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LM2452 Datasheet(PDF) 2 Page - National Semiconductor (TI)

[Old version datasheet] Texas Instruments acquired National semiconductor.
Part # LM2452
Description  220V Monolithic Triple Channel 17 MHz DC Coupled CRT DTV Driver
PDF  12 Pages
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Manufacturer  NSC [National Semiconductor (TI)]
Direct Link  http://www.national.com
Logo NSC - National Semiconductor (TI)

LM2452 Datasheet(HTML) 2 Page - National Semiconductor (TI)

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Absolute Maximum Ratings (Notes 1,
3)
If Military/Aerospace specified devices are required,
please contact the National Semiconductor Sales Office/
Distributors for availability and specifications.
Supply Voltage (V
CC)
+250V
Bias Voltage (V
BB)
+16V
Input Voltage (V
IN)
−0.5V to V
BB +0.5V
Storage Temperature Range (T
STG)
−65˚C to +150˚C
Lead Temperature
(Soldering, <10 sec.)
300˚C
ESD Tolerance,
Human Body Model
2 kV
Machine Model
200V
Junction Temperature
150˚C
θ
JC (typ)
3.0˚C/W
Operating Ratings (Note 2)
V
CC
+100V to +230V
V
BB
+7V to +13V
V
IN
+0V to +5V
V
OUT
+40V to +215V
Case Temperature
(15W max power)
100˚C
Do not operate the part without a heat sink and thermal
grease. Heat sink must have a thermal resistance under
3˚C/W. (Note 7)
Electrical Characteristics
(See Figure 3 for Test Circuit). Unless otherwise noted: V
CC = +220V, VBB = +12V, VDAC = +0.5V, CL = 10 pF, TC = 50˚C. DC
Tests: V
IN = +2.7VDC. AC Tests: Output = 130VPP (60V – 190V) at 1 MHz.
Symbol
Parameter
Conditions
LM2452
Units
Min
Typ
Max
I
CC
Supply Current
No Input Signal, No Video Input, No
Output Load
14
22
30
mA
I
BB
Bias Current
20
30
40
mA
V
OUT, 1
DC Output Voltage
No AC Input Signal, V
IN = 2.7VDC
122
127
132
V
DC
V
OUT, 2
DC Output Voltage
No AC Input Signal, V
IN = 1.2VDC
201
206
211
V
DC
V
OUT, 3
DC Output Voltage
No AC Input Signal, V
IN = 1.2VDC,
V
DAC = 1.2VDC
188
194
200
V
DC
V
OUT, 4
DC Output Voltage
No AC Input Signal, V
IN = 1.2VDC,
V
DAC = 3.6VDC
149
155
161
V
DC
A
V
DC Voltage Gain
No AC Input Signal
−51
−54
−57
V/V
A
DAC
DAC Input DC Voltage Gain
No AC Input Signal
−23
−26
−29
V/V
∆A
V
Gain Matching
(Note 4), No AC Input Signal
1.0
dB
LE
Linearity Error
(Notes 4, 5), No AC Input Signal
8
%
t
r
Rise Time
(Note 6), 10% to 90%
20
ns
+OS
Overshoot
13
%
t
f
Fall Time
(Note 6), 90% to 10%
19
ns
−OS
Overshoot
(Note 6)
5
%
BW
L
Large Signal Bandwidth
V
OUT AC = 130 VP-P,VOUT DC = 125 V
18
MHz
BW
M
Medium Signal Bandwidth
V
OUT AC = 100 VP-P,VOUT DC = 125 V
22
MHz
BW
S
Small Signal Bandwidth
V
OUT AC =60VP-P,VOUT DC = 125 V
26
MHz
Ik
ERROR
Current Output Error
Output Current=0µAto200 µA
−52
0
52
µA
∆Ik
ERROR
Current Output Difference
Between Channels
Output Current=0µAto200 µA
0NA
32
µA
Note 1: Absolute Maximum Ratings indicate limits beyond which damage to the device may occur.
Note 2: Operating ratings indicate conditions for which the device is functional, but do not guarantee specific performance limits. For guaranteed specifications and
test conditions, see the Electrical Characteristics. Datasheet min/max specification limits are guaranteed by design, test, or statistical analysis. The guaranteed
specifications apply only for the test conditions listed. Some performance characteristics may change when the device is not operated under the listed test
conditions.
Note 3: All voltages are measured with respect to GND, unless otherwise specified.
Note 4: Calculated value from Voltage Gain test on each channel.
Note 5: Linearity Error is the variation in DC gain from VIN = 1.10V to VIN = 4.30V.
Note 6: Input from signal generator: tr,tf < 10 ns.
Note 7: Running the 1 MHz to 30 MHz test pattern at 1080i this part will dissipate approximately 15.2 W. This is the commonly accepted test pattern that is
representative of the worst case high frequency content for normal television viewing. This is the pattern used to estimate the worst case power dissipation of the
LM2452 in its normal application. It is recommended to use a heat sink with a thermal resistance under 3˚C/W.
www.national.com
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