight Supply Current Backlight Lifetime Symbol TOP TST VDD IDD VLCD VIH VIL VOH VOL Condition Absolute Max Absolute Max VDD = 5.0V TOP = 25°C - Min. -20 -30 4.5 15 18.6 0.8*VDD VSS VDD-0.3 VSS Typ. 5.0 30 19.2 - Max. +70 +80 5.5 60 19.8 VDD 0.15*VDD VDD 0.3 Unit ⁰C ⁰C V mA V V V V V VLED ILED - VLED = 3.5V ILED = 128mA 3.4 96 - 3.5 128 50,000 3.6 160 - V mA Hrs. Optical Characteristics Optimal Viewing Angles Item Top Bottom Left Right Contrast Ratio Response Time Rise Fall Symbol ϕY+ ϕYθXθX+ CR TR TF Condition CR ≥ 2 TOP = 25°C Min. 0 0 0 0 2 - Typ. 3 200 250 Max. 20 40 30 30 300 350 Unit ⁰ ⁰ ⁰ ⁰ ms ms Controller Information Built-in RA6963N1 Controller. Please download specification at https://www.newhavendisplay.com/resources_dataFiles/datasheets/LCDs/RA6963.pdf 5 Table of Commands 6 Timing Characteristics 7 Example Initialization Program //------------------------------------------------------------------------------sbit ID = P3^1; sbit CS = P3^1; sbit RW = P3^0; sbit CE = P3^4; //sbit READ = P0^0; sbit FS = P3^2; sbit RST = P3^6; //------------------------------------------------------------------------------void Writecom(char i) { P1 = i; ID = 1; CE = 0; RW = 0; //delay(1); RW = 1; CE = 1; //delay(1); } void Writedata(char i) { P1 = i; ID = 0; CE = 0; RW = 0; //delay(1); RW = 1; CE = 1; //delay(1); } //------------------------------------------------------------------------------void Init() { RST = 1; RD = 1; FS = 0; Writedata(0x00); Writedata(0x00); Writecom(0x40); Writedata(0x00); Writedata(0x40); Writecom(0x42); Writedata(0x1E); Writedata(0x00); Writecom(0x41); Writedata(0x1E); Writedata(0x00); Writecom(0x43); Writecom(0x80); } 8 Quality Information Test Item Content of Test High Temperature storage Endurance test applying the high storage temperature for a long time. Endurance test applying the low storage temperature for a long time. Endurance test applying the electric stress (voltage & current) and the high thermal stress for a long time. 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. Low Temperature storage High Temperature Operation Low Temperature Operation High Temperature / Humidity Operation Thermal Shock resistance Vibration test Static electricity test Endurance test applying electric static discharge. Test Condition Note +80⁰C , 96 Hrs. 2 -30⁰C , 96 Hrs. 1,2 +70⁰C 96 Hrs. 2 -20⁰C , 96 Hrs. 1,2 +60⁰C , 90% RH , 96 Hrs. 1,2 -20⁰C,30min -> 25⁰C,5min -> 70⁰C,30min = 1 cycle 10 cycles 10-55Hz , 1.5mm amplitude. 60 sec in each of 3 directions X,Y,Z For 15 minutes VS=±800V, RS=330Ω, CS=150pF 10 Times 3 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. 9
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