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TDA6111 Ver la hoja de datos (PDF) - Philips Electronics

Número de pieza
componentes Descripción
Fabricante
TDA6111
Philips
Philips Electronics Philips
TDA6111 Datasheet PDF : 16 Pages
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Philips Semiconductors
Video output amplifier
Preliminary specification
TDA6111Q
CHARACTERISTICS
Operating range: Tamb = 20 to 65 °C; VDDH = 180 to 210 V; VDDL = 10.8 to 13.2 V; Vip = 2.6 to 5 V;
Vom = 1.4 V to VDDL.
Test conditions (unless otherwise specified): Tamb = 25 °C; VDDH = 200 V; VDDL = 12 V; Vip = 5 V; Vom = 6 V; CL = 10 pF
(CL consists of parasitic and cathode capacitance); Rth-heatsink = 10 K/W; measured in test circuit Fig.3.
SYMBOL
PARAMETER
CONDITIONS
MIN. TYP. MAX. UNIT
IDDH
IDDL
Ibias
Ioffset
Iom(offset)
-----II--oo--m-c--
Voffset
Voc(min)
Voc(max)
GB
BS
BL
tpd
quiescent HIGH voltage supply current Voc = 0.5VDDH
7.0
9.0
quiescent LOW voltage supply current Voc = 0.5VDDH
5.0
6.8
input bias current
Voc = 0.5VDDH
0
input offset current
Voc = 0.5VDDH
6
offset current of measurement output Ioc = 0 µA;
10
0
1.0 V < V13 < 1.0 V;
1.4 V < Vom < VDDL
linearity of current transfer
10 µA < Ioc < 3 mA;
0.9
1.0
1.0 V < V13 < 1.0 V;
1.4 V < Vom < VDDL
input offset voltage
Voc = 0.5VDDH
50
minimum output voltage
V13 = 1 V
maximum output voltage
V13 = 1 V
VDDH 12
gain-bandwidth product of open-loop f = 500 kHz; VocDC = 100 V
1.6
gain: Vfb / Vi, dm
small signal bandwidth
VocAC = 60 V (p-p);
VocDC = 100 V
13
16
large signal bandwidth
VocAC = 100 V (p-p);
10
13
VocDC = 100 V
cathode output propagation delay time VocAC = 100 V (p-p);
17
23
50% input to 50% output
VocDC = 100 V square
wave; f < 1 MHz;
tr = tf = 22 ns;
see Figs 4 and 5
11.0 mA
8.0 mA
40
µA
+6
µA
+10 µA
1.1
+50 mV
20
V
V
GHz
MHz
MHz
29
ns
tr
cathode output rise time 10% output to Voc = 50 to 150 V square 23
30
36
ns
90% output
wave; f < 1 MHz; tf = 22 ns;
see Fig.4
tf
cathode output fall time 90% output to Voc = 150 to 50 V square 23
10% output
wave; f < 1 MHz; tr = 22 ns;
see Fig.5
ts
settling time 50% input to
(99% < output < 101%)
VocAC = 100 V (p-p);
VocDC = 100 V square
wave; f < 1 MHz;
tr = tf = 22 ns;
see Figs 4 and 5
SR
slew rate between 50 V to 150 V
V13 = 2 V (p-p) square
wave; f < 1 MHz;
tr = tf = 22 ns
30
36
ns
350 ns
3000
V/µs
1995 Feb 07
6

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