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PCF8576DU/2DA/2 データシートの表示(PDF) - Philips Electronics

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PCF8576DU/2DA/2
Philips
Philips Electronics Philips
PCF8576DU/2DA/2 Datasheet PDF : 41 Pages
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Philips Semiconductors
Universal LCD driver for low
multiplex rates
Product specification
PCF8576D
6.1 Power-on reset
At power-on the PCF8576D resets to the following starting
conditions:
All backplane outputs are set to VLCD
All segment outputs are set to VLCD
Drive mode ‘1 : 4 multiplex with 13 bias’ is selected
Blinking is switched off
Input and output bank selectors are reset (as defined in
Table 4)
The I2C-bus interface is initialized
The data pointer and the subaddress counter are
cleared
Display is disabled.
Data transfers on the I2C-bus should be avoided for 1 ms
following power-on to allow completion of the reset action.
6.2 LCD bias generator
Fractional LCD biasing voltages are obtained from an
internal voltage divider comprising three resistors
connected in series between VLCD and VSS. The middle
resistor can be bypassed to provide a 12 bias voltage level
for the 1 : 2 multiplex configuration. The LCD voltage can
be temperature compensated externally via the supply to
pin VLCD.
6.3 LCD voltage selector
The LCD voltage selector co-ordinates the multiplexing of
the LCD in accordance with the selected LCD drive
configuration. The operation of the voltage selector is
controlled by MODE SET commands from the command
decoder. The biasing configurations that apply to the
preferred modes of operation, together with the biasing
characteristics as functions of VLCD and the resulting
Discrimination ratios (D), are given in Table 2.
A practical value for VLCD is determined by equating
Voff(rms) with a defined LCD threshold voltage (Vth),
typically when the LCD exhibits approximately 10%
contrast. In the static drive mode a suitable choice is
VLCD > 3Vth.
Multiplex drive modes of 1 : 3 and 1 : 4 with 12 bias are
possible but the discrimination and hence the contrast
ratios are smaller.
6.3.1 LCD BIAS FORMULAE
Bias is calculated by the formula 1-----+1-----a--
For 12 bias, a = 1; for 13 bias, a = 2.
The LCD on voltage (Von) is calculated by the formula
Vop
N-1-- +
(
N
1
)
1-----+1-----a--
2
-----------------------------N-------------------------------
The LCD off voltage (Voff) is calculated by the formula
Vop -a--N-2--------(-(-1-2----a+-----+a----)-N-2----)
where Vop is the resultant voltage at the LCD segment; N
is the LCD drive mode: 1 = static, 2 = 1 : 2, 3 = 1 : 3,
4 = 1 : 4.
Discrimination is the ratio of Von to Voff, and is determined
by the formula V-V----oo---fn-f = (-(--aa-----+–----1-1---))---22----++----(-(--NN------––----11----))
Using the above formula, the discrimination for an LCD
drive mode of 1 : 3 with 12 bias is 3 = 1.732, and the
discrimination for an LCD drive mode of 1 : 4 with 12 bias
is ----3-2---1-- = 1.528.
The advantage of these LCD drive modes is a reduction of
the LCD full-scale voltage VLCD as follows:
1 : 3 multiplex (12 bias):
VLCD = 6 × Voff(rms) = 2.449 Voff(rms)
1 : 4 multiplex (12 bias):
VLCD = (---4-----×--3-------3----) = 2.309 Voff(rms)
These compare with VLCD = 3 Voff(rms) when 13 bias is
used.
2004 Dec 22
10

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