M170ETN01.1 AUO | Alldatasheet

Document overview

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Technical content

Datasheet sections

  • 1 Handling Precautions
  • 2 General Description
  • 2.1 Display Characteristics
  • 2.2 Absolute Maximum Rating of Environment
  • 2.3 Optical Characteristics
  • 3 TFT-LCD Module
  • 3.1 Block Diagram
  • 3.2 Interface Connection
  • 3.2.1 Connector Type
  • 3.2.2 Connector Pin Assignment
  • 3.3 Electrical Characteristics
  • 3.3.1 Absolute Maximum Rating
  • 3.3.2 Recommended Operating Condition
  • 3.4 Signal Characteristics
  • 3.4.1 LCD Pixel Format
  • 3.4.2 LVDS Data Format
  • 3.4.3 Color versus Input Data
  • 3.4.4 LVDS Specification
  • 3.4.5 Input Timing Specification
  • 3.4.6 Input Timing Diagram
  • 3.5 Power ON/OFF Sequence
  • 4 Backlight Unit
  • 4.1 Block Diagram
  • 4.2 Interface Connection
  • 4.2.1 Connector Type
  • 4.2.2 Connector Pin Assignment
  • 4.3 Electrical Characteristics
  • 4.3.1 Absolute Maximum Rating
  • 4.3.2 Recommended Operating Condition
  • 5 Reliability Test
  • 6 Shipping Label
  • 7 Mechanical Characteristics
  • 8 Packing Specification
  • 8.1 Packing Flow
  • 8.2 Pallet and shipment information

Product Specification M170ETN01.1 document version 0.1 1 (V ) Preliminary Specification ( ) Final Specification Module 17” Color TFT-LCD Model Name M170ETN01.1 Customer Date Approved by Note: This Specification is subject to change without notice. Approved by Date Chi Yin Wu Apr 8, 2013 Prepared by Date Jia Hau Jean Apr 8, 2013 AU Optronics corporation

Product Specification M170ETN01.1 document version 0.1 3 Record of Revision Version Date Page Old description New Description Remark 0.0 2013/2/6 All First version release - 0.1 2013/4/8 7 Color Coordinates is TBD Update Colo r Coordinates

Product Specification M170ETN01.1 document version 0.1 4

1 Handling Precautions

1) Since front polarizer is easily damaged, pay att ention not to scratch it. 2) Be sure to turn off power supply when inserting or disconnecting from input connector. 3) Wipe off water drop immediately. Long contact wi th water may cause discoloration or spots. 4) When the panel surface is soiled, wipe it with a bsorbent cotton or other soft cloth. 5) Since the panel is made of glass, it may break o r crack if dropped or bumped on hard surface. 6) Since CMOS LSI is used in this module, take care of static electricity and insure human earth when handling. 7) Do not open or modify the Module Assembly. 8) Do not press the reflector sheet at the back of the module to any directions. 9) In case a TFT-LCD Module has to be put back into the packing container slot after once it was taken out from the container, do not press the center of the LED lightbar edge. Otherwise the TFT-LCD Module may be damaged. 10) Insert or pull out the interface connector, be sure not to rotate nor tilt it of the TFT-LCD Module. 11) Do not twist nor bend the TFT -LCD Module even momentary. It should be taken into consideration that no bending/twisting forces are a pplied to the TFT-LCD Module from outside. Otherwise the TFT-LCD Module may be damaged. 12) Please avoid touching COF position while you ar e doing mechanical design. 13) When storing modules as spares for a long time, the following precaution is necessary: Store them in a dark place. Do not expose the modul e to sunlight or fluorescent light. Keep the temperature between 5 ℃ and 35 ℃ at normal humidity.

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2 General Description

This specification applies to the 17 inch wide Colo r a-Si TFT-LCD Module M170ETN01.1. The display supports the SXGA+ (1280(H) x 1024(V)) screen format and 16.7M colors (RGB 6-bits + Hi-FRC data). The input interface is Dual channel LVDS and this module doesn’t contain an driver board for backlight.

2.1 Display Characteristics

The following items are characteristics summary on the table under 25 ℃ condition: ITEMS Unit SPECIFICATIONS Screen Diagonal [mm] 432 (17.0”) Active Area [mm] 337.920(H) × 270.336(V) Pixels H x V - 1280 × 3(RGB) × 1024 Pixel Pitch [mm] 0.264(per one triad) × 0.264 Pixel Arrangement - R.G.B. Vertical Stripe Display Mode - Normally White White Luminance ( Center ) [cd/m 2] 250 (Typ.) Contrast Ratio - 1000 : 1 (Typ.) Response Time [msec] 5 (Typ., on/off) Power Consumption (LCD Module + Backligh unit) [Watt] 9.91 (Typ.) LCD module : PDD (Typ.)=3 @ Black pattern,Fv=60Hz Backlight unit : P BLU (Typ.) =6.91 @Is=60mA Weight [Grams] 1273 (Typ.) Outline Dimension [mm] 358.5(H) x 296.5(V) x 10.3(D ) (Typ.) Electrical Interface - Dual Channel LVDS Support Color - 16.7M colors (RGB 6-bits +Hi-FRC da ta) Surface Treatment - Anti-glare type, Hardness 3H Temperature Range Operating Storage (Shipping) oC] [oC] 0 to +50 -20 to +60 RoHS Compliance - RoHS Compliance TCO Compliance - TCO6.0 Compliance

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2.2 Absolute Maximum Rating of Environment

Permanent damage may occur if exceeding the following maximum rating. Note 2-1: Temperature and relative humidity range are shown as the below figure. 1. 90% RH Max ( Ta ≦39 ℃) 2. Max wet-bulb temperature at 39 ℃ or less. ( Ta ≦39 ℃) 3. No condensation Operating Range Storage Range Symbol Description Min. Max. Unit Remark TOP Operating Temperature 0 +50 [ oC] Note 2-1 TGS Glass surface temperature (operation) 0 +65 [ oC] Note 2-1 Function judged only HOP Operation Humidity 5 90 [%RH] TST Storage Temperature -20 +60 [ oC] HST Storage Humidity 5 90 [%RH] Note 2-1

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2.3 Optical Characteristics

The optical characteristics are measured on the following test condition. Test Condition: 1. Equipment setup: Please refer to Note 2-2. 2. Panel Lighting time: 30 minutes 3. VDD=5.0V, Fv=60Hz,Is=60mA,Ta=25 Symbol Description Min. Typ. Max. Unit Remark Lw White Luminance (Center of screen) 200 250 - [ c d / m 2 ] Note 2-2 By SR-3 Luni Luminance Uniformity (9 points) 75 80 - [%] Note 2-3 By SR-3 CR Contrast Ratio (Center of screen) 600 1000 - - Note 2-4 By SR-3 θR Right 75 85 - θL Horizontal Viewing Angle (CR=10) Left 75 85 - ΦH Up 70 80 - ΦL Vertical Viewing Angle (CR=10) Down 70 80 - θR Right 75 88 - θL Horizontal Viewing Angle (CR=5) Left 75 88 - ΦH Up 70 85 - ΦL Vertical Viewing Angle (CR=5) Down 70 85 - [degree] Note 2-5 By SR-3 TR Rising Time - 3.8 5.5 TF Falling Time - 1.2 2.5 Response Time Rising + Falling - 5 8 [msec] Note 2-6 By TRD-100 Rx Red x 0.615 0.645 0.675 Ry Red y 0.303 0.333 0.363 Gx Green x 0.290 0.320 0.350 Gy Green y 0.596 0.626 0.656 Bx Blue x 0.123 0.153 0.183 By Blue y 0.027 0.057 0.087 Wx White x 0.283 0.313 0.343 Wy Color Coordinates (CIE 1931) White y 0.299 0.329 0.359 - By SR-3 CT Crosstalk - - 1.5 [%] Note 2-7 By SR-3 FdB Flicker (Center of screen) - - -20 [dB] Note 2-8 By SR-3

document version 0.1 8 M170ETN01.1 Note 2-2: Equipment setup : Note 2-3: Luminance Uniformity Measurement Definition: P9) ~(P1 Points 9 of Luminance Maximum P9) ~(P1 Points 9 of Luminance Minimum y Uniformit Luminance = a.Test pattern: White Pattern Center of the screen TFT -LCD Module Measured distance (50cm) Photo detector (SR-3, TRD-100) LCD Panel

document version 0.1 9 M170ETN01.1 Note 2-4: Contrast Ratio Measurement Definition: pattern Black of Luminance pattern White of Luminance Ratio Contrast = a. Measured position: Center of screen (P5) & perpe ndicular to the screen ( θ=Φ=0° ) Note 2-5: Viewing angle measurement Definition: The angle at which the contrast ratio is greater than 10 & 5 . a. Horizontal view angle: Divide to left & right ( θL & θR) Vertical view angle: Divide to up & down ( ΦH &ΦL) Note 2-6: Response time measurement The output signals of photo detector are measured w hen the input signals are changed from “Black” to “White” (rising time, T R), and from “White” to “Black” (falling time, T F), respectively. The response time is interval between the 10% and 90% of optical response. (Black & White color definition: Please refer section 3.4.3) 100 Optical response W hite TF 100 Optical response White Black Black

1 Frame 1 Frame

document version 0.1 10 M170ETN01.1 Note 2-7: Crosstalk measurement Definition: CT = Max. (CT H,CT V); Where a.Maximum Horizontal Crosstalk : CT H = Max. (| Y BL – Y AL | / Y AL × 100 %, | Y BR – Y AR | / Y AR × 100 %); Maximum Vertical Crosstalk: CT V = Max. (| Y BU – Y AU | / Y AU × 100 %, | Y BD – Y AD | / Y AD × 100 %); b. YAU, Y AD , YAL, YAR = Luminance of measured location without Black pattern YBU, YBD, YBL, YBR = Luminance of measured location with Black pattern Note 2-8: Flicker measurement a. Test pattern: It is listed as following. R: Red, G: Green, B:Blue b. Measured position: Center of screen (P5) & perpendicular to the screen ( θ=Φ=0° ) Gray level = L0 Gray level = L127

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3 TFT-LCD Module

3.1 Block Diagram

The following shows the block diagram of the 17 inch Color TFT-LCD Module. VDD AUO ASIC Connector DC/DC Converter Gamma Correction LVDS Receiver Timing Controller Mini LVDS Transmitter ASIC LVDS Signal Signal TFT-LCD 1280(x3) x 1024 Pixels G1 024 G1 D3840 D1 X-Driver IC Control Board

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3.2 Interface Connection

3.2.1 Connector Type

Manufacturer P-TWO STM JAE TFT-LCD Connector Part Number AL230F-A0G1D-P MSCKT2407P30HB FI-XB30SSRLAHF16 Manufacturer JAE Mating Connector Part Number FI-X30HL (Locked Type)

3.2.2 Connector Pin Assignment

PIN # Symbol Description Remark

1 RxO0 - Negative LVDS differential data input (Odd data)

2 RxO 0+ Positive LVDS differential data input (Odd data)

3 RxO1 - Negative LVDS differential data input (Odd data)

4 RxO1+ Positive LVDS differential data input (Odd data)

5 RxO2 - Negative LVDS differential data input (Odd data)

6 RxO2+ Positive LVDS dif ferential data input (Odd data)

7 GND Ground

8 RxOCLK - Negative LVDS differential clock input (Odd clock)

9 RxOCLK+ Positive LVDS differential clock input (Odd clock)

10 RxO3 - Negative LVDS differential data input (Odd data)

11 RxO3+ Positive LVD S differential data input (Odd data)

12 RxE0 - Negative LVDS differential data input (Even data)

13 RxE0+ Positive LVDS differential data input (Even data)

14 GND Ground

15 RxE1 - Negative LVDS differential data input (Even data)

16 RxE1+ Positive LVDS differential data input (Even data)

17 GND Ground

18 RxE2 - Negative LVDS differential data input (Even data)

19 RxE2+ Positive LVDS differential data input (Even data)

20 RxECLK - Negative LVDS differential clock input (Even clock)

21 RxECLK+ Positive LVDS differential clock input (Even clock)

22 RxE3 - Negative LVDS differential data input (Even data)

23 RxE3+ Positive LVDS differential data input (Even data)

24 GND Ground

25 NC No connection (for AUO test only. Do not connect) 26 NC No connection (for AUO test only. Do not connect)

document version 0.1 13 M170ETN01.1 27 NC No connection (for AUO test only. Do not connect)

28 VDD Power Supply Input Voltage

29 VDD Power Supply Input Voltage

30 VDD Power Supply Input Voltage

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3.3 Electrical Characteristics

3.3.1 Absolute Maximum Rating

Permanent damage may occur if exceeding the following maximum rating.

3.3.2 Recommended Operating Condition

Note 3-1: Inrush Current measurement: Test circuit: The duration of VDD rising time: 470us. Symbol Description Min Max Unit Remark VDD Power Supply Input Voltage GND-0.3 6.0 [Volt] Ta=25 ℃ Symbol Description Min Typ Max Unit Remark VDD Power supply Input voltage 4.5 5.0 5.5 [Volt] - 0.6 0.72 [A] VDD= 5.0V, Black Pattern, Fv=60Hz IDD Power supply Input Current (RMS) 0.72 0.87 [A] VDD= 5.0V, Black Pattern, Fv=75Hz - 3 3.6 [Watt] VDD= 5.0V, Black Pattern, Fv=60Hz PDD VDD Power Consumption 3.6 4.32 [Watt] VDD= 5.0V, Black Pattern, Fv=75Hz IRush Inrush Current - - 3.0 [A] Note 3-1 VDDrp Allowable VDD Ripple Voltage - - 500 [mV] VDD= 5.0V, Black Pattern, Fv=75Hz

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3.4 Signal Characteristics

3.4.1 LCD Pixel Format

3.4.2 LVDS Data Format

Note 3-2: a. O = “Odd Pixel Data” E = “Even Pixel Data” b. Refer to 3.4.1 LCD pixel format, the 1st data is 1 (Odd Pixel Data), the 2 nd data is 2 (Even Pixel Data) and the last data is 1280 (Even Pixel Data).

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3.4.3 Color versus Input Data

The following table is for color versus input data (8bit). The higher the gray level, the brighter the color.

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3.4.4 LVDS Specification

a. DC Characteristics: Symbol Description Min Typ Max Units Condition VTH LVDS Differential Input High Threshold - - +100 [mV] VCM = 1.2V VTL LVDS Differential Input Low Threshold -100 - - [mV] VCM = 1.2V │VID │ LVDS Differential Input Voltage 100 - 600 [mV] VCM LVDS Common Mode Voltage +1.0 +1.2 +1.5 [V] V TH -VTL = 200mV LVDS Signal Waveform: Use RxOCLK- & RxOCLK+ as example. RxOCLK- RxOCLK+

document version 0.1 18 M170ETN01.1 b. AC Characteristics: Symbol Description Min Max Unit Remark FDEV Maximum deviation of input clock frequency during Spread Spectrum - ± 3 % FMOD Maximum modulation frequency of input clock during Spread Spectrum - 200 KHz Fclk: LVDS Clock Frequency FMOD Freq Fmax Fclk Fmin Fclk * F DEV < Spread Spectrum> Time

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3.4.5 Input Timing Specification

It only support DE mode, and the input timing are shown as the following table. Symbol Description Min. Typ. Max. Unit Remark Tv Period 1036 1066 1873 Th Tdisp (v) Active 1024 1024 1024 Th Tblk (v) Blanking 12 42 849 Th Fv Vertical Section Frequency 50 60 76 Hz Th Period 730 844 1320 Tclk Tdisp (h) Active 640 640 640 Tclk Tblk (h) Blanking 90 204 680 Tclk Fh Horizontal Section Frequency 37.8 54 68.4 KHz Note 3-3 Tclk Period 50 60 76 ns 1/Fclk Fclk LVDS Clock Frequency 51.8 64 93.7 MHz Note 3-4 Note 3-3: The equation is listed as following. Please don’t exceed the above recommended value. Fh (Min.) = Fclk (Min.) / Th (Min.); Fh (Typ.) = Fclk (Typ.) / Th (Typ.); Fh (Max.)= Fclk (Max.) / Th (Min.); Note 3-4: The equation is listed as following. Please don’t exceed the above recommended value. Fclk (Min.) = Fv (Min.) x Th (Min.) x Tv (Min.); Fclk (Typ.) = Fv (Typ.) x Th (Typ.) x Tv (Typ.); Fclk (Max.) = Fv (Max.) x Th (Typ.) x Tv (Typ.);

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3.4.6 Input Timing Diagram

Tdisp(h) Pixel Pixel Pixel Invalid Data

6 M-2

X Pixel DE Pixel Pixel CLK N Line Line Tdisp(v) Pixel RGB Data (Odd) RGB Data (Even) Line 8 M Pixel M pixel M-4 Invalid Data Th Tv Pixel N Tclk Pixel M-5 Invalid Data Pixel Invalid Data Pixel Invalid Data DE Pixel 11 9 Line N Line Tblk(h) Pixel Pixel Y Tblk(v) M-1 Pixel Pixel M Pixel M-3 M-2 Pixel Pixel Pixel Pixel Pixel 2M-4 Pixel Pixel M-5 M-6 Pixel M-7 Pixel Th

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3.5 Power ON/OFF Sequence

VDD power,LVDS signal and backlight on/off sequence are as following. LVDS signals from any system shall be Hi-Z state when VDD is off. Power Sequence Timing Value Remark Symbol Min. Typ. Max. Unit T1 0.5 - 10 [ms] T2 0 - 50 [ms] T3 500 - - [ms] T4 100 - - [ms] T5 0 50 [ms] Note 3-5 Note 3-6 T6 0 - 150 [ms] Note 3-6 T7 1000 - - [ms] Note 3-5 : Recommend setting T5 = 0ms to avoid electronic noise when VDD is off. Note 3-6 : During T5 and T6 period , please keep the level of input LVDS signals with Hi-Z state. T7 T5 T2 VALID DATA 10% 90% 10% 90% T6 VDD LVDS Signal VSLED Backlight On Backlight Off Backlight Off Backlight Off

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4 Backlight Unit

4.1 Block Diagram

The following shows the block diagram of the 17 inch Backlight Unit. And it includes 36 pcs LED in the LED light bar. (4 strings and 9 pcs LED of one string). VSLED VS IS IS IS IS Ch1 Ch2 Ch3 Ch4 Connector

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4.2 Interface Connection

4.2.1 Connector Type

Part Number 3707K-S06N-21R Manufacturer ENTERY Mating Connector Part Number H112K-P06N-13B (Locking type) Backlight Connector dimension: )( 0 . 1,25 . 400 . 39 .13 mm unit Pitch DVH ==××=××

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4.2.2 Connector Pin Assignment

Pin# Symbol Description Remark

1 Ch1 LED Current Feedback Terminal (Channel 1)

2 Ch2 LED Current Feedback Terminal (Channel 2)

3 V SLED LED Power Supply Voltage Input Terminal

4 V SLED LED Power Supply Voltage Input Terminal

5 Ch3 LED Current Feedback Terminal (Channel 3)

6 Ch4 LED Current Feedback Terminal (Channel 4)

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4.3 Electrical Characteristics

4.3.1 Absolute Maximum Rating

Permanent damage may occur if exceeding the following maximum rating. (Ta=25 ℃ ) Symbol Description Min Max Unit Remark 90 [mA] 100% duty ratio Is LED String Current 0 150 [mA] Duty ratio ≦ 10% Pulse time=10 ms Duty ratio= (A / B) X 100% ; (A: Pulse time, B: Pe riod)

4.3.2 Recommended Operating Condition

(Ta=25 ℃) Symbol Description Min. Typ. Max. Unit Remark Is LED String Current - 60 66 [mA] 100% duty ratio of LED chip Vs LED String Voltage 25.2 28.8 32.4 [Volt] Is=60mA @ 100% duty ratio; Note 4-1 ∆Vs Maximum Vs Voltage Deviation of light bar - - 1.8 [Volt] Is=60mA @ 100% duty ratio; Note 4-2 PBLU LED Light Bar Power Consumption - 6.91 8.55 [Watt] Note 4-3 LT LED LED Life Time 30,000 - - [Hour] Note 4-4

document version 0.1 27 M170ETN01.1 Note 4-1: Vs (Typ.) = V F (Typ.) X LED No. (one string); b. The same euqation to calculate Vs(Min.) & Vs (Max.) for respective V F (Min.) & VF(Max.); Note 4-2: ∆Vs (Max.) = ∆VF X LED No. (one string); a. ∆VF: LED chip forward voltage deviation; (0.2 V , each Bin of LED VF) Note 4-3: P BLU (Typ.) = Vs (Typ.) X Is (Typ.) X 4 ; ( 4 is total String No. of LED Light bar) PBLU (Max.) = Vs (Max.) X Is (Max.) X 4 ; Note 4-4: Definition of life time: a. Brightness of LED becomes to 50% of its original value b. Test condition: Is = 60mA and 25 ℃ (Room Temperature)

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5 Reliability Test

AUO reliability test items are listed as following table. ( Bare Panel only ) Items Condition Remark Temperature Humidity Bias (THB) Ta= 50 ℃, 80%RH, 300hours High Temperature Operation (HTO) Ta= 50 ℃, 50%RH, 300hours Low Temperature Operation (LTO) Ta= 0 ℃, 300hours High Temperature Storage (HTS) Ta= 60 ℃, 300hours Low Temperature Storage (LTS) Ta= -20 ℃, 300hours Vibration Test (Non-operation) Acceleration: 1.5 Grms Wave: Random Frequency: 10 - 200 Hz Sweep: 30 Minutes each Axis (X, Y, Z) Shock Test (Non-operation) Acceleration: 50 G Wave: Half-sine Active Time: 20 ms Direction: ±X, ±Y, ±Z (one time for each Axis) Drop Test Height: 61 cm, package test Thermal Shock Test (TST) -20 ℃/30min, 60℃/30min, 100 cycles Note 5-1 On/Off Test On/10sec, Off/10sec, 30,000 cycles Contact Discharge: ± 15 KV, 150pF(330 Ω ) 1sec, 8 points, 25 times/ point. ESD (Electro Static Discharge) Air Discharge: ± 15KV, 150pF(330 Ω ) 1sec 8 points, 25 times/ point. Note 5-2 Altitude Test Operation:18,000 ft Non-Operation:40,000 ft Note 5-1: a. A cycle of rapid temperature change consists o f varying the temperature from -20 to ℃ 60 , and back again. Power is not applied during the test. ℃ b. After finish temperature cycling, the unit is pl aced in normal room ambient for at least 4 hours before power on. Note 5-2: EN61000-4-2, ESD class B: Certain performance degradation allowed No data lost Self-recoverable No hardware failures.

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6 Shipping Label

The label is on the panel as shown below: Note 6-1: For Pb Free products, AUO will add for identification. Note 6-2: For RoHS compatible products, AUO will add for identification. Note 6-3: For China RoHS compatible products, AUO will add for identification. Note 6-4: The Green Mark will be presented only when the green documents have been ready by AUO Internal Green Team. M170ETN01.1

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7 Mechanical Characteristics

Avoid touching COF position when doing mechanical design

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8 Packing Specification

8.1 Packing Flow

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8.2 Pallet and shipment information

Q'ty Dimension Weight(kg) Remark Panel 1 358.5(H)mm × 296.5(V)mm × 10.3(D)mm 1.45 Cushion 1 - 0.95 Box 1 434(L)mm x 278(W)mm x 390(H)mm 0.90 without Panel & cushion Packing Box 8 pcs/Box 434(L)mm x 278(W)mm x 390(H)mm 13.45 with panel & cushion Pallet 1 1150(L)mm x 890(W)mm x 132(H)mm 12.00 Pallet after Packing 18 boxes/pallet 1150(L)mm x 890(W)mm x 131(H)mm 334.8