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TDA6107JF Datasheet, PDF (7/20 Pages) NXP Semiconductors – Triple video output amplifier
Philips Semiconductors
Triple video output amplifier
Product specification
TDA6107JF
SYMBOL
PARAMETER
CONDITIONS
MIN. TYP. MAX. UNIT
∆tPco
to(r)
to(f)
tst
SR
Ov
PSRR
αct(DC)
difference in cathode output Vo(c) = 100 V (p-p) square −10
propagation time 50% input to wave; f < 1 MHz;
50% output (pins 7 and 8,
7 and 9 and 8 and 9)
tr = tf = 40 ns
(pins 1, 2 and 3)
cathode output rise time
10% output to 90% output
(pins 7, 8 and 9)
Vo(c) = 50 to 150 V square 67
wave; f < 1 MHz; tf = 40 ns
(pins 1, 2 and 3); see Fig.6
cathode output fall time
90% output to 10% output
(pins 7, 8 and 9)
Vo(c) = 150 to 50 V square 67
wave; f < 1 MHz; tr = 40 ns
(pins 1, 2 and 3); see Fig.7
settling time 50% input to
99% < output < 101%
(pins 7, 8 and 9)
Vo(c) = 100 V (p-p) square −
wave; f < 1 MHz;
tr = tf = 40 ns
(pins 1, 2 and 3);
see Figs 6 and 7
slew rate between
50 V to (VDD − 50 V)
(pins 7, 8 and 9)
Vi = 4 V (p-p) square wave; −
f < 1 MHz; tr = tf = 40 ns
(pins 1, 2 and 3)
cathode output voltage
Vo(c) = 100 V (p-p) square −
overshoot (pins 7, 8 and 9) wave; f < 1 MHz;
tr = tf = 40 ns
(pins 1, 2 and 3);
see Figs 6 and 7
power supply rejection ratio f < 50 kHz; note 2
−
DC crosstalk between
−
channels
0
+10
ns
91
113
ns
91
113
ns
−
350
ns
900
−
2
−
V/µs
%
55
−
dB
−50
−
dB
Notes
1. See also Fig.5 for the typical DC-to-DC transfer of VI to VO(oc).
2. The ratio of the change in supply voltage to the change in input voltage when there is no change in output voltage.
2002 Oct 18
7