MAX9501EEE+ [MAXIM]

Triple-Channel HDTV Filters; 三通道HDTV滤波器
MAX9501EEE+
型号: MAX9501EEE+
厂家: MAXIM INTEGRATED PRODUCTS    MAXIM INTEGRATED PRODUCTS
描述:

Triple-Channel HDTV Filters
三通道HDTV滤波器

外围驱动器 驱动程序和接口 接口集成电路 电视 光电二极管
文件: 总10页 (文件大小:465K)
中文:  中文翻译
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19-3779; Rev 1; 11/05  
Triple-Channel HDTV Filters  
General Description  
Features  
The MAX9500/MAX9501 are fully integrated solutions  
for filtering and buffering HDTV signals. The MAX9500  
operates from a single +5V supply, while the MAX9501  
operates from dual 5V supplies. The MAX9500/  
MAX9501 triple-channel video reconstruction filters are  
both gain and delay matched and are ideal for use in  
set-top boxes, DVD players, and other equipment that  
generate analog HDTV outputs.  
30MHz Bandwidth at ±±1.dB  
Extremely Sharp Rolloff, Lowpass Filters  
-.0dB at 4412.MHz  
DC-Coupled Inputs; AC- or DC-Coupled Outputs  
±.5 Dual Supply ꢀMAꢁX.0±ꢂ  
.5 Single Supply ꢀMAꢁX.00ꢂ  
Matched Group Delay and Gain  
The MAX9500/MAX9501 interface between the current-  
output, digital-to-analog converters (DAC) of an  
Advanced Television Standard Committee (ATSC),  
Motion Picture Experts Group (MPEG) decoder and the  
external connections of a television, set-top box, or  
DVD player.  
Drive Single/Double Back-Terminated Loads  
ꢀ±.0/7.ꢂ Directly to Ground  
Sink and Source Output Current  
High Input Impedance to Interface to Low Output-  
Current DAC  
The MAX9500/MAX9501 feature a DC-coupled input with  
very low input capacitance and high resistance. The  
highly selective lowpass filters remove spectral replicas  
at the output of the DAC. The output amplifier has +6dB  
of gain to drive 75back-terminated loads to unity gain.  
The DC-coupled input eliminates problems such as sync  
crush, droop, and field tilt. The output load can be DC- or  
AC-coupled, depending on the application.  
±6-Pin SO and QSOP Packages  
Ordering Information  
SUPPLY  
5OLTAGE  
ꢀ5ꢂ  
PIN-  
PACKAGE  
PART  
TEMP RANGE  
MAꢁX.00ESE+* -40°C to +85°C 16 SO  
MAX9500EEE+ -40°C to +85°C 16 QSOP  
+5  
+5  
5
All three channels in the MAX9500/MAX9501 have the  
same frequency response with matched group delay  
and gain. The MAX9500/MAX9501 filter response meets  
the requirements of the EIA-770.3/SMPTE274M filter  
template achieving > 40dB attenuation at 44.25MHz.  
The MAX9500/MAX9501 can also be used as an anti-  
aliasing filter for HDTV component inputs.  
MAꢁX.0±ESE+* -40°C to +85°C 16 SO  
MAX9501EEE+* -40°C to +85°C 16 QSOP  
5
+Denotes lead-free package.  
*Future product—contact factory for availability.  
Typical Operating Circuit  
The MAX9500/MAX9501 are available in 16-pin SO and  
compact 16-pin QSOP packages, and are fully specified  
over the –40°C to +85°C extended temperature range.  
V
CC  
0.1µF  
Applications  
Cable and Satellite Set-Top Box Receivers  
MPEG  
DECODER  
MAX9500  
MAX9501  
+6dB  
+6dB  
+6dB  
A/V Receivers  
75Ω  
75Ω  
75Ω  
YIN  
PbIN  
PrIN  
YOUT  
10-BIT  
DAC  
LPF  
Home Theater Systems  
HDTV Sets  
150Ω  
150Ω  
150Ω  
DVD Players  
PbOUT  
PrOUT  
10-BIT  
DAC  
LPF  
Video Projectors  
Digital Displays  
10-BIT  
DAC  
LPF  
Pin Configurations appear at end of data sheet.  
GND  
SUBG  
(MAX9500)  
0.1µF  
V
EE  
(MAX9501)  
________________________________________________________________ Maxim Integrated Products  
±
For pricing, delivery, and ordering information, please contact Maxim/Dallas Direct! at  
1-888-629-4642, or visit Maxim’s website at www.maxim-ic.com.  
Triple-Channel HDTV Filters  
ABSOLUTE MAꢁIMUM RATINGS  
Positive Supply Voltage (V  
to GND) ....................-0.3V to +6V  
Continuous Input Current (YIN, PbIN, PrIN) ..................... 20mA  
CC  
Negative Supply Voltage (MAX9501)  
(V to GND) ........................................................+0.3V to -6V  
Continuous Power Dissipation (T = +70°C)  
A
16-Pin SO (derate 13mW/°C above +70°C)...............1039mW  
16-Pin QSOP (derate 12.8mW/°C above +70°C).......1025mW  
Operating Temperature Range ...........................-40°C to +85°C  
Junction Temperature......................................................+150°C  
Storage Temperature Range.............................-65°C to +150°C  
Lead Temperature (soldering, 10s) .................................+300°C  
EE  
All Input Pins...............................................-0.3V to (V  
All Output Pins (MAX9500).........................-0.3V to (V  
+ 0.3V)  
+ 0.3V)  
CC  
CC  
All Output Pins (MAX9501) ............................(V - 0.3V) to +3V  
EE  
Output Short-Circuit Duration  
(OUT to V  
or GND) (MAX9500)......................................10s  
CC  
Output Short-Circuit Duration  
(OUT to GND or V ) (MAX9501)........................................10s  
EE  
Stresses beyond those listed under “Absolute Maximum Ratings” may cause permanent damage to the device. These are stress ratings only, and functional  
operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to  
absolute maximum rating conditions for extended periods may affect device reliability.  
ELECTRICAL CHARACTERISTICS—MAꢁX.00 ꢀSingle Supplyꢂ  
(V  
CC  
= 5V, R = , T = T  
to T  
, unless otherwise noted. Typical values are at T = +25°C.) (Note 1)  
MAX A  
L
A
MIN  
PARAMETER  
SYMBOL  
CONDITIONS  
MIN  
TYP  
MAꢁ  
UNITS  
DC CHARACTERISTICS  
Supply Voltage Range  
V
Guaranteed by PSRR  
4.5  
5.0  
34  
5.5  
46  
V
mA  
V
CC  
Quiescent Supply Current  
(Per Channel)  
I
CC  
Input Voltage Range  
V
Guaranteed by voltage gain  
R = 150to GND  
0
1.4  
+6.4  
+6.4  
+6.4  
+6.4  
+0.5  
10  
IN  
+5.5  
+5.5  
+5.5  
+5.5  
-0.5  
+6  
+6  
+6  
+6  
0
L
R = 150to 2V  
L
Voltage Gain  
A
V
= 0 to 1.4V  
IN  
dB  
V
R = 75to GND  
L
R = 75to 2V  
L
Gain Matching  
A  
Any two channels  
dB  
µA  
kΩ  
V
V
Input Bias Current  
I
V
V
V
V
= 0V  
4
B
IN  
Input Resistance  
R
= 0 to 1.4V  
= 0V  
250  
0.65  
30  
800  
0.8  
60  
IN  
IN  
Output Offset Voltage  
Power-Supply Rejection Ratio  
V
1.00  
OS  
IN  
PSRR  
= 4.5V to 5.5V, V = 1.4V  
dB  
CC  
IN  
AC CHARACTERISTICS (R = 150to GND, unless otherwise noted)  
L
f = 0.1MHz to 30MHz, V = 1V  
,
IN  
P-P  
Passband Flatness  
A
3.0  
40  
1.5  
dB  
PB  
T
= +25°C  
A
f = 44.25MHz, V = 1V , T = +25°C  
51  
38  
dB  
dB  
IN  
P-P  
A
Attenuation  
A
SB  
f = 74.25MHz, V = 1V  
IN  
P-P  
Settling Time  
Slew Rate  
t
V
V
= 1V , V < 1%  
P-P OUT  
150  
100  
ns  
S
IN  
IN  
SR  
= 1V  
V/µs  
P-P  
Bar time is one-half the active line of a 1080i  
format signal; the beginning 2.5% and the  
ending 2.5% of the bar time is ignored  
Bar Response  
BR  
0.4  
K%  
2
_______________________________________________________________________________________  
Triple-Channel HDTV Filters  
ELECTRICAL CHARACTERISTICS—MAꢁX.00 ꢀSingle Supplyꢂ ꢀcontinuedꢂ  
(V  
CC  
= 5V, R = , T = T  
to T  
, unless otherwise noted. Typical values are at T = +25°C.) (Note 1)  
MAX A  
L
A
MIN  
PARAMETER  
SYMBOL  
NL  
CONDITIONS  
5-step staircase  
MIN  
TYP  
MAꢁ  
UNITS  
Nonlinearity  
0.4  
%
Difference in time between the 50% point of  
the output signals, Y to Pb and Y to Pr  
Channel Delay  
t
< 1  
26  
ns  
ns  
ns  
D
100kHz f 20MHz, V  
= V  
=
YOUT  
PbOUT  
Group Delay  
GD  
V
= 2V  
PrOUT  
P-P  
100kHz f 20MHz, V  
= V  
=
YOUT  
PbOUT  
Group-Delay Variation  
GD  
< 10  
V
= 2V  
PrOUT  
P-P  
Channel-to-Channel Group-Delay  
Matching  
V
= V  
= V  
= 2V , Y to Pb  
PrOUT P-P  
YOUT  
PbOUT  
GD  
0.2  
ns  
CH-CH  
and Y to Pr, 1MHz f 20MHz  
Peak Signal-to-RMS Noise  
Power-Supply Rejection Ratio  
Output Impedance  
SNR  
PSRR  
100kHz f 20MHz, V = 1V  
60  
60  
8
dB  
dB  
IN  
P-P  
f = 100kHz, V  
= 200mV  
RIPPLE  
AC  
P-P  
Z
f = 30MHz  
O
Input Capacitance  
C
1
pF  
pF  
IN  
Capacitive-Load Drive  
C
No sustained oscillations  
25  
L
ELECTRICAL CHARACTERISTICS—MAꢁX.0± ꢀDual Supplyꢂ  
(V  
CC  
= 5V, V = -5V, R = , T = T  
to T  
, unless otherwise noted. Typical values are at T = +25°C.) (Note 1)  
MAX A  
EE  
L
A
MIN  
PARAMETER  
SYMBOL  
CONDITIONS  
MIN  
TYP  
MAꢁ  
UNITS  
DC CHARACTERISTICS  
Positive Supply Voltage Range  
V
Guaranteed by PSRR  
4.5  
5.0  
5.5  
V
V
CC  
Negative Supply Voltage Range  
V
Guaranteed by PSRR  
-5.5  
-5.0  
-4.5  
EE  
V
Quiescent Supply Current  
CC  
I
35  
6
48  
9
mA  
CC  
(Per Channel)  
V
Supply Current  
EE  
I
mA  
V
EE  
(Per Channel)  
Input Voltage Range  
V
Guaranteed by voltage gain  
0
1.4  
IN  
R = 150to GND  
+5.5  
+6  
+6.4  
L
Voltage Gain  
A
V
= 0 to 1.4V  
IN  
dB  
V
R = 75to GND  
L
+5.5  
-0.5  
+6  
0
+6.4  
+0.5  
10  
Gain Matching  
A  
Any two channels  
dB  
µA  
kΩ  
V
V
Input Bias Current  
Input Resistance  
Output Offset Voltage  
I
V
V
V
= 0V  
4
B
IN  
IN  
IN  
R
= 0 to 1.4V  
= 0V  
250  
-0.2  
800  
0
IN  
V
+0.2  
OS  
V
V
= 4.5V to 5.5V, V = 1.4V,  
IN  
= -4.5V to -5.5V  
CC  
EE  
Power-Supply Rejection Ratio  
PSRR  
40  
60  
dB  
_______________________________________________________________________________________  
3
Triple-Channel HDTV Filters  
ELECTRICAL CHARACTERISTICS—MAꢁX.0± ꢀDual Supplyꢂ ꢀcontinuedꢂ  
(V  
CC  
= 5V, V = -5V, R = , T = T  
to T  
, unless otherwise noted. Typical values are at T = +25°C.) (Note 1)  
MAX A  
EE  
L
A
MIN  
PARAMETER  
SYMBOL  
CONDITIONS  
MIN  
TYP  
MAꢁ  
UNITS  
AC CHARACTERISTICS (R = 150to GND, unless otherwise noted)  
L
f = 0.1MHz to 30MHz, V = 1V  
,
IN  
P-P  
Passband Flatness  
Attenuation  
A
A
4.0  
38  
1.5  
dB  
PB  
SB  
T
= +25°C  
A
f = 44.25MHz, V = 1V , T = +25°C  
45  
38  
dB  
dB  
IN  
P-P  
A
f = 74.25MHz, V = 1V  
IN  
P-P  
Settling Time  
Slew Rate  
t
V
V
= 1V , V < 1%  
P-P OUT  
150  
100  
ns  
S
IN  
IN  
SR  
BR  
NL  
= 1V  
V/µs  
P-P  
Bar time is one-half the active line of a 1080i  
format signal; the beginning 2.5% and the  
ending 2.5% of the bar time is ignored  
Bar Response  
0.4  
K%  
Nonlinearity  
5-step staircase  
0.4  
< 1  
%
Difference in time between the 50% point of  
the output signals, Y to Pb and Y to Pr  
Channel Delay  
t
ns  
D
100kHz f 20MHz, V  
= V  
=
YOUT  
PbOUT  
Group Delay  
GD  
25  
ns  
ns  
V
= 2V  
PrOUT  
P-P  
100kHz f 20MHz, V  
= V  
=
YOUT  
PbOUT  
Group-Delay Variation  
GD  
< 10  
V
= 2V  
PrOUT  
P-P  
Channel-to-Channel Group-Delay  
Matching  
V
= V  
= V  
= 2V , Y to Pb  
PrOUT P-P  
YOUT  
PbOUT  
GD  
0.6  
ns  
CH-CH  
and Y to Pr, 1MHz f 20MHz  
Peak Signal-to-RMS Noise  
Power-Supply Rejection Ratio  
Output Impedance  
SNR  
PSRR  
100kHz f 20MHz, V = 1V  
60  
60  
8
dB  
dB  
IN  
P-P  
f = 100kHz, V  
= 200mV  
RIPPLE  
AC  
P-P  
Z
f = 30MHz  
O
Input Capacitance  
C
1
pF  
pF  
IN  
Capacitive-Load Drive  
C
No sustained oscillations  
25  
L
Note ±: All specifications are 100% tested at T = +25°C; temperature limits are guaranteed by design.  
A
4
_______________________________________________________________________________________  
Triple-Channel HDTV Filters  
Typical Operating Characteristics  
(V  
CC  
= 5V, R = 150to GND, T = +25°C, unless otherwise noted.)  
L A  
MAX9500  
FREQUENCY RESPONSE  
MAX9500  
PASSBAND FLATNESS  
MAX9500  
GROUP DELAY  
10  
2.0  
1.6  
100  
90  
80  
70  
60  
50  
40  
30  
20  
10  
0
ALL CHANNELS  
V
= 1V  
P-P  
IN  
0
-10  
-20  
-30  
-40  
-50  
-60  
ALL CHANNELS  
1.2  
0.8  
0.4  
0
-0.4  
-0.8  
-1.2  
-1.6  
-2.0  
V
= 1V  
P-P  
ALL CHANNELS  
IN  
0.1  
1
10  
100  
0.1  
1
10  
100  
0.1  
1
10  
100  
FREQUENCY (MHz)  
FREQUENCY (MHz)  
FREQUENCY (MHz)  
MAX9500  
MEASUREMENT  
MAX9500  
VIDEO CROSSTALK  
MAX9501  
FREQUENCY RESPONSE  
K
2T  
0.1  
-10  
-21  
-32  
-43  
-54  
-65  
-76  
-87  
-98  
-109  
-120  
10  
0
V
= 1V  
P-P  
IN  
1%  
-10  
-20  
-30  
-40  
-50  
-60  
0.5%  
ANY CHANNEL TO Y  
0
V
= 0.7V  
IN  
0.5%  
1%  
2T = 33ns  
ANY CHANNEL TO Pb OR Pr  
V
= 1V  
P-P  
IN  
ALL CHANNELS  
-0.1  
-4 -3 -2 -1  
0
1
2
3
4
0.1  
1
10  
100  
0.1  
1 10  
FREQUENCY (MHz)  
100  
t/2T  
FREQUENCY (MHz)  
MAX9501  
GROUP DELAY  
MAX9501  
PASSBAND FLATNESS  
100  
90  
80  
70  
60  
50  
40  
30  
20  
10  
0
2.0  
ALL CHANNELS  
V
= 1V  
IN  
P-P  
1.6  
1.2  
ALL CHANNELS  
0.8  
0.4  
0
-0.4  
-0.8  
-1.2  
-1.6  
-2.0  
0.1  
1
10  
100  
0.1  
1
10  
100  
FREQUENCY (MHz)  
FREQUENCY (MHz)  
_______________________________________________________________________________________  
.
Triple-Channel HDTV Filters  
Typical Operating Characteristics (continued)  
(V  
CC  
= 5V, R = 150to GND, T = +25°C, unless otherwise noted.)  
L A  
MAX9501  
MEASUREMENT  
MAX9501  
VIDEO CROSSTALK  
MAX9501  
POWER-SUPPLY REJECTION RATIO  
K
2T  
V
EE  
0.1  
-10  
-21  
-32  
-43  
-54  
-65  
-76  
-87  
-98  
-109  
-120  
V
= 1V  
P-P  
IN  
0
-20  
-40  
-60  
-80  
1%  
1%  
0.5%  
0.5%  
ANY CHANNEL TO Pb OR Pr  
0
V
= 0.7V  
IN  
0.5%  
2T = 33ns  
1%  
ANY CHANNEL TO Y  
-0.1  
-100  
-4 -3 -2 -1  
0
1
2
3
4
0.1  
1
10  
100  
100  
10k  
100k  
1M  
10M 100M  
1k  
t/2T  
FREQUENCY (MHz)  
FREQUENCY (Hz)  
MAX9501  
SUPPLY CURRENT vs. TEMPERATURE  
MAX9500/MAX9501  
POWER-SUPPLY REJECTION RATIO  
MAX9500/MAX9501  
SIGNAL-TO-NOISE RATIO vs. FREQUENCY  
V
EE  
V
CC  
19.0  
18.5  
18.0  
17.5  
17.0  
16.5  
16.0  
15.5  
15.0  
14.5  
14.0  
-50  
-52  
-54  
-56  
-58  
-60  
-62  
-64  
-66  
-68  
-70  
0
-20  
-40  
V
IN  
= 1V  
P-P  
-60  
-80  
-100  
-40  
-15  
10  
35  
60  
85  
100  
10k  
100k  
1M  
10M 100M  
0.1  
1
10  
100  
1k  
TEMPERATURE (°C)  
FREQUENCY (Hz)  
FREQUENCY (MHz)  
MAX9500/MAX9501  
SUPPLY CURRENT vs. TEMPERATURE  
MAX9500/MAX9501  
OUTPUT IMPEDANCE vs. FREQUENCY  
V
CC  
160  
150  
140  
130  
120  
110  
100  
90  
40  
35  
30  
25  
20  
15  
10  
5
80  
0
-40  
-15  
10  
35  
60  
85  
0.1  
1
10  
100  
TEMPERATURE (°C)  
FREQUENCY (MHz)  
6
_______________________________________________________________________________________  
Triple-Channel HDTV Filters  
Output Buffer  
Pin Description  
The MAX9500/MAX9501 output buffers provide +6dB of  
gain and can drive 2V  
into a single or double back-ter-  
PIN  
P-P  
NAME  
FUNCTION  
minated load (150or 75, respectively) directly to  
MAꢁX.00 MAꢁX.0±  
ground. The output can be AC-coupled or DC-coupled.  
1, 7, 8,  
Substrate Ground. Connect  
to ground.  
SUBG  
YIN  
9, 16  
Applications Information  
2
3, 5  
4
2
3, 5  
4
Y Channel Input  
Input Considerations  
The MAX9500/MAX9501 inputs are normally DC-cou-  
pled. No AC-coupling capacitors are required because  
the input voltage range includes ground and extends  
up to 1.4V, allowing the MAX9500/MAX9501 to be  
directly connected to the output of a single-supply, cur-  
rent-output DAC without any external bias network.  
GND Ground  
PbIN Pb Channel Input  
6
6
PrIN  
PrOUT Pr Channel Output  
Positive Supply  
Pr Channel Input  
10  
10  
11, 13, 15 11, 13, 15  
V
CC  
12  
14  
12  
14  
PbOUT Pb Channel Output  
YOUT Y Channel Output  
The MAX9500/MAX9501 inputs can be AC-coupled.  
Use a fixed bias or video clamp to set the DC bias to  
ensure that the negative peak of the video signal is as  
near to 0V as possible. A video clamp is preferred  
because it limits the total swing of the signal and holds  
the blanking level constant.  
1, 7, 8,  
9, 16  
V
Negative Supply  
EE  
Detailed Description  
Output Considerations  
The MAX9500/MAX9501 outputs are normally DC-cou-  
pled, so no AC-coupling capacitors are required. For 0V  
input, the MAX9500 output voltage is 0.8V and the  
MAX9501 output voltage is 0V, typical. Connect the  
MAX9500/MAX9501 directly to a video cable with a 75Ω  
series back-termination resistor to match the impedance  
of the cable. Properly terminate the other end of the  
cable with a 75load. The MAX9500/MAX9501 outputs  
can sink and source current allowing the device to be  
AC-coupled. However, AC-coupling the outputs will  
degrade the tilt.  
The MAX9500/MAX9501 are fully integrated solutions  
for filtering and buffering HDTV signals. The MAX9500  
operates from a single +5V supply, while the MAX9501  
operates from dual 5V supplies. The MAX9500/  
MAX9501 interface between the current-output DACs of  
an ATSC, MPEG decoder, and the external connections  
of a television, set-top box, or DVD player. The  
MAX9500/MAX9501 feature a DC-coupled input buffer  
with very low input capacitance, highly selective low-  
pass filters to remove out-of-band noise, and a gain of  
+6dB in the output amplifier to drive 75back-termi-  
nated loads to unity gain. The DC-coupled input buffer  
eliminates sync crush, droop, and field tilt. The output  
load can be DC- or AC-coupled.  
Power-Supply Bypassing and Layout  
Considerations  
The MAX9500 operates from a single +5V supply while  
the MAX9501 operates from dual 5V supplies. Bypass  
Filter  
The MAX9500/MAX9501 reconstruction filters feature a  
6th-order elliptical response, providing a 1.5dB flat  
passband response up to 30MHz. The filter meets the  
selectivity requirements of the EIA-770.3/SMPTE 274M  
filtering template, achieving > 40dB attenuation at  
44.25MHz. The MAX9500/MAX9501 can also be used  
as anti-aliasing filters for HDTV component inputs.  
V
and V (MAX9501) to GND with a 0.1µF capacitor  
EE  
CC  
as close to the device as possible, and an additional  
1µF capacitor in parallel if any significant low-frequency  
disturbances are present in the vicinity of the  
MAX9500/MAX9501. Use an extensive ground plane to  
ensure optimum performance.  
The input and output termination resistors should be  
placed as close to the device as possible to avoid per-  
formance degradation in the frequency response.  
The PC board traces at the output should have 75Ω  
characteristic impedance when matching into a 75Ω  
characteristic impedance cable. Keep the board trace  
at the inputs and outputs of the MAX9500/MAX9501 as  
short as possible to minimize the parasitic stray capaci-  
tance and noise pickup.  
_______________________________________________________________________________________  
7
Triple-Channel HDTV Filters  
Pin Configurations  
TOP VIEW  
SUBG  
V
1
2
3
4
5
6
7
8
16 SUBG  
15  
14 YOUT  
13  
12 PbOUT  
11  
10 PrOUT  
SUBG  
EE  
1
2
3
4
5
6
7
8
16  
15  
V
V
EE  
YIN  
GND  
V
CC  
YIN  
GND  
PbIN  
GND  
PrIN  
CC  
14 YOUT  
13  
12 PbOUT  
11  
10 PrOUT  
MAX9500  
MAX9501  
PbIN  
GND  
V
CC  
V
CC  
PrIN  
V
CC  
V
CC  
SUBG  
SUBG  
V
EE  
EE  
9
V
9
V
EE  
SO/QSOP  
SO/QSOP  
Chip Information  
PROCESS: Bipolar  
8
_______________________________________________________________________________________  
Triple-Channel HDTV Filters  
Package Information  
(The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline information,  
go to www1maxim-ic1com/packages.)  
INCHES  
MILLIMETERS  
DIM  
A
MIN  
MAX  
0.069  
0.010  
0.019  
0.010  
MIN  
1.35  
0.10  
0.35  
0.19  
MAX  
1.75  
0.25  
0.49  
0.25  
0.053  
0.004  
0.014  
0.007  
N
A1  
B
C
e
0.050 BSC  
1.27 BSC  
E
0.150  
0.228  
0.016  
0.157  
0.244  
0.050  
3.80  
5.80  
0.40  
4.00  
6.20  
1.27  
E
H
H
L
VARIATIONS:  
INCHES  
1
MILLIMETERS  
DIM  
D
MIN  
MAX  
0.197  
0.344  
0.394  
MIN  
4.80  
8.55  
9.80  
MAX  
5.00  
N
8
MS012  
AA  
TOP VIEW  
0.189  
0.337  
0.386  
D
8.75 14  
10.00 16  
AB  
D
AC  
D
C
A
B
0-8∞  
e
A1  
L
FRONT VIEW  
SIDE VIEW  
PROPRIETARY INFORMATION  
TITLE:  
PACKAGE OUTLINE, .150" SOIC  
APPROVAL  
DOCUMENT CONTROL NO.  
REV.  
1
21-0041  
B
1
_______________________________________________________________________________________  
X
Triple-Channel HDTV Filters  
Package Information (continued)  
(The package drawing(s) in this data sheet may not reflect the most current specifications. For the latest package outline information,  
go to www1maxim-ic1com/packages.)  
PACKAGE OUTLINE, QSOP .150", .025" LEAD PITCH  
1
21-0055  
E
1
Maxim cannot assume responsibility for use of any circuitry other than circuitry entirely embodied in a Maxim product. No circuit patent licenses are  
implied. Maxim reserves the right to change the circuitry and specifications without notice at any time.  
±0 ____________________Maxim Integrated Products, 120 San Gabriel Drive, Sunnyvale, CA 94086 408-737-7600  
© 2005 Maxim Integrated Products  
Printed USA  
is a registered trademark of Maxim Integrated Products, Inc.  
Quijano  

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