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PDF ML9060 Data sheet ( Hoja de datos )

Número de pieza ML9060
Descripción 1/2 DUTY / 160-OUTPUT STATIC LCD DRIVER
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No Preview Available ! ML9060 Hoja de datos, Descripción, Manual

E2B0051-19-22
¡¡SemicondSucetormiconductor
ML9060
1/2 DUTY, 160-OUTPUT STATIC LCD DRIVER
This version: FebM. 1L99909P6re0liminary
GENERAL DESCRIPTION
The ML9060 consists of a 320-bit shift register, a 320-bit data latch, 160 sets of LCD drivers, and
a common signal generator circuit.
The LCD display data is input serially to the shift register from the DATA IN pin in
synchronization with the CLOCK IN signal, and is stored in the data latch by the LOAD IN
signal.
The LCD display data stored in the data latch is output via the LCD drivers.
A maximum of 160 segments of LCD can be driven in static display mode and a maximum of
320 segments can be driven directly in the 1/2 duty display mode.
It is possible to select the mode of using the internal oscillator circuit or the mode of using an
external clock for the common signal generator circuit. The ML9060 also outputs the sync signal
during the 1/2 duty display mode.
FEATURES
• Logic power supply : 2.7 to 5.5V
• LCD Driving voltage : 4.5 to 16V
• Maximum number of segments that can be driven:
Static display mode : 160 segments
1/2 Duty display mode : 320 segments
• Serial transfer clock : 1 MHz max.
• The microcontroller interface consists of the three signals DATA IN, CLOCK IN, and LOAD
IN.
• An RC oscillator circuit is built in which can use either an external resistor or the internal
resistor.
• Cascade connection of several ICs is possible.
• Built-in common signal generator circuit.
• Built-in common output mid-level voltage generator circuit.
• Input for turning all segments ON is available (SEG-TEST IN).
• Input for turning all segments OFF is available (BLANK IN).
• Gold bump chip
Product name: ML9060DVWA
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ML9060 pdf
¡ Semiconductor
ML9060
Parameter
Symbol
Condition
Min.
Static supply current *4
Dynamic supply current *4
IDDS1
IDDS2
ILCDS1
ILCDS2
IDD1
IDD2
ILCD1
ILCD2
D/S = "L" (Static)
Fix other input levels
at either "H" or "L"
Oscillator stopped
No load
D/S = "H" (1/2duty)
Fix other input levels
at either "H" or "L"
Oscillator stopped
No load
D/S = "L" (Static)
Fix other input levels
at either "H" or "L"
Oscillator stopped
No load
D/S = "H" (1/2duty)
Fix other input levels
at either "H" or "L"
Oscillator stopped
No load
VDD = 5.5V
D/S = "L" (Static)
OSC1 is Open
OSC2 is connected to OSCR
Other inputs are "H" or "L"
No load
VDD = 5.5V
D/S = "H" (1/2duty)
OSC1 is Open
OSC2 is connected to OSCR
Other inputs are "H" or "L"
No load
VDD = 5.5V
D/S = "L" (Static)
OSC1 is Open
OSC2 is connected to OSCR
Other inputs are "H" or "L"
No load
VDD = 5.5V
D/S = "H" (1/2duty)
OSC1 is Open
OSC2 is connected to OSCR
Other inputs are "H" or "L"
No load
Typ.
Applicable
Max. Unit
pin
TBD mA VDD
TBD mA VDD
TBD mA VLCD
TBD mA VLCD
TBD mA VDD
TBD mA VDD
TBD mA VLCD
TBD mA VLCD
*1: Applicable to the DATA IN, LOAD IN, SEG-TEST IN, M/S, D/S, and OSC I/E pins.
*2: Applicable to the CLOCK IN, OSC1, and BLANK IN pins.
*3: Applicable to the voltage drop when the current flows into or out of one COM pin.
*4: The power supply current consumption will be determined finally at the end of sample
evaluations.
The LCD display data of “0” and “1” are input alternately.
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ML9060 arduino
¡ Semiconductor
ML9060
During the 1/2 duty dynamic display mode of operation:
COM A and COM B change their states at every cycle of the COM OUT signal and repeat the
selected and non-selected modes always opposing each other in phase. A signal with the same
phase as that of the COM OUT signal is output in the selected mode. A voltage equal to 1/2VLCD
is output in the non-selected mode.
When COM A is in the selected mode (that is, COM B is in the non-selected mode), the segment
outputs (SEG1 to SEG160) output signals corresponding to the display data in the data latch A.
When COM B is in the selected mode (that is, COM A is in the non-selected mode), the segment
outputs (SEG1 to SEG160) output signals corresponding to the display data in the data latch B.
• VDD
This is the power supply input pin for the logic circuits.
• VLCD
This is the power supply input pin for the LCD drivers.
• GND
This is the ground pin for all circuits.
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