AD5930YRUZ Analog Devices Inc, AD5930YRUZ Datasheet - Page 16

IC GEN PROG FREQ BURST 20TSSOP

AD5930YRUZ

Manufacturer Part Number
AD5930YRUZ
Description
IC GEN PROG FREQ BURST 20TSSOP
Manufacturer
Analog Devices Inc
Datasheet

Specifications of AD5930YRUZ

Resolution (bits)
10 b
Master Fclk
50MHz
Tuning Word Width (bits)
24 b
Voltage - Supply
2.3 V ~ 5.5 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
20-TSSOP
Synthesizer Type
Frequency
Frequency
25MHz
Supply Voltage Range
2.3V To 5.5V
Supply Current
2.4mA
Operating Temperature Range
-40°C To +105°C
Digital Ic Case Style
TSSOP
No. Of Pins
20
Pin Count
20
Screening Level
Automotive
Package Type
TSSOP
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Lead Free Status / RoHS Status
Lead free / RoHS Compliant, Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
AD5930YRUZ
Manufacturer:
Intel
Quantity:
33
AD5930
THEORY OF OPERATION
The AD5930 is a general-purpose synthesized waveform
generator capable of providing digitally programmable
waveform sequences in both the frequency and time domain.
The device contains embedded digital processing to provide a
repetitive sweep of a user programmable frequency profile
allowing enhanced frequency control. Because the device is pre-
programmable, it eliminates continuous write cycles from a
DSP/μcontroller in generating a particular waveform.
THE FREQUENCY PROFILE
The frequency profile is defined by the start frequency (F
the frequency increment (Δf) and the number of increments
per sweep (N
increments, t
automatically determined by the device (auto-increment mode),
or externally controlled via a hardware pin (external increment
mode). For automatic update, the interval profile can either be
for a fixed number of clock periods or for a fixed number of
output waveform cycles.
In the auto-increment mode, a single pulse at the CTRL pin starts
and executes the frequency sweep. In the external increment
mode, the CTRL pin also starts the sweep, but the frequency
increment interval is determined by the time interval between
sequential 0/1 transitions on the CTRL pin. Furthermore, the
CTRL pin can be used to directly control the burst profile, where
during the input high time, the output waveform is present, and
during the input low time, the output is reset to midscale.
The frequency profile can be swept in two different modes: saw
sweep or triangular (up/down) sweep.
Saw-Sweep Mode
In the case of a saw sweep, the AD5930 repeatedly
sweeps between sweep start to sweep end, that is, from
F
and then returns directly to F
This gives a saw-sweep cycle time of
MIDSCALE
START
F
START
F
(N
incrementally to
START
INCR
+ N
+ 1) × t
INT
INCR
INCR
, is either user programmable with the interval
). The increment interval between frequency
F
START
× Δf
INT
Figure 31. Saw-Sweep Profile
START
F
START
to begin again (see Figure 31).
+ ∆F
F
START
+ N
INCR
× ∆F
START
Rev. 0 | Page 16 of 28
),
Triangular-Sweep Mode
In the case of a triangular sweep, the AD5930 repeatedly
sweeps between sweep start to sweep end, that is, from F
incrementally to
and then returns to F
The triangular-sweep cycle time is given by
MIDSCALE
OUTPUT MODES
The AD5930 offers two possible output modes: continuous
output mode and burst output mode. Both of these modes are
illustrated in Figure 33.
Continuous Output Mode
In this mode, each frequency of the sweep is available for the
length of time programmed into the time interval (t
This means the frequency swept output signal is continuously
available, and is therefore phase continuous at all frequency
increments.
To set up the AD5930 in continuous mode, the CW/BURST bit
(D7) in the control register must be set to 0. See the Activating
and Controlling the Sweep section for more details.
Burst Output Mode
In this mode, the AD5930 provides a programmable burst
of the waveform output for a fixed length of time (T
within the programmed increment interval (t
the remainder of the t
scale and remains there until the next frequency increment.
CONTINUOUS
F
F
(1 + (2 × N
START
START
BURST
MODE
MODE
Figure 33. Continuous Mode and Burst Mode of the AD5930
+ N
F
INCR
START
T
INCR
BURST
Figure 32. Triangular-Sweep Profile
× Δf
t
)) × t
INT
START
F
INT
START
in a decremented manner (see Figure 32).
INT
interval, the output is reset to mid-
NUMBER STEP CHANGES
+ ∆F
1
F
START
+ N
INCR
× ∆F
F
START
2
+ ∆F
INT
). Then for
F
START
INT
BURST
) register.
)
START

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