...the world's most energy friendly microcontrollers
2014-07-02 - Tiny Gecko Family - d0034_Rev1.20
499
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1/2 bias and triplex multiplexing - LCD_SEG0-LCD_COM1
• DC voltage = 0 (over one frame)
• V
RMS
= 0.7 V
LCD_OUT
• The LCD display pixel that is connected to LCD_SEG0 and LCD_COM1 will be ON with this waveform
Figure 29.23. LCD 1/2 Bias and Triplex Multiplexing - LCD_SEG0-LCD_COM1
V
LC0
(V
LCD
)
V
LC3
(V
SS
)
- V
LC0
(V
LCD
)
V
LC1
(1/ 2V
LCD
)
- V
LC1
(1/ 2V
LCD
)
Fram e St art
Fram e End
1/2 bias and triplex multiplexing - LCD_SEG0-LCD_COM2
• DC voltage = 0 (over one frame)
• V
RMS
= 0.4 × V
LCD_OUT
• The LCD display pixel that is connected to LCD_SEG0 and LCD_COM2 will be OFF with this waveform
Figure 29.24. LCD 1/2 Bias and Triplex Multiplexing - LCD_SEG0-LCD_COM2
V
LC0
(V
LCD
)
V
LC3
(V
SS
)
- V
LC0
(V
LCD
)
V
LC1
(1/ 2V
LCD
)
- V
LC1
(1/ 2V
LCD
)
Fram e St art
Fram e End
29.3.3.5 Waveforms with 1/3 Bias and Triplex Multiplexing
In this mode, each frame is divided into 6 periods. LCD_COM[2:0] lines can be multiplexed with all
segment lines. Figures show 1/3 bias and triplex multiplexing (waveforms show two frames).
Figure 29.25. LCD 1/3 Bias and Triplex Multiplexing - LCD_COM0
V
LC0
(V
LCD
)
V
LC3
(V
SS
)
V
LC1
(2/ 3V
LCD
)
V
LC2
(1/ 3V
LCD
)
Fram e St art
Fram e End
Summary of Contents for EFM32TG
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