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LT5503EFE-TRPBF データシートの表示(PDF) - Linear Technology

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LT5503EFE-TRPBF
Linear
Linear Technology Linear
LT5503EFE-TRPBF Datasheet PDF : 20 Pages
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LT5503
APPLICATIO S I FOR ATIO
AC-Coupled Baseband. Figure 3 shows the simplified
circuit schematic of a high-pass AC-coupled baseband
interface.
CCPL
I
CCPL
IB
CCPL
Q
CCPL
QB
BI+ LT5503
18k 0.8pF
BI
0.8pF
BQ+
0.8pF
18k
BQ
0.8pF
5505 F03
Figure 3. AC-Coupled Baseband Interface
With approximately 18k of differential input resistance,
the suggested minimum AC-coupling capacitor can be
determined using the following equation:
C CPL
=
1
(18 •103
π
fC )
where fC is the 3dB cut-off frequency of the baseband input
signal.
A larger capacitor may be used where the settling time of
charging and discharging the AC-coupling capacitor is not
critical.
DC-Coupled Baseband. The baseband inputs’ internal bias
voltage can be overdriven with an external bias circuit.
This facilitates direct interfacing to a D/A converter for
faster transient response. In this case, the LT5503’s
baseband inputs are DC biased by the converter. The
optimal VBIAS is 1.4V, independent of VCC. In general, the
maximum VBIAS should be less than VCC – 0.4V. The DC
load on each converter output can be approximated using
the following equation where IINPUT is the current flowing
into a modulator input:
IINPUT
=
VBIAS 1.4V
9kΩ
14
Figure 4 shows a simplified circuit schematic for interfac-
ing the LT5503’s baseband inputs to the outputs of a D/A
converter. OIP and OIN are the positive and negative
baseband outputs, respectively, of the converter’s
I-channel. Similarly, OQP and OQN are the positive and
negative baseband outputs, respectively, of the converter’s
Q-channel.
OIP
OIN
D/A
OQP
OQN
IINPUT BI+ LT5503
IINPUT BI
18k 0.8pF
IINPUT BQ+
0.8pF
IINPUT BQ
0.8pF
18k
0.8pF
5505 F04
Figure 4. DC-Coupled Baseband Interface
Modulator RF Input (MODRFIN)
The modulator RF input buffer is driven single-ended. An
internal active balun circuit produces balanced signals to
drive the integrated phase shifter. Limiters following the
phase shifter output accommodate a wide range of
MODRFIN power, resulting in minimal degradation of
modulation gain/phase accuracy performance or carrier
feedthrough. This pin is easily matched to a 50Ω source
with the simple lowpass network shown in Figure 1. This
pin is internally biased, therefore an AC-coupling capaci-
tor is required.
Modulator VGA (Variable Gain Amp)
The VGA has two digital selection lines to provide a
nominal 0dB, 4.5dB, 9dB and 13.5dB attenuation from the
maximum modulator output power setting. The logic table
is shown below:
Attenuation
GC1
Low
High
Low
0dB
4.5dB
GC2
High
9dB
13.5dB
5503f

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