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  9. Basler AVC63-4A User manual

Basler AVC63-4A User manual

BASLER ELECTRIC, BOX 269, HIGHLAND, IL 62249 PHONE 618/654-2341 FAX 618/654-2351
INTRODUCTION
The AVC63-4A Voltage Regulators are designed
for use on 50/60 Hz brushless generators. The
regulator includes frequency compensation,
overexcitation shutdown, a solid-state build-up
circuit, and EMI filtering.
ELECTRICAL SPECIFICATIONS
Dc Output Power:
4 Adc at 63 Vdc (252W) maximum continuous,
7 Adc at 100 Vdc (700W) forcing one minute
(at 120 Vac input).
9 Adc at 134 Vdc (1206W) forcing for 10
seconds (at 153 Vac input).
Exciter Field Dc Resistance:
15 ohms, minimum; 100 ohms maximum.
Ac Power Input:
Operating range: 95 Vac to 139 Vac, ±10%,
Single phase, 50/60 Hz, Burden: 450 VA.
Sensing Input:
95-139 Vac, ±10%, or 190-277 Vac, ±10%,
single phase, 50/60 Hz.
Regulation Accuracy:
Better than ±1.0% no load to full load.
Response Time:
Less than 1.5 cycles for ±5% change in sensing
voltage.
EMI Suppression:
Internal electromagnetic interference filter (EMI
filter).
Overexcitation Shutdown:
Field voltage shuts down after time delay if
exciter field voltage exceeds 95 Vdc, ±5% (See
Overexcitation Shutdown
for inverse time delay
curve and description).
Voltage Build-up:
Internal provisions for automatic voltage build-up
from generator residual voltages as low as 6
Vac.
Power Dissipation:
15 Watts maximum.
Terminations:
1/4 inch "Fast-On" terminals.
PHYSICAL SPECIFICATIONS
Operating Temperature:
-25 C (-13 F) to +60 C (+140 F).
Storage Temperature:
-40 C (-40 F) to +85 C (+185 F).
Vibration:
Withstands 1.2 Gs at 5 to 26 Hz; 0.036" double
amplitude at 27 to 52 Hz; and 5 Gs at 53 to 1000
Hz.
Shock:
Withstands up to 20 Gs in each of three mutually
perpendicular axes.
Weight:
10 oz. (0.28 kg) Net.
FUSES
Although the AVC63-4A has an internal fuse, it is
recommended that fuses with high interruption
capability be installed per the interconnection
diagram to protect wiring from faults before the
regulator. A spare fuse is included with the
AVC63-4A (internal fuse). It is mounted
"piggyback" to the orginal fuse. Refer to the
Outline Diagrams.
NOTE
Fuse must be installed per the
interconnection diagrams to avoid inter-
rupting the field current.
AVC63-4A Outline Diagram (Top View)
AVC63-4A Outline Diagram (Side View)
V/HZ "CORNER FREQUENCY" SELECTION
AND ADJUSTMENT
For 60 Hz systems, the regulator is preset at the
factory for a 55 Hz "corner frequency". For 50
Hz systems, a 45 Hz "corner frequency" is
achieved by connecting a jumper across
terminals Hz1 and Hz2.
The corner frequency can be adjusted by the UF
ADJ rheostat on the AVR. Clockwise rotation
results in raising the corner frequency (shifting
the curve to the right). To set the UF rheostat:
1. Adjust the UF Rheostat fully CCW.
2. Start the generator and set at rated voltage.
3. Adjust the generator frequency to the desired
kneepoint frequency.
4. Slowly adjust the UF ADJ rheostat clockwise
(CW) until the generator voltage just begins to
decrease.S
Frequency Compensation Curves
OVEREXCITATION SHUTDOWN
Overexcitation shutdown is included that
removes the output power if the exciter field
voltage exceeds 95 Vdc. If exciter field voltage
exceeds 95 Vdc ±5%, the regulator automatically
removes field current, after a time delay. The
time delay is inversely proportional to the
magnitude of the detected overvoltage condition.
At 134 Vdc, the field voltage is removed after
approximately 10 seconds. Refer to the
following figure.
Typical Time Delay Characteristic Curves
After output power is removed, the regulator can
be reset by decreasing the input voltage to less
than 6 Vac for a minimum of 2 seconds; this may
be accomplished by stopping the prime mover or
by interrupting the regulator input with a reset
switch.
STABILITY ADJUST RHEOSTAT (STAB)
An internal screwdriver adjustable potentiometer
provides adjustment to the response rate of the
generator output voltage to a change in load.
Clockwise rotation of this adjustment provides an
increase in the response time and therefore
decreases the amount of voltage overshoot
(increased stability). Counter-clockwise rotation
of this adjustment provides a decrease in the re-
sponse time (faster response time) and therefore
increases the amount of voltage overshoot
(decreased stability).
OPERATION
The following system operation procedures
provide instructions for adjusting the AVC63-4A
voltage regulator. Symptoms resulting from a
CONFIDENTIAL INFORMATION
OF BASLER ELECTRIC COMPANY, HIGHLAND, IL.
IT IS LOANED FOR CONFIDENTIAL USE, SUBJECT
TO RETURN ON REQUEST, AND WITH THE
MUTUAL UNDERSTANDING THAT IT WILL NOT BE
USED IN ANY MANNER DETRIMENTAL TO THE
INTEREST OF BASLER ELECTRIC COMPANY.
Publication:
9 2858 00 990
© 1997, Basler Electric Co., Highland, IL 62249
First Printing June 1994
Revision: D September 1997
ECA: 16300
INSTRUCTION MANUAL
FOR
VOLTAGE REGULATOR
Model: AVC63-4A
Part Number: 9 2858 00 100
faulty regulator and certain generator system
problems are included, together with suggested remedies. Complete the following steps before proceeding
with the system start-up.
CAUTION
Meggers and high potential test equipment
must not be used. Incorrect use of such
equipment could damage the
semiconductors contained in the regulator.
PRELIMINARY SET-UP
1. Verify that the voltage regulator specifications
conform with the generator system
requirements.
2. Ensure that the regulator wires are as follows:
a) If the remote voltage adjust rheostat is not
to be connected, ensure terminals 6 and 7
are shorted with a jumper.
b) If a 55 Hz "corner frequency" for 60 Hz
systems is desired, ensure that the Hz1
and Hz2 terminals are open. If a 45 Hz
"corner frequency" for 50 Hz systems is
desired, ensure that the Hz1 and Hz2
terminals are shorted together with a
jumper.
c) For 120 V nominal sensing, ensure that
terminals V1 and V2 are not connected.
For 240 V sensing, ensure that terminals
V1 and V2 are connnected together.
3. Ensure the voltage regulator is correctly
connected to the generator system.
4. Install the fuses as described in
Fuses
.
5. Set the regulator VAR and external VAR (if
used) as follows:
Switch Initial Setting
Regulator VAR Fully CCW
Remote VAR Centered
SYSTEM START-UP
1. Perform preliminary set-up as described in
the above paragraphs.
NOTE
All voltage readings are to be taken with
an average reading voltmeter.
2. Start prime mover and bring up to rated
speed.
RESULT: Voltage should build up. If not,
perform Field Flashing.
3. Slowly adjust the regulator VAR CW until the
generator output voltage reaches the nominal
value. If used, adjust the remote VAR to set
the generator voltage to the exact value
desired.
RESULT: Voltage should build up to rated
value. If voltage does not build up to rated
value, check generator for short or excessive
load.
4. Check regulator under normal operating and
loading conditions.
RESULT: Voltage regulation should be better
than ±1.0% no-load to full-load. If regulation is
not within this range, perform the following steps:
1. Voltage reduction under load may be due to
speed change from no load to full load,
causing the frequency compensation (V/Hz)
circuit to reduce voltage at lower frequencies.
2.Replace voltage regulator.
OPERATIONAL TEST
1. Connect the test setup as shown in the
following figure,
Operational Test
. Do not
apply power. Ensure that the light bulb is
rated for 120 V and is less than 100 W.
2. Adjust the regulator VAR and/or remote VAR,
and the STABILITY Adjust to maximum
CCW.
3. Apply 120 V, 50/60 Hz power to the regulator.
The light bulb should illuminate.
4. Slowly adjust the regulator VAR control CW.
At the regulation point, the light bulb should
extinquish. Small adjustments above and below
this level should cause the light bulb to go off
and on. Note that the light bulb goes on and off
rapidly.
5. Rotate the STABILITY ADJ fully CW. Now
adjust the regulator VAR above and below the
regulation point. The light bulb should still go
off and on, but the transition from off to on
(and vice versa) should be much slower than
in the paragraph above.
The following notes (∆) apply to the intercon-
nection diagrams:
1. If external pot is not used, short terminals 6
and 7.
2. Short terminals Hz1 and Hz2 and leave open
for 60 Hz.
3. Item not supplied by Basler Electric.
4. For 120 V Nominal sensing, make no
connection to terminals V1 and V2.
For 240 V Nominal sensing, short terminals
V1 and V2 together.
5. Select fuses with high interrupting capacity.
1
2
5
8
11
4
7
10
12
9
6
3
FIELD
EXC.
EXCITATION
ON-OFF SWITCH
(IF USED)
120V
7A
N
C
B
A
CW
2W
10K
EXTERNAL
VOLT. ADJ.
RHEOSTAT
3
5
3
421
3
76Hz2Hz1E1V2V1E343F-F+
AVC63-4A
D2619-16
08-22-97
Interconnection Diagram, 277/480 V Nominal, 3-Phase, 4-Wire, Wye
Connection
64 F+F-3
AVC63-4A
120 V
LIGHT
BULB
REMOTE
VAR
(IF USED)
120 VAC, 50/60 HZ
120 V
5 A
1
NOTE:
1IF GLASS TYPE FUSE IS USED,
ENCLOSE FOR SAFETY.
7E1 E3
D2619-15
08-22-97
Operational Test
3
A
B
C
N
17
104
12611
52
8
3
9
FIELD
EXC. (IF USED)
ON-OFF SWITCH
EXCITATION
7A
120V 5
3
RHEOSTAT
VOLT. ADJ.
EXTERNAL
10K
2W
CW
1
3
2
4
76Hz2Hz1E1V2V1E3
4
3F-F+
AVC63-4A
D2619-17
08-22-97
Interconnection Diagram, 120/208 V Nominal, 3-Phase, 4-Wire, Wye
Connection
3
1
76Hz2Hz1E1V2V1E343F-F+
L2
N
L1
12 34
AVC63-4A
EXC.
FIELD
EXCITATION
ON-OFF SWITCH
(IF USED)
120V
7A
EXTERNAL
VOLT. ADJ.
RHEOSTAT
10K
2W
CW
D2619-20
08-22-97
3
3
542
Interconnection Diagram, 120/240 V Nominal, 1-Phase, 3-Wire

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