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Part Number CR2424S

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DATA SHEET
Product specification
Supersedes data of 1995 Apr 04
File under Discrete Semiconductors, SC05
1995 Oct 23
DISCRETE SEMICONDUCTORS
CR2424S
Video driver hybrid amplifier
1995 Oct 23
2
Philips Semiconductors
Product specification
Video driver hybrid amplifier
CR2424S
FEATURES
·
Typical transition times (10 to 90%)
with C
L
at 8.5 pF:
­ 2.2 ns rise and 2.0 ns fall with
35 V (p-p) swing
­ 2.3 ns rise and 2.1 ns fall with
40 V (p-p) swing
­ 2.5 ns rise and 2.2 ns fall with
50 V (p-p) swing
·
Low power consumption
·
Minimum small-signal
bandwidth 130 MHz
·
Very fast slew rate; 15000 V/
µ
s
·
Excellent grey-scale linearity
·
Unconditional stability
·
Gold metallization ensures
excellent reliability.
APPLICATIONS
It is designed for application in
cathode-ray tube (CRT) drivers in
high-resolution colour and
monochrome monitors.
DESCRIPTION
Hybrid amplifier module mounted in
SOT115L package.
PINNING
PIN
DESCRIPTION
1
input
2
ground
3
ground
5
supply voltage (V
S
)
7
ground
8
ground
9
output
Fig.1 SOT115L.
1/3 page (Datasheet)
1 2 3
5
7 8 9
Side view
MSB048
LIMITING VALUES
In accordance with the Absolute Maximum Rating System (IEC 134).
SYMBOL
PARAMETER
MIN.
MAX.
UNIT
V
S
supply voltage (DC)
-
70
V
T
mb
operating mounting base
temperature
-
20
+100
°
C
T
stg
storage temperature
-
40
+125
°
C
1995 Oct 23
3
Philips Semiconductors
Product specification
Video driver hybrid amplifier
CR2424S
CHARACTERISTICS
T
mb
= 25
°
C; C
L
= 8.5 pF; measured in test circuit (see Fig.10); unless otherwise specified.
Notes
1. Input signal is a 100 kHz square wave of 3.25 V (p-p), with 1.5 V (DC) offset (50
source).
2. Input signal is a 100 kHz square wave of 3.4 V (p-p), with 1.65 V (DC) offset (50
source).
3. Sine wave output signal: 1 V (p-p).
4. Measured V
O
/V
I
(Figs 2 and 6) at input test circuit (see Fig.10).
5. Measured V
O
/V
I
(Figs 3 and 7) at input module (see Fig.10).
SYMBOL
PARAMETER
CONDITIONS
MIN.
TYP.
MAX.
UNIT
V
S
= 60 V; output swing = 40 V (p-p) with 30 V (DC) offset; unless otherwise specified
I
S
supply current
input and output open
39
45
51
mA
V
I
input voltage (DC)
input and output open
1.3
1.6
1.9
V
t
r
rise time transient response
10 to 90%; note 1
-
2.3
2.9
ns
t
f
fall time transient response
10 to 90%; note 1
-
2.1
2.6
ns
V
S
= 65 V; output swing = 50 V (p-p) with 32.5 V (DC) offset; unless otherwise specified
I
S
supply current
input and output open
-
50
57
mA
V
I
input voltage (DC)
input and output open
1.4
1.75
2.1
V
t
r
rise time transient response
10 to 90%; note 2
-
2.5
3.2
ns
t
f
fall time transient response
10 to 90%; note 2
-
2.2
3.2
ns
V
S
= 60 or 65 V; output swing = 40 or 50 V (p-p) with 30 or 32.5 V (DC) offset; unless otherwise specified
P
tot
total power dissipation
50 MHz square wave
-
4.6
6
W
BW
small-signal bandwidth
between
-
3 dB points; note 3
130
145
-
MHz
V
tilt
low frequency tilt voltage
1 kHz square wave
-
1.3
1.5
V
V
os
overshoot voltage
varied by C1; see Fig.10
-
3
10
%
NLN
non-linearity
V
O
= 5 to 55 V
-
2
5
%
A
V
DC voltage gain
50
source; note 4
11.2
12.4
13.2
V
G
insertion gain
50
source; note 5
160
180
200
1995 Oct 23
4
Philips Semiconductors
Product specification
Video driver hybrid amplifier
CR2424S
Fig.2
Input voltage at input test circuit as a
function of output voltage; typical values.
V
S
= 60 V; T
mb
= 25
°
C; C
L
= 8.5 pF; output swing = 40 V (p-p)
with 30 V (DC) offset; measured in test circuit (see Fig.10).
handbook, halfpage
MLC954
1
1
3
5
0
20
40
60
V (V)
O
VI
(V)
Fig.3
Input voltage at input module as a function
of output voltage; typical values.
V
S
= 60 V; T
mb
= 25
°
C; C
L
= 8.5 pF; output swing = 40 V (p-p)
with 30 V (DC) offset; measured in test circuit (see Fig.10).
handbook, halfpage
MLC955
1.5
1.7
1.9
1.3
0
20
40
60
VO (V)
VI
(V)
Fig.4
Rise time transient response as a function
of load capacitance; typical values.
handbook, halfpage
MRA627 - 1
1.8
2.2
2.6
3.0
6
8
10
12
14
16
(pF)
CL
t r
(ns)
40 V (p-p)
35 V (p-p)
30 V (p-p)
V
S
= 60 V; T
mb
= 25
°
C; C
L
= 8.5 pF;
output swing = 40, 35, 30 V (p-p) with 30 V (DC) offset;
measured in test circuit (see Fig.10).
Fig.5
Fall time transient response as a function of
load capacitance; typical values.
V
S
= 60 V; T
mb
= 25
°
C; C
L
= 8.5 pF;
output swing = 40, 35, 30 V (p-p) with 30 V (DC) offset;
measured in test circuit (see Fig.10).
handbook, halfpage
MRA628 - 1
6
8
10
12
14
16
t f
(ns)
CL (pF)
40 V (p-p)
35 V (p-p)
30 V (p-p)
3.0
2.6
2.2
1.8
1995 Oct 23
5
Philips Semiconductors
Product specification
Video driver hybrid amplifier
CR2424S
Fig.6
Input voltage at input test circuit as a
function of output voltage; typical values.
V
S
= 65 V; T
mb
= 25
°
C; C
L
= 8.5 pF; output swing = 50 V (p-p)
with 32.5 V (DC) offset; measured in test circuit (see Fig.10).
handbook, halfpage
MLC956
1
1
3
5
0
20
40
60
80
V (V)
O
VI
(V)
Fig.7
Input voltage at input module as a function
of output voltage; typical values.
V
S
= 65 V; T
mb
= 25
°
C; C
L
= 8.5 pF; output swing = 50 V (p-p)
with 32.5 V (DC) offset; measured in test circuit (see Fig.10).
handbook, halfpage
MLC957
1.4
1.6
1.8
2.0
0
20
40
60
80
V (V)
O
VI
(V)
Fig.8
Rise time transient response as a function
of load capacitance; typical values.
V
S
= 65 V; T
mb
= 25
°
C; C
L
= 8.5 pF; output swing = 50 V (p-p)
with 32.5 V (DC) offset; measured in test circuit (see Fig.10).
handbook, halfpage
MRA617 - 1
2.2
2.6
3.0
3.4
6
10
14
18
(pF)
C L
t r
(ns)
Fig.9
Fall time transient response as a function of
load capacitance; typical values.
V
S
= 65 V; T
mb
= 25
°
C; C
L
= 8.5 pF; output swing = 50 V (p-p)
with 32.5 V (DC) offset; measured in test circuit (see Fig.10).
handbook, halfpage
MRA615 - 1
2.0
2.4
2.8
3.2
6
10
14
18
t f
(ns)
C L (pF)
1995 Oct 23
6
Philips Semiconductors
Product specification
Video driver hybrid amplifier
CR2424S
Fig.10 CRT amplifier test circuit and block diagram.
handbook, full pagewidth
MAM143
PULSE
GENERATOR
BIAS
UNIT
TEST
FIXTURE
CR2424S
POWER
SUPPLY
FET
PROBE
SAMPLING
OSCILLOSCOPE
CR2424S
C1
R1
input
50
1
5
2
9
7
output
C2
VS
C L
3
8
Components used in test circuit (see Fig.10)
Equipment used in test circuit (see Fig.10)
DESIGNATION
DESCRIPTION
VALUE
C
1
variable capacitor
10 to 120 pF (typ. 50 pF)
C
2
chip capacitor
10 nF
R1
resistor
typ. 215
EQUIPMENT
TYPE DESCRIPTION
Pulse generator
Pico Second; Model 2600B
Bias unit
Pico Second; Model 5555
Power supply
Philips; Model PE1541, 80 V
FET probe
Philips; Model PM8943, attenuation 100 : 1
Sampling oscilloscope
Tektronix; Model 11803, sampling head SD24
1995 Oct 23
7
Philips Semiconductors
Product specification
Video driver hybrid amplifier
CR2424S
Fig.11 Internal circuit.
handbook, full pagewidth
1 nF
82
pF
680 pF
100 V
input
output
MLC940
supply
150 k
3 k
3 k
6.4 k
10
47
6.8
180
180
30
10
22 nF
100 V
22 nF
100 V
3.3 nF
100 V
150 pF
82
pF
6.8
30
150
pF
1995 Oct 23
8
Philips Semiconductors
Product specification
Video driver hybrid amplifier
CR2424S
PACKAGE OUTLINE
Dimensions in mm.
Heatsink compound must be applied sparingly and evenly distributed.
Fig.12 SOT115L.
handbook, full pagewidth
1 2 3
5
7 8
11.5
max
M
O 0.25
9
0.51
0.38
(5.08)
2.54
3.15
27.2 max
3.8 max
8.8
min
9.2
max
8
13.8 max
0.25
2.54
2.4 max
44.8
max
38.1
4.15
3.85
MSA240 - 1
1995 Oct 23
9
Philips Semiconductors
Product specification
Video driver hybrid amplifier
CR2424S
DEFINITIONS
LIFE SUPPORT APPLICATIONS
These products are not designed for use in life support appliances, devices, or systems where malfunction of these
products can reasonably be expected to result in personal injury. Philips customers using or selling these products for
use in such applications do so at their own risk and agree to fully indemnify Philips for any damages resulting from such
improper use or sale.
Data sheet status
Objective specification
This data sheet contains target or goal specifications for product development.
Preliminary specification
This data sheet contains preliminary data; supplementary data may be published later.
Product specification
This data sheet contains final product specifications.
Limiting values
Limiting values given are in accordance with the Absolute Maximum Rating System (IEC 134). Stress above one or
more of the limiting values may cause permanent damage to the device. These are stress ratings only and operation
of the device at these or at any other conditions above those given in the Characteristics sections of the specification
is not implied. Exposure to limiting values for extended periods may affect device reliability.
Application information
Where application information is given, it is advisory and does not form part of the specification.