* This specification is subject to change without notice.
Please contact Powertip or it ’s representative before designing your product based on this specification.
Response Time(fall) tf è = 5°, ∅ = 0° - 330 ms - Note 4
PC1604LRU-AWB-H Rev.0(DK) Page5
Page 6
θ
Note 1: Definition of angles θ and ∅ Note 2: Definition of viewing angles θ1 and θ2
Light (when reflecte d) z (θ=0°)
Sensor
Cmax.
Y’(∅=180°)
Contrast
LCD panel
X’
Z’
θ1θ2
Light (when transmitted )
∅
Y(∅=0°)
X(∅=90°)
C
2.0
viewing angle θ (∅ fixed) Note : Optimum viewing angle with the
(θ=90°)
naked eye and viewing angle θ at
Cmax. Above are not always the same
Note 3: Definition of contrast C Note 4: Definition of response time
Brightness (reflection) of unselected dot (B2)
C =
Brightness (reflection) of selected dot (B1)
VLCD
Brightness (reflection) of
selected dot
(%)
0
-VLCD
Brightness
(reflection) of
unselected dot
Brightness
(reflection)
B2
B1
Non-selected state
Contrast
Selected stateNon-selected state
90%
tr
tf
0Note: Measured with a transmissive LCD
operating voltage (v)panel which is displayed 1 cm2
V
tr : Response time (rise) tf : Response time (fall)
: Operating voltagef
LCD
: Frame frequency
FRM
10%
Time
PC1604LRU-AWB-H Rev.0(DK) Page6
Page 7
1.6 Backlight Characteristics
LCD Module with LED Backlight
Maximum Ratings
Item Symbol Conditions Min. Max. Unit
Forward Current IF Ta =25℃- 550 mA
Reverse Voltage VR Ta =25℃- 8 V
Power Dissipation PO Ta =25℃- 2.5 W
Operating Temperature TOP - -20 70
Storage Temperature TST - -40 80
Solder Temp. for 3 Second - - - 260
Electrical / Optical Characteristics
Ta =25℃
Item Symbol Conditions Min. Typ. Max. Unit
Forward Voltage VF IF=220 mA - 4.2 4.6 V
Reverse Current IR VR=8V - - 0.2 mA
Average Brightness
(with LCD)
Wavelength λp IF=220 mA 571 - 576 nm
Luminous Intensity
(without LCD)
IV IF=220 mA - - - cd/m2
I V
IF=220 mA 120 150 - cd/m2
℃
℃
℃
Color Yellow -green
PC1604LRU-AWB-H Rev.0(DK) Page7
Page 8
2. MODULE STRUCTURE
2.1 Counter Drawing
PC1604LRU-AWB-H Rev.0(DK) Page8
Page 9
2.2 Interface Pin Description
Pin No. Symbol Signal Description
1 VSSPower Supply (Vss=0)
2 VDDPower Supply (VDD>VSS)
3 VOOperating voltage for LCD
Register Selection input
4 RS
5
R/W
6 E Start enable signal to read or write the data
7~10 DB0 ~ DB3
11~14 DB4 ~ DB7
15 A Power supply LED backlight(+)
16 K Power supply LED backlight (-)
Contrast Adjust
High = Data register
Low = Instruction register (for write)
Busy flag address counter (for read)
Read/Write signal input is used to select the read/write
mode. High = Read mode, Low = Write mode
Four low order bi-directional three-state data bus lines. Use
for data transfer between the MPU and the LCD module.
These four are not used during 4-bit operation.
Four high order bi-directional three-state data bus lines.
Used for data transfer between the MPU and the LCD
module.
DB7 can be used as a busy flag.
10~20KΩ
VDD
V
O
2
LCD MODULE
3
Negative voltage
PC1604LRU-AWB-H Rev.0(DK) Page9
15
4.2V
16
Page 10
2.3 Timing Characteristics
•Writing data from MPU to ST7066U
RS
VIL1
TAS
R/W
E
TR
DB0-DB7
●Reading data from ST7066U to MPU
VIH1
TPW
T
DSW
Valid data
TC
TAH
TAH
TH
RS
VIL1
TAS
R/W
VIH1
TR
TPW
E
TDDR
DB0-DB7
PC1604LRU-AWB-H Rev.0(DK) Page10
TAH
TAH
TH
Valid data
TC
Page 11
• Write Mode (Writing data from MPU to ST7066U)
(Vcc = +5V,Ta=25°C)
Symbol Characteristics Test Condition Min. Typ. Max. Unit
TC Enable Cycle Time Pin E 1200 - - ns
TPW Enable Pulse Width Pin E 140 - - ns
TR , TF Enable Rise / Fall Time Pin E - - 25 ns
TAS Address Setup Time Pins: RS , RW,E 0 - - ns
TAH Address Hold Time Pins :RS,RW,E 10 - - ns
T
Data Setup Time Pins:DB0~DB7 40 - - ns
DSW
TH Data Hold Time Pins:DB0~DB7 10 - - ns
• Read Mode (Reading data from ST7066U to MPU)
(Vcc = +5V,Ta=25°C)
Symbol Characteristics Test Condition Min. Typ. Max. Unit
TC Enable Cycle Time Pin E 1200 - - ns
TPW Enable Pulse Width Pin E 140 - - ns
TR , TF Enable Rise / Fall Time Pin E - - 25 ns
TAS Address Setup Time Pins: RS , RW,E 0 - - ns
TAH Address Hold Time Pins :RS,RW,E 10 - - ns
T
Data Setup Time Pins:DB0~DB7 - - 100 ns
DDR
TH Data Hold Time Pins:DB0~DB7 10 - - ns
PC1604LRU-AWB-H Rev.0(DK) Page11
Page 12
DRAM. and set
Sets cursor move direction and
specifies display shift. These
operations are performed during
without changing of DDRAM
2.4 Display Command
Instructions
RS R/W
DB 7 DB 6 DB 5 DB 4 DB 3 DB 2 DB 1 DB
Clear
0 0 0 0 0 0 0 0 0 1
Display
Return
0 0 0 0 0 0 0 0 1
Home
Entry Mode
0 0 0 0 0 0 0 1 I/D S
Set
Display
Instruction Code
Description
0
Write "20H" to D
DDRAM address to "00H" from
AC.
Set DDRAM address to "00H"
from AC and return cursor to it's
×
original position if shifted.
The contents of DDRAM are not
changed.
data write and read .
D=1 : entire display on
Description
Time
(270KHz)
1.52ms
1.52ms
37µs
ON/OFF
0 0 0 0 0 0 1 D C B
Cursor or
Display
0 0 0 0 0 1 S/C
Shift
Function
0 0 0 0 1 DL N F
Set
Set
CGRAM
0 0 0 1
Address
Set
AC 6 AC 5 AC 4 AC 3 AC 2 AC 1 AC 0 Set DDRAM address in address
DDRAM
0 0 1
Address
C=1 : cursor on
B=1 : cursor position on
Set cursor moving and display
R/L
××
shift control bit, and the direction,
data.
DL: interface data is 8/4 bits
××
NL: number of line is 2/1
F: font size is 5×11/5×8
AC 5 AC 4 AC 3 AC 2 AC 1 AC 0 Set CGRAM address in address
counter.
counter.
37µs
37µs
37µs
37µs
37µs
PC1604LRU-AWB-H Rev.0(DK) Page12
Page 13
Read Busy
Flag and
Address
0 1 BF
AC 6 AC 5 AC 4 AC 3 AC 2 AC 1 AC
0
Whether during internal operation
or not can be known by reading
0µs
BF. The contents of address
counter can also be read.
Write Data
Write data into internal RAM
1 0 D7 D6 D5 D4 D3 D2 D1 D0
to RAM
Read Data
(DDRAM/CGRAM).
Read data from internal RAM
1 1 D7 D6 D5 D4 D3 D2 D1 D0
from RAM
(DDRAM/CGRAM).
Note:
Be sure the ST7066U is not in the busy state (BF=0) before sending an instruction from the MPU to the
ST7066.
If an instruction is sent without checking the busy flag , the time between the first instruction and next
instruction will take much longer than the instruction time itself.
Refer to Instruction Table for the list of each instruction execution time .
37µs
37µs
PC1604LRU-AWB-H Rev.0(DK) Page13
Page 14
2.5 Character Pattern
PC1604LRU-AWB-H Rev.0(DK) Page14
Page 15
Request
Info
Survey
Inquiry
Project evaluation
Project Validation
Quote
Contract
Design check
Sample test
Verification
Sample approval
NG
Pilot run & Reliability test
Verification
Specification preparation
Mass production
Inspection
Shipment
Ship out
3. QUALITY ASSURANCE SYSTEM
3.1 Quality Assurance Flow Chart
Item Customer Sales R&D Q.A
Marketing
&
Design
NG
OK
Sample
Approval
NG
Manufactur
ing
OK
Product
control
Purchase
Inventory
control
OK
Pilot
Run
NG
&
Mass
Product
OK
Ship
Out
PC1604LRU-AWB-H Rev.0(DK) Page15
OK
NG
Page 16
Info
Claim
Failure analysis
Corrective action
Tracking
Analysis report
Item Customer Sales R&D Q.A
Sales
Service
Q.A
Activity
1. ISO 9001 Maintenance Activities 2. Process improvement proposal
3. Equipment calibration 4. Education And Training Activities
5. Standardization Management
Manufactu
ring
Product
control
Purchase
Inventory
control
PC1604LRU-AWB-H Rev.0(DK) Page16
Page 17
The part number is inconsistent with work order of
3.2 Inspection Specification
Inspection Standard:MIL-STD-105E Table Normal Inspection Single Sampling Level Ⅱ。
Equipment:Gauge、MIL-STD、Powertip Tester、Sample。
IQC Defect Level:Major Defect AQL 0.4; Minor Defect AQL 1.5。
FQC Defect Level:100% Inspection。
OUT Going Defect Level:Sampling。
Specification :
NO Item Specification Judge Level
1 Part Number
2 Quantity
Electronic
characteristics of
3
LCM
A=( L + W )÷2
production
The quantity is inconsistent with work order of
production
The display lacks of some patterns. N.G. Major
Missing line. N.G. Major
The size of missing dot, A is>1/2 Dot size N.G. Major
There is no function. N.G. Major
Output data is error N.G. Major
Material is different with work order of production N.G. Major
LCD is assembled in inverse direction N.G. Major
Bezel is assembled in inverse direction N.G. Major
Shadow is within LCD viewing area + 0.5 mm N.G. Major
Appearance of
A=( L + W )÷2
4
Dirty particle
(Including
scratch 、bubble )
LCD
The diameter of dirty particle, A is>0.4 mm N.G. Minor
Dirty particle length is >3.0mm, and 0.01mm<width ≦0.05mm
Display is without protective film N.G. Minor
Conductive rubber is over bezel 1mm
Polarizer exceeds over viewing area of LCD
Area of bubble in polarizer, A>1.0mm, the number of
bubble is >1 piece.
0.4mm<Area of bubble in polarizer, A<1.0mm, the
number of bubble is >4 pieces.
Burned area or wrong part number is on PCB N.G. Major
The symbol, character, and mark of PCB are
unidentifiable.
The stripped solder mask , A is>1.0mm N.G. Minor
0.3mm<stripped solder mask or visible circuit, A <
Appearance of
5
A=( L + W )÷2
PCB
1.0mm, and the number is ≧4 pieces
There is particle between the circuits in solder mask N.G Minor
The circuit is peeled off or cracked N.G Minor
There is any circuits risen or exposed.
0.2mm<Area of solder ball, A is ≦0.4mm
The number of solder ball is ≧3 pieces
The magnitude of solder ball, A is >0.4mm. N.G Minor
N.G. Major
N.G. Major
N.G. Minor
N.G. Minor
N.G. Minor
N.G. Minor
N.G. Minor
N.G Minor
N.G. Minor
N.G Minor
N.G Minor
PC1604LRU-AWB-H Rev.0(DK) Page17
Page 18
NO Item Specification Judge Level
The shape of modeling is deformed by touching. N.G. Major
Insufficient epoxy: Circuit or pad of IC is visible N.G. Minor
Excessive epoxy: Diameter of modeling is >20mm
N.G. Minor
or height is >2.5mm
6
Appearance of
molding
A=( L + W )÷2
The diameter of pinhole in modeling, A is >0.2mm. N.G. Minor
The folding angle of frame must be >45+10 N.G. Minor
Appearance of frame
7
A=( L + W )÷2
The area of stripped electroplate in top-view of
frame, A is >1.0mm.
Rust or crack is (Top view only) N.G. Minor
The scratched width of frame is >0.06mm.
(Top view only)
N.G. Minor
N.G. Minor
The color of backlight is nonconforming N.G. Major
8
Electrical
characteristic of
backlight
A=( L + W )÷2
Backlight can’t work normally. N.G. Major
The LED lamp can’t work normally N.G. Major
The unsoldering area of pin for backlight,
A is >1/2 solder joint area.
N.G. Minor
The height of solder pin for backlight is >2.0mm N.G. Minor
The mark or polarity of component is unidentifiable. N.G. Minor
The height between bottom of component and
surface of the PCB is floating >0.7mm
N.G. Minor
D>1/4W
W D
N.G. Minor
10
Assembly parts
A=( L + W )÷2
D’ Pad
End solder joint width, D’ is >50% width of
N.G. Minor
component termination or width of pad
Side overhang, D is >25% width of component
N.G. Minor
termination.
Component is cracked, deformed, and burned, etc. N.G. Minor
The polarity of component is placed in inverse
direction.
N.G. Minor
Maximum fillet height of solder extends onto the
component body or minimum fillet height
N.G. Minor
is <0.5mm.
PC1604LRU-AWB-H Rev.0(DK) Page18
Page 19
4. RELIABILITY TEST
4.1 Reliability Test Condition
NO Item Test Condition
1
High Temperature
Storage
Low Temperature
2
Storage
High Temperature
3
/Humidity Storage
4 Temperature Cycling
Storage at 80 ±2℃ 96~100 hrs
Surrounding temperature, then storage at normal condition
4hrs
Storage at -30 ±2℃ 96~100 hrs
Surrounding temperature, then storage at normal condition
4hrs
1.Storage 96~100 hrs 60±2℃, 90~95%RH surrounding
temperature, then storage at normal condition 4hrs.
(Excluding the polarizer).
or
2.Storage 96~100 hrs 40±2℃, 90~95%RH surrounding
temperature, then storage at normal condition 4 hrs.
-20℃→ 25℃→ 70℃→ 25℃
(30mins) (5mins) (30mins) (5mins)
10 Cycle
5 Vibration
6 ESD Test
7 Drop Test
10~55Hz ( 1 minute ) 1.5mm
X,Y and Z direction ﹡(each 2hrs)
Air Discharge:
Apply 6 KV with 5 times
discharge for each polarity +/-
Testing location:
Around the face of LCD
Packing Weight (Kg) Drop Height (cm)
0 ~ 45.4 122
45.4 ~ 90.8 76
90.8 ~ 454 61
Over 454 46
Contact Discharge:
Apply 250V with 5 times
discharge for each polarity +/-
Testing location:
1.Apply to bezel.
2.Apply to Vdd, Vss.
PC1604LRU-AWB-H Rev.0(DK) Page19
Page 20
5. PRECAUTION RELATING PRODUCT HANDLING
5.1 SAFETY
5.1.1 If the LCD panel breaks , be careful not to get the liquid crystal to touch your skin.
5.1.2 If the liquid crystal touches your skin or clothes , please wash it off immediately by
using soap and water.
5.2 HANDLING
5.2.1 Avoid any strong mechanical shock which can break the glass.
5.2.2 Avoid static electricity which can damage the CMOS LSI—When working with the
module , be sure to ground your body and any electrical equipment you may be using.
5.2.3 Do not remove the panel or frame from the module.
5.2.4 The polarizing plate of the display is very fragile. So , please handle it very
carefully ,do not touch , push or rub the exposed polarizing with anything harder
than an HB pencil lead (glass , tweezers , etc.)
5.2.5 Do not wipe the polarizing plate with a dry cloth , as it may easily scratch the
surface of plate.
5.2.6 Do not touch the display area with bare hands , this will stain the display area.
5.2.7 Do not use ketonics solvent & aromatic solvent. Use with a soft cloth soaked with
a cleaning naphtha solvent.
5.2.8 To control temperature and time of soldering is 280±10℃and 3-5 sec.
5.2.9 To avoid liquid (include organic solvent) stained on LCM .
5.3 STORAGE
5.3.1 Store the panel or module in a dark place where the temperature is 25℃ ±5℃
and the humidity is below 65% RH.
5.3.2 Do not place the module near organics solvents or corrosive gases.
5.3.3 Do not crush , shake , or jolt the module.
5.4 TERMS OF WARRANTY
5.4.1 Applicable warrant period
The period is within thirteen months since the date of shipping out under normal
using and storage conditions.
5.4.2 Unaccepted responsibility
This product has been manufactured to your company’s specification as a part for
use in your company’s general electronic products. It is guaranteed to perform
according to delivery specifications. For any other use apart from general
electronicequipment , we cannot take responsibility if the product is used in
nuclear power control equipment , aerospace equipment , fire and security
systems or any other applications in which there is a direct risk to human life
and where extremely high levels of reliability are required.
PC1604LRU-AWB-H Rev.0(DK) Page20
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