PCA85162 All information provided in this document is subject to legal disclaimers. © NXP Semiconductors N.V. 2015. All rights reserved.
Product data sheet Rev. 4 — 9 April 2015 13 of 56
NXP Semiconductors
PCA85162
32 x 4 automotive LCD driver for low multiplex rates
A practical value for V
LCD
is determined by equating V
off(RMS)
with a defined LCD
threshold voltage (V
th(off)
), typically when the LCD exhibits approximately 10 % contrast. In
the static drive mode a suitable choice is V
LCD
>3V
th(off)
.
Multiplex drive modes of 1:3 and 1:4 with
1
2
bias are possible but the discrimination and
hence the contrast ratios are smaller.
Bias is calculated by , where the values for a are
a = 1 for
1
2
bias
a = 2 for
1
3
bias
The RMS on-state voltage (V
on(RMS)
) for the LCD is calculated with Equation 1:
(1)
where the values for n are
n = 1 for static drive mode
n = 2 for 1:2 multiplex drive mode
n = 3 for 1:3 multiplex drive mode
n = 4 for 1:4 multiplex drive mode
The RMS off-state voltage (V
off(RMS)
) for the LCD is calculated with Equation 2:
(2)
Discrimination is the ratio of V
on(RMS)
to V
off(RMS)
and is determined from Equation 3:
(3)
Using Equation 3
, the discrimination for an LCD drive mode of 1:3 multiplex with
1
2
bias is and the discrimination for an LCD drive mode of 1:4 multiplex with
1
2
bias is .
Table 14. Biasing characteristics
LCD drive
mode
Number of: LCD bias
configuration
Backplanes Levels
static 1 2 static 0 1
1:2 multiplex 2 3
1
2
0.354 0.791 2.236
1:2 multiplex 2 4
1
3
0.333 0.745 2.236
1:3 multiplex 3 4
1
3
0.333 0.638 1.915
1:4 multiplex 4 4
1
3
0.333 0.577 1.732
V
on RMS
V
LCD
------------------------
D
V
on RMS
V
off RMS
-------------------------=
1
1a+
-------------
V
on RMS
a
2
2a n++
n 1a+
2
------------------------------
V
LCD
=
V
off RMS
a
2
2a n+
n 1a+
2
------------------------------
V
LCD
=
D
V
on RMS
V
off RMS
-----------------------
a
2
2a n++
a
2
2a n+
---------------------------==
3 1.732=
21
3
---------- 1.528=
PCA85162 All information provided in this document is subject to legal disclaimers. © NXP Semiconductors N.V. 2015. All rights reserved.
Product data sheet Rev. 4 — 9 April 2015 14 of 56
NXP Semiconductors
PCA85162
32 x 4 automotive LCD driver for low multiplex rates
The advantage of these LCD drive modes is a reduction of the LCD full scale voltage V
LCD
as follows:
1:3 multiplex (
1
2
bias):
1:4 multiplex (
1
2
bias):
These compare with when
1
3
bias is used.
It should be noted that V
LCD
is sometimes referred as the LCD operating voltage.
7.3.3.1 Electro-optical performance
Suitable values for V
on(RMS)
and V
off(RMS)
are dependent on the LCD liquid used. The
RMS voltage, at which a pixel will be switched on or off, determine the transmissibility of
the pixel.
For any given liquid, there are two threshold values defined. One point is at 10 % relative
transmission (at V
th(off)
) and the other at 90 % relative transmission (at V
th(on)
), see
Figure 5
. For a good contrast performance, the following rules should be followed:
(4)
(5)
V
on(RMS)
and V
off(RMS)
are properties of the display driver and are affected by the selection
of a, n (see Equation 1
to Equation 3) and the V
LCD
voltage.
V
th(off)
and V
th(on)
are properties of the LCD liquid and can be provided by the module
manufacturer. V
th(off)
is sometimes just named V
th
. V
th(on)
is sometimes named saturation
voltage V
sat
.
It is important to match the module properties to those of the driver in order to achieve
optimum performance.
V
LCD
6V
off RMS
2.449V
off RMS
==
V
LCD
43
3
----------------------
2.309V
off RMS
==
V
LCD
3V
off RMS
=
Fig 5. Electro-optical characteristic: relative transmission curve of the liquid
V
on RMS
V
th on
V
off RMS
V
th off
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PCA85162 All information provided in this document is subject to legal disclaimers. © NXP Semiconductors N.V. 2015. All rights reserved.
Product data sheet Rev. 4 — 9 April 2015 15 of 56
NXP Semiconductors
PCA85162
32 x 4 automotive LCD driver for low multiplex rates
7.3.4 LCD drive mode waveforms
7.3.4.1 Static drive mode
The static LCD drive mode is used when a single backplane is provided in the LCD. The
backplane (BPn) and segment (Sn) drive waveforms for this mode are shown in Figure 6
.
V
state1
(t) = V
Sn
(t) V
BP0
(t).
V
on(RMS)
= V
LCD
.
V
state2
(t) = V
(Sn + 1)
(t) V
BP0
(t).
V
off(RMS)
= 0 V.
Fig 6. Static drive mode waveforms
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PCA85162T/Q900/1,1

Mfr. #:
Manufacturer:
NXP Semiconductors
Description:
LCD Drivers 32 SGMT 4800Hz
Lifecycle:
New from this manufacturer.
Delivery:
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