Burr Brown MPC104AU, MPC104AU-2K5, MPC104AP Datasheet

©
1994 Burr-Brown Corporation PDS-1230C Printed in U.S.A. July, 1994
FEATURES
BANDWIDTH: 210MHz (1.4Vp-p)
LOW INTERCHANNEL CROSSTALK:
–79dB (30MHz, SO); –77dB (30MHz, DIP)
LOW SWITCHING TRANSIENTS:
+13mV/–4mV
ERRORS: 0.03%, 0.01
°
LOW QUIESCENT CURRENT:
One Channel Selected:
±4.6mA
No Channel Selected:
±120µA
APPLICATIONS
VIDEO ROUTING AND MULTIPLEXING
(CROSSPOINTS)
RADAR SYSTEMS
DATA ACQUISITION
INFORMATION TERMINALS
SATELLITE OR RADIO LINK IF ROUTING
The MPC104 consists of two identical monolithic, integrated, open-loop buffer amplifiers, which are connected internally at the output. The bipolar comple­mentary buffers form a unidirectional transmission path and offer extremely high output-to-input isola­tion. The MPC104 multiplexer enables the user to connect one of two input signals to the output. The output of the multiplexer is in a high-impedance state when no channel is selected. When one channel is selected with a digital “1” at the corresponding SEL input, the component acts as a buffer with high input impedance and low output impedance.
The wide bandwidth of over 210MHz at 1.4Vp-p signal level, high linearity and low distortion, and low input voltage noise of 5nV/Hz make this crosspoint switch suitable for RF and video applications. All performance is specified with ±5V supply voltage, which reduces power consumption in comparison with ±15V designs. The multiplexer is available in a space­saving 8-pin SO and DIP packages. Both are designed and specified for operation over the industrial tem­perature range (–40°C to +85°C.)
Wide-Bandwidth
2 x 1 VIDEO MULTIPLEXER
DESCRIPTION
The MPC104 is a wide-bandwidth, 2-to-1 channel video signal multiplexer, which can be used in a wide variety of applications.
It was designed for wide-bandwidth systems, includ­ing high-definition television and broadcast equip­ment. Although it is primarily used to route video signals, the harmonic and dynamic attributes of the MPC104 also make it appropriate for other analog signal routing applications such as radar, communica­tions, computer graphics, and data acquisition sys­tems.
IN
1
+1
V
OUT
SEL
1
IN
2
+1
SEL
2
TRUTH TABLE
SEL
1
SEL
2
V
OUT
0 0 HI-Z 1 0IN
1
0 1IN
2
®
MPC104
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MPC104
MPC104
®
MPC104
2
SPECIFICATIONS–DC CHARACTERISTICS
At VCC = ±5VDC, RL = 10k, RIN = 100, R
SOURCE
= 50, and TA = +25°C, unless otherwise noted.
The information provided herein is believed to be reliable; however, BURR-BROWN assumes no responsibility for inaccuracies or omissions. BURR-BROWN assumes no responsibility for the use of this information, and all use of such information shall be entirely at the user’s own risk. Prices and specifications are subject to change without notice. No patent rights or licenses to any of the circuits described herein are implied or granted to any third party. BURR-BROWN does not authorize or warrant any BURR-BROWN product for use in life support devices and/or systems.
MPC104AP, AU
PARAMETER CONDITIONS MIN TYP MAX UNITS INPUT OFFSET VOLTAGE
Initial 14 ±30 mV vs Temperature 60 µV/°C vs Supply (Tracking) V
CC
= ±4.5V to ±5.5V –40 –80 dB
vs Supply (Non-tracking) V
CC
= +4.5V to +5.5V –50 dB
vs Supply (Non-tracking) V
CC
= –4.5V to –5.5V –50 dB
Initial Matching All Buffers 3 mV
INPUT BIAS CURRENT
Initial 5 ±10 µA vs Temperature 20 nA/°C vs Supply (Tracking) V
CC
= ±4.5V to ±5.5V ±710 nA/V
vs Supply (Non-tracking) V
CC
= +4.5V to +5.5V 0.26 µA/V
vs Supply (Non-tracking) V
CC
= –4.5V to –5.5V 1.7 µA/V
INPUT IMPEDANCE
Resistance Channel On 0.88 M Capacitance Channel On 1.0 pF Capacitance Channel Off 1.0 pF
INPUT NOISE
Voltage Noise Density f
OUT
= 20kHz to 10MHz 5 nV/Hz
Signal-to-Noise Ratio S/N = 0.7/V
N
5MHz 96 dB
INPUT VOLTAGE RANGE Gain Error 10% ±3.6 V TRANSFER CHARACTERISTICS
Voltage Gain R
L
= 1k, VIN = ±2V 0.982 V/V
R
L
= 10k, VIN = ±2.8V 0.98 0.992 V/V
RATED OUTPUT
Voltage V
IN
= ±3V ±2.8 ±2.97 V Resistance One Channel Selected 12.5 Resistance No Channel Selected 900 M Capacitance No Channel Selected 1.2 pF
CHANNEL SELECTION INPUTS
Logic 1 Voltage +2 V
CC
+0.6 V Logic 0 Voltage +0.8 V Logic 1 Current V
SEL
= 5.0V 75 100 125 µA
Logic 0 Current V
SEL
= 0.8V 0.002 5 µA
SWITCHING CHARACTERISTICS V
I
= –0.3V to +0.7V, f = 5MHz
SEL to Channel ON Time 90% Point of V
OUT
= 1Vp-p 0.13 µs
SEL to Channel OFF Time 10% Point of V
OUT
= 1Vp-p 0.17 µs Switching Transient, Positive (Measured While Switching +13 mV Switching Transient, Negative Between Two Grounded Channels) –4 mV
POWER SUPPLY
Rated Voltage ±5V Derated Performance ±4.5 ±5.5 V Quiescent Current One Channel Selected, Over Temperature ±4.6 ±5.3 mA
No Channel Selected, Over Temperature ±120 ±175 µA
Rejection Ratio –80 dB
®
MPC104
3
SPECIFICATIONS– AC CHARACTERISTICS
At VCC = ±5VDC, RL = 10k, RIN = 100, R
SOURCE
= 50, and TA = +25°C, unless otherwise noted.
MPC104AP, AU
PARAMETER CONDITIONS MIN TYP MAX UNITS LARGE SIGNAL BANDWIDTH (–3dB) V
OUT
= 5.0Vp-p, C
OUT
= 1pF 55 MHz
V
OUT
= 2.8Vp-p, C
OUT
= 1pF 101 MHz
V
OUT
= 1.4Vp-p, C
OUT
= 1pF 210 MHz
SMALL SIGNAL BANDWIDTH V
OUT
= 0.2Vp-p, C
OUT
= 1pF 590 MHz
GROUP DELAY TIME 550 ps DIFFERENTIAL GAIN f = 4.43MHz, V
IN
= 0.3Vp-p
VDC = 0 to 0.7V 0.03 %
DIFFERENTIAL PHASE f = 4.43MHz, V
IN
= 0.3Vp-p
VDC = 0 to 0.7V 0.01 Degrees
GAIN FLATNESS PEAKING V
OUT
= 0.2Vp-p, DC to 30MHz 0.05 dB
V
OUT
= 0.2Vp-p, DC to 100MHz 0.07 dB
HARMONIC DISTORTION f = 30MHz, V
OUT
= 1.4Vp-p Second Harmonic –63 dBc Third Harmonic –65 dBc
CROSSTALK V
IN
= 1.4Vp-p
MPC104AP Channel-to-Channel f = 5MHz, –90 dB
f = 30MHz, –77 dB
Off Isolation f = 5MHz, –93 dB
f = 30MHz, –81 dB
MPC104AU Channel-to-Channel f = 5MHz, –95 dB
f = 30MHz, –79 dB
Off Isolation f = 5MHz, –93 dB
f = 30MHz –86 dB
RISE/FALL TIME V
OUT
= 1.4Vp-p, Step 10% to 90% C
OUT
= 1pF, R
OUT
= 22 2.3 ns
SLEW RATE V
OUT
= 1.4Vp-p
C
OUT
= 1pF 500 V/µs
C
OUT
= 22pF 360 V/µs
C
OUT
= 47pF 260 V/µs
®
MPC104
4
PIN DESCRIPTION
IN
1
, IN
2
Analog Input Channels
GND Analog Input Shielding Grounds,
Connect to System Ground
SEL
1
, SEL
2
Channel Selection Inputs
V
OUT
Analog Output; tracks selected channel
–V
CC
Negative Supply Voltage; typical –5VDC
+V
CC
Positive Supply Voltage; typical +5VDC
CONNECTION DIAGRAM
PIN DESCRIPTION
Top View DIP/SO-8
ABSOLUTE MAXIMUM RATINGS
Power Supply Voltage (±VCC) .........................................................±6VDC
Analog Input Voltage (IN
1
through IN2) ...................................±VCC, ±0.7V
Operating Temperature..................................................... –40°C to +85°C
Storage Temperature...................................................... –40°C to +125°C
Output Current .................................................................................. ±6mA
Junction Temperature .................................................................... +175°C
Lead Temperature (soldering, 10s)................................................ +300°C
Digital Input Voltages (SEL
1
through SEL2) .............. –0.5V to +VCC +0.7V
PACKAGE DRAWING TEMPERATURE
PRODUCT PACKAGE NUMBER
(1)
RANGE
MPC104AP 8-Pin Plastic DIP 006 –40°C to +85°C MPC104AU SO-8 Surface Mount 182 –40°C to +85°C
NOTE: (1) For detailed drawing and dimension table, please see end of data sheet, or Appendix C of Burr-Brown IC Data Book.
PACKAGE/ORDERING INFORMATION
IN
1
GND +V
CC
IN
2
SEL
1
–V
CC
V
OUT
SEL
2
1 2 3 4
8 7 6 5
+1
+1
ELECTROSTATIC DISCHARGE SENSITIVITY
This integrated circuit can be damaged by ESD. Burr-Brown recommends that all integrated circuits be handled with appropriate precautions. Failure to observe proper handling and installation procedures can cause damage.
ESD damage can range from subtle performance degrada­tion to complete device failure. Precision integrated circuits may be more susceptible to damage because very small parametric changes could cause the device not to meet its published specifications.
®
MPC104
5
TYPICAL PERFORMANCE CURVES
At VCC = ±5VDC, RL = 10k, RIN = 100, R
SOURCE
= 50, and TA = +25°C, unless otherwise noted.
–40 –20 0 20 60 80 100
Temperature (°C)
18 16 14 12 10
8 6 4 2 0
Input Offset Voltage (mV)
INPUT OFFSET VOLTAGE vs TEMPERATURE
40
–40 –20 0 20 60 80 100
Temperature (°C)
Input Bias Current (µA)
INPUT BIAS CURRENT vs TEMPERATURE
40
7
6
5
4
3
2
1
0
10k 100k 1M 10M 100M 1G
Frequency (Hz)
100
1.0M
100k
10k
1k
Input Impedance ()
INPUT IMPEDANCE vs FREQUENCY
10k 100k 1M 10M 100M 1G
Frequency (Hz)
90 80 70
60 50 40
30
20
10
100
Output Impedance ()
OUTPUT IMPEDANCE vs FREQUENCY
–40 –20 0 20 60 80 100
Temperature (°C)
0
9 8 7 6 5 4 3 2 1
Supply Current (mA)
TOTAL POSITIVE QUIESCENT CURRENT
vs TEMPERATURE
40
One Channel Selected
–40 –20 0 20 60 80 100
Temperature (°C)
0
140
120
100
80
60
40
20
Supply Current (µA)
TOTAL POSITIVE QUIESCENT CURRENT
vs TEMPERATURE
40
No Channel Selected
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