7.5 NS TRIPLE HIGH VOLTAGE VIDEO AMPLIFIER
FEATURE
■ TRIPLE CHANNEL VIDEO AMPLIFIER
■ SUPPLY VOLTAGE: 110V TYPICAL
■ RISE AND FALL TIMEs: 7.5ns TYPICAL
■ BANDWIDTH: 50Mhz TYPICAL
■ 80 VOLTS OUTPUT DYNAMIC RANGE
■ LOW POWER CONSUMPTION
■ WELL MATCHED WITH TDA9210 PREAMP
■ FULL PINCOMPATIBILITY WITH TDA9535
DESCRIPTION
The TDA9536 is a triple video amplifier with high
voltage Bipolar/CMOS/DMOS technology (BCD)
for use in color monitor application. Used with
TDA9210 preamp in DC coupled mode, it
provides for a low component, high performance
and cost effective system solution. Otherfeatures
include 1024 x 768 displays, pixelclock
frequencies up to 100MHz, and DC or AC
coupling designs.
TDA9536
PRELIMINARY DATA
CLIPWATT 11
(Plastic Package)
ORDER CODE: TDA9536
PIN CONNECTIONS
11
10
9
8
7
6
5
4
3
2
1
OUT3
GND3
IN3
V
CC
IN2
GND2
OUT2
V
DD
IN1
GND1
OUT1
Version 3.2
March 2000 1/9
This ispreliminary information ona new product nowindevelopment. Detailsare subject to change without notice.
1
TDA9536
BLOCK DIAGRAM
GND2
OUT2GND1OUT1
1
2
V
DD
4
V
CC
8
Vref
65
Vref
OUT3
GND3
1011
TDA9536
Vref
37 9
IN3IN2IN1
ABSOLUTE MAXIMUM RATINGS
Symbol Parameter Value Unit
V
V
V
V
V
T
DD
CC
ESD
I
OD
I
OG
IMax
I Min
T
J
STG
High Supply Voltage 120 V
Low Supply Voltage 17 V
ESD Susceptibility
Human Body Model, 100pF. Discharge through 1.5KΩ
EIAJ Norm, 200pF. Discharge through 0Ω
2
250
Output Source Current (pulsed < 50µs) 80 mA
Output Sink Current (pulsed < 50µs) 80 mA
Maximum Input Voltage 15 V
Minimum Input Voltage - 0.5 V
Junction Temperature 150 °C
Storage Temperature -20 + 150 °C
kV
V
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2
THERMAL DATA
Symbol Parameter Value Unit
R
R
th (j-c)
th (j-a)
Junction-Case Thermal Resistance (Max.) 3 °C/W
Junction-Ambient Thermal Resistance (Typ.) 35 °C/W
ELECTRICAL CHARACTERISTICS
(VCC = 12V, VDD = 110V, Tamb= 25 °C)
Symbol Parameter Test Conditions Min Typ Max Unit
V
DD
V
CC
I
DD
I
CC
/dV
dV
OUT
/dTemp
dV
OUT
V
OUT SATH
V
OUTSATL
AV
R
E
lin
OS Overshoot 5 %
Lf
∆g/g
R
IN
BW Bandwidth at -3dB
t
R,tF
Lf CT
Hf CT
High Supply Voltage (Pin 4) 110 115 V
Low Supply Voltage (Pin 8) 10 12 15 V
High Voltage Supply Internal DC
Current
Low Voltage Supply Internal DC
V
OUT
= 50V
25
60
Current
High Voltage Supply Rejection V
DD
Output Voltage Drift Versus
Temperature for anyChannel
Max. Output Voltage
Min. OutputVoltage
Typical Video Gain V
Linearity Error 17<V
Low Frequency Gain Matching
Video Input Resistor V
Rise and Fall Time
Low Frequency Crosstalk
High Frequency Crosstalk
= 50V 0.5 %
OUT
V
= 80V 15 mV/°C
OUT
I0=-60mA, (1)
=60mA, (1)
I
0
= 50V 20
OUT
OUT<VDD
V
= 50V,
OUT
f=1MHz
= 50V 2 KΩ
OUT
=50V,
V
OUT
=8pF
C
LOAD
=200Ω,
R
P
=20V
∆V
OUT
V
=50V,
OUT
=8pF
C
LOAD
=200Ω,
R
P
=40V
∆V
OUT
=50V,
V
OUT
=8pF
C
LOAD
=200Ω,
R
P
=20V
∆V
OUT
-15V 5 8 %
f = 1 MHz
f = 20MHz
V
- 6.5
DD
11
50 MHz
7.5 ns
50
32
5%
TDA9536
mA
mA
V
V
dB
dB
Note: 1 Pulsed current width < 50µs
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