INTEGRATED CIRCUITS
DATA SHEET
TDA6101Q
Video output amplifier
Preliminary specification
Supersedes data of November 1991
File under Integrated Circuits, IC02
1995 Feb 07
Philips Semiconductors
Philips Semiconductors
Preliminary specification
Video output amplifier
FEATURES
•
High bandwidth and high slew rate
•
No external heatsink required
•
Black-current measurement output for Automatic
Black-current Stabilization (ABS)
•
Two cathode outputs; one for DC currents, and one for
transient currents
•
A feedback output separated from the cathode outputs
•
Internal protection against positive appearing
Cathode-Ray Tube (CRT) flashover discharges
•
ESD protection
•
Simple application with a variety of colour decoders
•
Differential input with a designed maximum common
mode input capacitance of 3 pF, a maximum differential
mode input capacitance of 0.5 pF and a differential input
voltage temperature drift of 20
µV/K
•
Defined switch-off behaviour.
QUICK REFERENCE DATA
SYMBOL
V
DDH
V
DDL
I
DDH
I
DDL
V
I
V
oc
, V
fb
T
stg
T
amb
PARAMETER
high level supply voltage
low level supply voltage
quiescent high voltage supply current
quiescent low voltage supply current
input voltage
output voltage
storage temperature
operating ambient temperature
V
oc
= 0.5V
DDH
V
oc
= 0.5V
DDH
CONDITIONS
0
0
3.5
2.2
0
V
DDL
−55
−20
MIN.
−
−
4.4
2.8
−
−
−
−
TYP.
GENERAL DESCRIPTION
TDA6101Q
The TDA6101Q is a video output amplifier with 9 MHz
bandwidth. The device is contained in a single in-line 9-pin
medium power (DBS9MPF) package, using high-voltage
DMOS technology, intended to drive the cathode of a
colour CRT.
MAX.
250
14
5.5
3.5
V
DDL
V
DDH
+150
+65
UNIT
V
V
mA
mA
V
V
°C
°C
ORDERING INFORMATION
PACKAGE
TYPE NUMBER
NAME
TDA6101Q
DBS9MPF
DESCRIPTION
plastic DIL-bent-SIL medium power package with fin; 9 leads
VERSION
SOT111-1
1995 Feb 07
2
Philips Semiconductors
Preliminary specification
Video output amplifier
BLOCK DIAGRAM
supply voltage
input HIGH
feedback
output
TDA6101Q
handbook, full pagewidth
6
9
7V
MIRROR
FOLLOWERS
7
cathode
transient
output
cathode
DC output
black current
measurement
output
MIRROR
Vbias
C par
inverting
input
non-inverting
input
8
3
1
DIFFERENTIAL
STAGE
TDA6101Q
5
MIRROR
CURRENT
SOURCE
MIRROR
4
2
MCD356
ground
(substrate)
supply voltage
input LOW
Fig.1 Block diagram.
1995 Feb 07
3
Philips Semiconductors
Preliminary specification
Video output amplifier
PINNING
SYMBOL
V
ip
V
DDL
V
in
GND
I
om
V
DDH
V
cn
V
oc
V
fb
PIN
1
2
3
4
5
6
7
8
9
DESCRIPTION
non-inverting voltage input
supply voltage LOW
inverting voltage input
ground, substrate
black current measurement
output
supply voltage HIGH
cathode transient voltage output
cathode DC voltage output
feedback voltage output
handbook, halfpage
TDA6101Q
V ip
VDDL
Vin
GND
I om
VDDH
Vcn
Voc
Vfb
1
2
3
4
5
6
7
8
9
MCD355
TDA6101Q
Fig.2 Pin configuration.
1995 Feb 07
4
Philips Semiconductors
Preliminary specification
Video output amplifier
TDA6101Q
LIMITING VALUES
In accordance with the Absolute Maximum Rating System (IEC 134). Voltages measured with respect to GND (pin 4);
currents as specified in Fig.1; unless otherwise specified.
SYMBOL
V
DDH
V
DDL
V
I
V
Idm
V
om
V
oc
V
fb
I
in
,I
ip
I
ocsmL
I
ocsmH
P
tot
T
stg
T
j
V
es
PARAMETER
high level supply voltage
low level supply voltage
input voltage
differential mode input voltage
measurement output voltage
cathode output voltage
feedback output voltage
input current
low non-repetitive peak cathode
output current
high non-repetitive peak cathode
output current
total power dissipation
storage temperature
junction temperature
electrostatic handling
human body model (HBM)
machine model (MM)
HANDLING
Inputs and outputs are protected against electrostatic discharge in normal handling. However, to be totally safe, it is
desirable to take normal precautions appropriate to handling MOS devices (see
“Handling MOS Devices”
).
QUALITY SPECIFICATION
Quality specification
“SNW-FQ-611 part E”
is applicable, except for ESD Human body model see Chapter “Limiting
values”, and can be found in the
“Quality reference handbook”
(ordering number 9398 510 63011).
THERMAL CHARACTERISTICS
SYMBOL
R
th j-a
R
th j-c
Note
1. External heatsink not required.
PARAMETER
(1)
thermal resistance from junction to ambient in free air
thermal resistance from junction to case
VALUE
56
12
UNIT
K/W
K/W
−
−
> 1500
> 400
V
V
flashover discharge = 100
µC
flashover discharge = 100 nC
CONDITIONS
0
0
0
−6
0
V
DDL
V
DDL
0
0
0
0
−55
−20
MIN.
MAX.
250
14
V
DDL
+6
V
DDL
V
DDH
V
DDH
1
5
10
1.9
+150
+150
V
V
mA
A
A
W
°C
°C
V
V
V
V
UNIT
1995 Feb 07
5