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DDC RDC-19220 Series User Manual

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5
Data Device Corporation
www.ddc-web.com
RDC-19220 SERIES
P-05/05-0
er with the velocity integrator forms a type II servo feedback loop.
A lead in the frequency response is introduced to stabilize the
loop and another lag at higher frequency is introduced to reduce
the gain and ripple at the carrier frequency and above. The set-
tings of the various error processor gains and break frequencies
are done with external resistors and capacitors so that the con-
verter loop dynamics can be easily controlled by the user.
TRANSFER FUNCTION AND BODE PLOT
The dynamic performance of the converter can be determined from
its Transfer Function Block Diagrams and its Bode Plots (open and
closed loop). These are shown in FIGURES 2, 3, and 4.
The open loop transfer function is as follows:
where A is the gain coefficient and A
2
= A
1
A
2
and B is the frequency of lead compensation.
The components of gain coefficient are error gradient, integrator
gain and VCO gain. These can be broken down as follows:
R
V, RB, and CBW are selected by the user to set velocity scaling
and bandwidth.
- Error Gradient = 0.011 volts per LSB (CT + Error Amp + Demod
with 2 Vrms input)
- Integrator Gain = volts per second per volt
- VCO Gain = LSBs per second per volt
where: Cs = 10 pF
Fs = 67 kHz when Rs = 30 k
Fs = 100 kHz when Rs = 20 k
Fs = 134 kHz when Rs = 15 k
C
VCO = 50 pF
Cs Fs
1.1 C
BW
1
1.25 R
V CVCO
2 S
A +1
( )
B
2 S
S
+1
( )
10B
Open Loop Transfer Function =
ERROR PROCESSOR
RESOLVER
INPUT
(θ)
VELOCITY
OUT
DIGITAL
POSITION
OUT (φ)
VCO
CT
S
A + 1
1
B
S
S + 1
10B
H = 1
+
-
e
A
2
S
-12 db/oct
BA
2A
-6 db/oct
10B
ω (rad/sec)
2A
2 2 A
ω (rad/sec)
f = BW (Hz) =
BW
2 A
π
CLOSED LOOP
(B = A/2)
GAIN = 0.4
GAIN = 4
(CRITICALLY DAMPED)
OPEN LOOP
FIGURE 3. TRANSFER FUNCTION
BLOCK DIAGRAM #2
FIGURE 4. BODE PLOTS
GENERAL SETUP CONSIDERATIONS
Note: For detailed application and technical information see the RDC-19220 & RD-
19230 series converter applications manual (Document number MN-19220XX-001)
which is available for download from the DDC web site @ www.ddc-web.com.
DDC has external component selection software which consid-
ers all the criteria below, and in a simple fashion, asks the key
parameters (carrier frequency, resolution, bandwidth, and track-
ing rate) to derive the external component value.
The following recommendations should be considered when
installing the RDC-19220 Series R/D converters:
1) In setting the bandwidth (BW) and Tracking Rate (TR) (select-
ing five external components), the system requirements need
to be considered. For greatest noise immunity, select the min-
imum BW and TR the system will allow.
2) Power supplies are ±5 V dc. For lowest noise performance it
is recommended that a 0.1 µF or larger cap be connected
from each supply to ground near the converter package.
When using a +5v and -5v supply to power the converter, pins
22, 23, 25, 26 must be no connection.
3) This converter has 2 internal ground planes, which reduce
noise to the analog input due to digital ground currents. The
resolver inputs and velocity output are referenced to AGND.
The digital outputs and inputs are referenced to GND. The
AGND and GND pins must be tied together as close to the
converter package as possible. Not shorting these pins
together as close to the converter package as possible will
cause unstable converter results.
4) The BIT
output which is active low is activated by an error of
approximately 100 LSBs. During normal operation for step
inputs or on power up, a large error can exist.
5) This device has several high impedance amplifier inputs (+C,
-C, +S, -S, -VCO and -VSUM). These nodes are sensitive to

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DDC RDC-19220 Series Specifications

General IconGeneral
BrandDDC
ModelRDC-19220 Series
CategoryMedia Converter
LanguageEnglish