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TDA4882 Folha de dados(PDF) 11 Page - NXP Semiconductors

Nome de Peças TDA4882
Descrição Electrónicos  Advanced monitor video controller for OSD
Download  28 Pages
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Fabricante Electrônico  PHILIPS [NXP Semiconductors]
Página de início  http://www.nxp.com
Logo PHILIPS - NXP Semiconductors

TDA4882 Folha de dados(HTML) 11 Page - NXP Semiconductors

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1997 Sep 04
11
Philips Semiconductors
Product specification
Advanced monitor video controller for OSD
TDA4882
Notes to the characteristics
1. Definition of levels:
a) Artificial black level: internal signal level behind input emitter follower during input clamping and signal clipping.
This level is inserted instead of the input signal during blanking.
b) Reference black level: DC voltage during output clamping at voltage outputs, not influenced by brightness,
contrast or gain setting, adjustable by cut-off stabilization.
c) Cut-off level: corresponding DC voltage at CRT cathode in closed feedback loop.
d) Black level: actual signal black level at either the voltage outputs or cathode, it can be adjusted by
(brightness
× gain), it refers to reference black level or cut-off level.
e) Ultra-black level, switch-off level: lowest adjustable reference black level, lowest signal level at voltage outputs.
f) The minimum guaranteed control range for reference black level is 0.1 to 1 V. The ultra-black level is dependent
on the external resistor RO at pins 13, 16 and 19 (voltage outputs) to ground.
g)
2. Linear control range is 1 to 6 V for Vi(BC), independent of supply voltage.
3. Linear control range is 1 to 6 V for Vi(CC), independent of supply voltage. Open pin 6 leads to maximum contrast
setting. It is recommended not to exceed Vi(CC) =VP − 1 V to avoid saturation of internal circuitry. For
Vi(CC) <Vi(CC)(min) ≈ 0.7 V a small negative signal (≈−40 dB) will appear. For frequency dependency of contrast
control see note 15.
4. Definition for nominal output signals: input Vi(b-w) = 0.7 V, gain pins 3 and 11 open-circuit, contrast control
Vi(CC) =Vi(CC)(nom).
5.
dB
Ax: signal output amplitude in channel x at any contrast setting between 1 and 6 V.
Ax0: signal output amplitude in channel x at nominal contrast and same gain setting.
6. Typical step in contrast voltage and response at signal outputs for nominal input signal Vi(b-w) = 0.7 V
(OSD fast blanking input/output).
7. Linear control range is 1 to 6 V for Vi(GC), independent of supply voltage.
8. The internal reference voltage can be measured at pins 18, 15 and 12 (channel feedback inputs) during output
clamping (Vi(HBL) = 2 V) in closed feedback loop.
9. Slow variations of video supply voltage VCRT (Fig.1) will be suppressed at CRT cathode by cut-off stabilization.
Change of VCRT by 5 V leads to specified change of cut-off voltage.
10. The test mode allows testing without input and output clamping pulses. The signal inputs have to be biased via
resistors to the previously measured clamp voltages of approximately 3 V (artificial black level + VBE). Signal and
brightness blanking is not possible during test mode. The current outputs should be adjusted by resistors >> R0 from
voltage outputs to a positive voltage (e.g. VP).
tr(CL), tf(CL)
rise and fall time for clamping pulse note 19; Fig.17
−−
75
ns/V
tw(clamp)
width of clamping pulse
0.6
−−µs
td(Vblank)
delay between vertical blanking
input and internal blanking
note 19; Fig.17
260
320
380
ns
SYMBOL
PARAMETER
CONDITIONS
MIN.
TYP.
MAX.
UNIT
V
bl(SO)
R
o
3.5 k
Ω R
o
+
-------------------------------
4.65 V
×
∆G
track
20
maximum of
A
1
A
10
---------
A
20
A
2
---------
×



log
A
1
A
10
---------
A
30
A
3
---------
×



log
A
2
A
20
---------
A
30
A
3
---------
×



log
;
;



×
=


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