AD9773 Analog Devices, AD9773 Datasheet - Page 25

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AD9773

Manufacturer Part Number
AD9773
Description
Manufacturer
Analog Devices
Datasheet

Specifications of AD9773

Resolution (bits)
12bit
Dac Update Rate
400MSPS
Dac Settling Time
11ns
Max Pos Supply (v)
+3.5V
Single-supply
Yes
Dac Type
Current Out
Dac Input Format
Par

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NOTES ON SERIAL PORT OPERATION
The AD9773 serial port configuration bits reside in Bits 6 and 7
of Register Address 00h. It is important to note that the config-
uration changes immediately upon writing to the last bit of the
register. For multibyte transfers, writing to this register can
occur during the middle of the communication cycle. Care
must be taken to compensate for this new configuration for the
remaining bytes of the current communication cycle.
The same considerations apply to setting the reset bit in
Register Address 00h. All other registers are set to their default
values, but the software reset does not affect the bits in
Register Address 00h.
It is recommended to use only single-byte transfers when changing
serial port configurations or initiating a software reset.
A write to Bit 1, Bit 2, and Bit 3 of Address 00h with the same
logic levels as for Bit 7, Bit 6, and Bit 5 (bit pattern: XY1001YX
binary) allows the user to reprogram a lost serial port config-
uration and to reset the registers to their default values. A
second write to Address 00h with reset bit low and serial port
configuration as previously specified (XY) reprograms the OSC
IN multiplier setting. A changed f
a maximum of 200 f
DAC OPERATION
The dual 12-bit DAC output of the AD9773, along with the
reference circuitry, gain, and offset registers, is shown in Figure 37
and Figure 38
simply overdriving the internal reference with the external
reference. Referring to the transfer functions in Equation 1, a
reference current is set by the internal 1.2 V reference, the
external R
The fine gain DAC subtracts a small amount from this and the
result is input to IDAC and QDAC, where it is scaled by an
amount equal to 1024/24. Figure 39 and Figure 40 show the
scaling effect of the coarse and fine adjust DACs. IDAC and
QDAC are PMOS current source arrays, segmented in a 5-4-3
configuration. The five most significant bits control an array of
31 current sources. The next four bits consist of 15 current
sources whose values are all equal to 1/16 of an MSB current
source. The three LSBs are binary weighted fractions of the
middle bits’ current sources. All current sources are switched to
either I
The fine adjustment of the gain of each channel allows for
improved balance of QAM modulated signals, resulting in
improved modulation accuracy and image rejection. In the
Interfacing the AD9773 with the AD8345 Quadrature
Modulator section, the performance data shows to what degree
image rejection can be improved when the AD9773 is used with
an AD8345 quadrature modulator from Analog Devices Inc.
OUTA
SET
or I
resistor, and the values in the coarse gain register.
.
Note that an external reference can be used by
OUTB
, depending on the input code.
MCLK
cycles (equals wake-up time).
SYSCLK
frequency is stable after
Rev. D | Page 25 of 60
REGISTERS
REFIO
CONTROL
1.2VREF
GAIN
0.1μF
25
20
15
10
5
0
0
Figure 37. DAC Outputs, Reference Current Scaling,
R
SET
Figure 38. Internal Reference Equivalent Circuit
FSADJ1
1
Figure 39. Coarse Gain Effect on I
GAIN
GAIN
FINE
FINE
DAC
DAC
(ASSUMING R
5
COARSE GAIN REGISTER CODE
84μA
0.7V
R
and Gain/Offset Adjust
SET
COARSE
2R MODE
GAIN
FSADJ2
DAC
2
AVDD
7kΩ
SET
10
COARSE
1, R
REGISTERS
GAIN
DAC
CONTROL
REFIO
1R MODE
GAIN
SET
2 = 1.9k Ω )
REGISTERS
REGISTERS
IDAC
QDAC
CONTROL
CONTROL
FULLSCALE
15
OFFSET
OFFSET
OFFSET
OFFSET
DAC
DAC
AD9773
20
I
I
I
I
OUTA1
OUTB1
OUTA2
OUTB2

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