background image

Note: If the number of vertical dots on screen is taken as m, and the number of horizon tal dots as n,

1/m = 1/Nx = display duty ratio
n = Hp x Hn, m/ Vp = Number of display lines
Cp

Vp

9.3 Initia lize LCM register set list

10.

10.

10.

10. INTERFACE

INTERFACE

INTERFACE

INTERFACE FOR

FOR

FOR

FOR LCM

LCM

LCM

LCM

10.1 Interface to 80 family

10.2 Interface to 68 family

11.

11.

11.

11. RELIABILITY

RELIABILITY

RELIABILITY

RELIABILITY CONDITION

CONDITION

CONDITION

CONDITION

*

Wide temp. version may not available for some products, Please consult our sales engineer or respresentative.

PAGE

PAGE

PAGE

PAGE 9

9

9

9

Symbol

Na me

Meaning

Va lue

Hp

Horizon tal character pitch

Latera l character pitch

6 to 8 dots

Hn

Number of horizon tal characters

Number of lateral characters per line (number of
digits) in the character mode or number of bytes
per line in the graphic mode.

2 to 128 digits (an even
number)

Vp

Vertica l character pitch

Longitudinal character pitch.

1 to 16 dots

Cp

Cursor position

Line number on which the cursor can be displayed.

nx

Number of time division

Inverse of display duty ratio

1 to 128 lines

Register

Register

Register

Register number

number

number

number

0H

0H

0H

0H

1H

1H

1H

1H

2H

2H

2H

2H

3H

3H

3H

3H

4H

4H

4H

4H

8H

8H

8H

8H

9H

9H

9H

9H

AH

AH

AH

AH

BH

BH

BH

BH

Character

Character

Character

Character mode

mode

mode

mode

1CH

77H

13H

4FH

07H

00H

00H

00H

00H

Gr aphics

Gr aphics

Gr aphics

Gr aphics mode

mode

mode

mode

12H

77H

13H

4FH

07H

00H

00H

00H

00H

TN Type

STN Type

Norma l Temp.

Wide Temp.

Norma l Temp.

Wide Temp.

Vie wing

Angle

Horizon tal

Φ

±

30

°

±

30

°

±

30

°

±

30

°

Vertica l

Θ(㎜)

10

°

to 30

°

10

°

to 30

°

-10

°

to 40

°

-10

°

to 40

°

Operating Temperature

-10 to 70

-25 to 80

0 to 50

*

-20 to 70

Storage Temperature

-20 to 80

-35 to 90

-20 to 70

*

-30 to 80

High Temperature (Power Off)

240 Hours

@70

240 Hours

@90

240 Hours

@65

240 Hours

@75

Low Temperature (Power Off)

240 Hours

@-20

240 Hours

@-35

240 Hours

@-15

240 Hours

@-25

High Temperature (Power On)

240 Hours

@70

240 Hours

@80

240 Hours

@60

240 Hours

@70

Low Temperature (Power On)

240 Hours

@-10

240 Hours

@-25

240 Hours

@-10

240 Hours

@-20

High Temperature & High Humid ity

55

/90%R H

240 Hours

75

/90%R H

240 Hours

45

/90%R H

240 Hours

65

/90%R H

240 Hours

Therma l Shock

C

5 Cycle

B

A

A

60min@-20

60min@-35

60min@-20

60min@-30

B

5min@25

5min@25

5min@25

5min@25

C

60min@70

60min@90

60min@70

60min@80

Expected Lift

50,000 Hours

50,000 Hours

50,000 Hours

50,000 Hours

Summary of Contents for G16080-1 series

Page 1: ...RYSTAL CRYSTAL CRYSTAL CRYSTAL DISPLAY DISPLAY DISPLAY DISPLAY MODULE MODULE MODULE MODULE Serial Serial Serial Serial USER USER USER USER MANUAL MANUAL MANUAL MANUAL PROPOSED PROPOSED PROPOSED PROPOSED BY BY BY BY APPROVED APPROVED APPROVED APPROVED Design Approved G16080 1 ...

Page 2: ...S 4 4 4 4 7 7 7 7 DIMENSION DIMENSION DIMENSION DIMENSION OUTLINE OUTLINE OUTLINE OUTLINEAND AND AND AND PIN PIN PIN PIN CONNECTIONS CONNECTIONS CONNECTIONS CONNECTIONS 5 5 5 5 8 8 8 8 POWER POWER POWER POWER SUPPLY SUPPLY SUPPLY SUPPLY FOR FOR FOR FOR BACKLIGHT BACKLIGHT BACKLIGHT BACKLIGHT 5 5 5 5 9 9 9 9 DISPLAY DISPLAY DISPLAY DISPLAY CONTROL CONTROL CONTROL CONTROL INTEUCTIONS INTEUCTIONS INT...

Page 3: ...7W 33 57H mm Dot Dot Dot Dot Pitch Pitch Pitch Pitch 0 42W 0 42H mm Dot Dot Dot Dot Size Size Size Size 0 39W 0 39H mm STN Gray 1 80 Duty 1 9 Bias 6 O clock STN Yellow Green 1 80 Duty 1 9 Bias 6 O clock STN Gray 1 80 Duty 1 9 Bias 6 O clock EL Backlight Color is Blue STN Yellow Green 1 80 Duty 1 9 Bias 6 O clock EL Backlight Color is White STN Gray 1 80 Duty 1 9 Bias 6 O clock LED Backlight Color ...

Page 4: ...equency 64 Hz c Viewing angle θ 0 φ 0 d Operating voltage 12 5V PAGE PAGE PAGE PAGE 3 3 3 3 ITEM ITEM ITEM ITEM SYMBOL SYMBOL SYMBOL SYMBOL CONDITION CONDITION CONDITION CONDITION MIN MIN MIN MIN TYP TYP TYP TYP MAX MAX MAX MAX UNIT UNIT UNIT UNIT Logic Circuit Power Supply VDD VSS 4 75 5 0 5 25 V LCD Driver Power Supply VDD VEE 10 0 V Input Voltage VIH VDD 5V 0 25 0 7 VDD VDD V VIL 0 0 3 VDD V Po...

Page 5: ...cuit is connected for specification PAGE PAGE PAGE PAGE 4 4 4 4 ITEM ITEM ITEM ITEM SYMBOL SYMBOL SYMBOL SYMBOL MIN MIN MIN MIN TYP TYP TYP TYP MAX MAX MAX MAX UNIT UNIT UNIT UNIT Enable cycle time tCYC 1000 ns Enable pulse width High Low level tWEH tWEL 450 ns Enable rise fall time tEr tEf 25 ns Setup time tAS 140 ns Data setup time tDSW 225 ns Data delay time tDDR 225 ns Data hold time tH 10 ns ...

Page 6: ...riting the next instruction PAGE PAGE PAGE PAGE 5 5 5 5 NO NO NO NO SYMBOL SYMBOL SYMBOL SYMBOL FUNCTION FUNCTION FUNCTION FUNCTION NO NO NO NO SYMBOL SYMBOL SYMBOL SYMBOL FUNCTION FUNCTION FUNCTION FUNCTION 1 VSS Ground 11 DB4 Data busline 2 VDD Power supply for logic circuit 12 DB5 Data busline 3 Vo Power supply for LCD circuit 13 DB6 Data busline 4 D I Data Instruction 14 DB7 Data busline 5 R W...

Page 7: ...splayed under a character by specifying Cp 8 decimal The cursor horizontal length is equal to the horiz ontal character pitch Hp A value of 1 to 16 decimal can be set to Cp If a smaller value than the number of vertical character pitches Vp is set Cp Vp and a character is overlapped with the cursor the cursor has higher priority of display at cursor display ON If Cp is greater than Vp no cursor is...

Page 8: ...data or character code The cursor address is increased by 1 after this operation 9 1 11 Read Display Data Data can be read from the RAM with RS 0 after writing code 0D into the instruction register The read procedure is as follows This instruction outputs the contents of data output register on Data Bus DB0 to DB7 and then transfers RAM data specified by a cursor address to the data output registe...

Page 9: ... the execution it is set to 0 The next instruction can be accepted No instruction can be accepted when busy flag 1 Before executing an instruction or writing data perform a busy flag check to make sure that busy flag is 0 When data is written in the register RS 1 no busy flag changes Thus no busy flag check is required just after the write operation into the instruction register with RS 1 The busy...

Page 10: ...tio 1 to 128 lines Register Register Register Register number number number number 0H 0H 0H 0H 1H 1H 1H 1H 2H 2H 2H 2H 3H 3H 3H 3H 4H 4H 4H 4H 8H 8H 8H 8H 9H 9H 9H 9H AH AH AH AH BH BH BH BH Character Character Character Character mode mode mode mode 1CH 77H 13H 4FH 07H 00H 00H 00H 00H Graphics Graphics Graphics Graphics mode mode mode mode 12H 77H 13H 4FH 07H 00H 00H 00H 00H TN Type STN Type Norm...

Page 11: ...cting the sample should be within 45 against perpendicular line 12 3 Definition of Inspection Zone in LCD Zone A Character Digit area Zone B Viewing area except Zone A Zone A Zone B minimum Viewing area Zone C Outside viewing area invisible area after assembly in customer s product Note As a general rule visual defects in Zone C are permissible when it is no trouble for quality and assembly of cus...

Page 12: ...A B C Accep table W 0 02 Accep table Accep table L 3 0 W 0 03 2 L 2 5 W 0 03 0 L 3 0 0 03 W 0 05 2 L 2 5 0 03 W 0 05 0 W 0 05 Counted as spot defect Follows item 12 5 1 Remarks The total of spot defect and line defect shall not exceed four 3 Orientation defect such as misalignment of L C Not allowed inside viewing area Zone A or Zone B Minor 4 Polarizing 12 5 4 1 Polarizer Position 1 Shifting in P...

Page 13: ...URSOR Higher 4 bit Lower 4 bit 0000 0010 0011 0100 0101 0110 0111 1010 1011 1100 1101 1110 1111 XXXX0000 CG RAM 1 XXXX0001 2 XXXX0010 3 XXXX0011 4 XXXX0100 5 XXXX0101 6 XXXX0110 7 XXXX0111 8 XXXX1000 1 XXXX1001 2 XXXX1010 3 XXXX1011 4 XXXX1100 5 XXXX1101 6 XXXX1110 7 XXXX1111 8 PAGE PAGE PAGE PAGE 1 1 1 12 ...

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