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THS1050IPHP Datasheet, PDF (16/21 Pages) Texas Instruments – 10-BIT 50 MSPS IF SAMPLING COMMUNICATIONS
THS1050
10-BIT 50 MSPS IF SAMPLING COMMUNICATIONS
ANALOG-TO-DIGITAL CONVERTER
SLAS278A – APRIL 2000 – REVISED MARCH 2001
APPLICATION INFORMATION
using the analog input
The THS1050 obtains optimum performance when the analog signal inputs are driven differentially. The circuit
below shows the optimum configuration, see Figure 22. The signal is fed to the primary of an RF transformer.
Since the input signal must be biased around the common mode voltage of the internal circuitry, the common
mode (VCM) reference from the THS1050 is connected to the center-tap of the secondary. To ensure a steady
low noise VCM reference, the best performance is obtained when the VCM output is connected to ground with
a 0.1-µF and 0.01-µF low inductance capacitor.
ac Signal Source
R0
Z0 = 50 Ω
1:1
50 Ω
T1-1T
VIN+
R
THS1050
50 Ω
VIN–
VCM
0.01 µF
0.1 µF
Figure 22. Driving the THS1050 Analog Input With Impedance Matched Transmission Line
When it is necessary to buffer or apply a gain to the incoming analog signal, it is also possible to combine a
single-ended amplifier with an RF transformer as shown in Figure 23. For this application, a wide-band current
mode feedback amplifier such as the THS3001 is best. The noninverting input to the op-amps is terminated with
a resistor having an impedance equal to the characteristic impedance of the wave-guide or trace that sources
the IF input signal. The single ended output allows the use of standard passive filters between the amplifier
output and the primary. In this case, the SFDR of the op amp is not as critical as that of the A/D converter. While
harmonics generated from within the A/D converter fold back into the first Nyquist zone, harmonics generated
externally in the op amps can be filtered out with passive filters.
1 kΩ
IF Input
RT
1 kΩ
_
10 Ω
+
THS3001
Impedance Ratio = 1:n
BPF
VIN+
THS1050
VIN–
VCM
0.1 µF
0.01 µF
Figure 23. IF Input Buffered With THS3001 Op-Amp
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