This guide gives a brief introduction to the BOP 1KW-MG Power supply, shows simple load connections, and allows you to verify the power supply is working. The guide also shows you how to use the front panel controls to perform the most commonly
used functions.
ACCESSING MANUALS. First determine your Firmware Version (see below), then download the BOP 1KW-MG applica-
ble Operator’s Manual from
www.kepcopower.com/support/opmanls.htm#bop-1k. Refer to the BOP 1KW-MG Operator’s Manual for full specifications,
installation considerations and operating instructions, including. an Installation/Operation Summary which includes hyperlinked
references to detailed procedures, but which can be printed as a handy reference.The BOP 1KW-MG Operator’s Manual also
includes a full description of the digital interfaces and the SCPI command language.
FIRMWARE VERSION. Refer to www.kepcopower.com/support/bophifirm.htm to determine which firmware version is
installed.
ACCESSING DRIVERS. Drivers are accessed from www.kepcopower.com/drivers/drivers-dl3.htm.
The BOP 1KW-MG Series hereafter referred to as
BOP, are true 4-quadrant programmable voltage and
current power supplies, meaning they are capable of
both sourcing and sinking power (see Figure 1).
These bipolar power supplies pass smoothly
through zero without switching to provide true ± voltage and ± current. These BOP power supplies use
switch mode technology for low dissipation. A bidirectional, isolating, a-c input power factor correcting (PFC) circuit recuperates energy sinked from an
active load and sends it back into the line to maintain
low dissipation.
These BOP power supplies are controlled digitally
from a menu-driven front-panel keypad or one of the
standard remote digital interfaces (GPIB or RS 232)
to set voltage and current and the four protection
TABLE 1. BOP 1KW-MG MODEL PARAMETERS
d-c Output RangeClosed Loop GainOutput Impedance
Model
1000 WATT MODELS
BOP 6-125MG0 to ±60 to ±1250.612.50.051.5241150
BOP 10-100MG0 to ±100 to ±1001.010.00.12.0501100
BOP 10-75MG0 to ±100 to ±751.07.50.132.067976
BOP 20-50MG0 to ±200 to ±502.05.00.408.3200371
BOP 25-40MG0 to ±250 to ±402.54.00.6315.8313165
BOP 36-28MG0 to ±360 to ±283.62.81.3025640103
BOP 50-20MG0 to ±500 to ±205.02.02.5050125055
BOP 72-14MG0 to ±720 to ±147.21.45.14104257033
BOP 100-10MG0 to ±1000 to ±1010.01.010.0163500016
NOTE: When connecting active loads, the steady-state voltage of the active load must not exceed the maximum voltage rating of the
BOP. Otherwise the overvoltage protection will shut down the power supply.
Vol tag e
(V d-c)
Current
(A d-c)
Voltage
Channel
(V/V)
G
V
limits (+voltage, –voltage, +current and –current.) A
front panel rotary adjuster allows real-time adjustment of the output. A large LCD displays the mode
of operation, the settings, and the actual output voltage and current. Additionally, these BOP models
can be remotely controlled by an analog ±10V input
for the main channel (voltage or current), and a +1 to
+10V input for the limit channels.
BOP models are suitable for driving inductive loads
such as large magnets or motors, and for exercising
batteries. They are also suitable for characterizing
solar cell arrays, and powering many electrochemical reactions.
.
Current
Channel
(A/V)
G
I
Voltage Mode
(Series R - L)
R
d-c
(mOhms)
L
(µH)
Current Mode
(Parallel R - C)
R
d-c
(Ohms)
C
(µF)
II — UNPACKING.
This instrument has been thoroughly inspected and
tested prior to packing and is ready for operation.
After careful unpacking, inspect for shipping damage
before attempting to operate. Perform the “Preliminary Operational Check.” on page 5. If any indication
TABLE 2. EQUIPMENT SUPPLIED
ITEMFUNCTION
Source Power Entry mating connectorMates with source power entry connector 142-0381 (Kepco) (IEC 320)
PAR/SER CONTROL - IN
mating connector
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Line Cord (250V, 20A)Provides connection to a-c mains via Nema 6-20P connector.118-1087
Line Cord (250V, 20A)Provides connection to a-c mains via Nema L6-20P locking
type connector.
Mating Connector, TriggerMates with Trigger port.142-0527 (Kepco)
IEEE 1118 (BITBUS)
Mating connector
IEEE 488 Cable, (1 meter long) Connects BOP power supply to GPIB bus.SNC 488-1
IEEE 488 Cable, (2 meter long) Connects BOP power supply to GPIB bus.SNC 488-2
IEEE 488 Cable, (4 meter
longs)
Interconnection Kits for parallel/
series configurations.
RS 232 Cable KitContains RJ11 to RJ45 Patch cord, RJ 45 Patch cord, two RS
RS 232 Adapter (Male pins)Allows RS 232 port to be connected to DTE equipment. (Sup-
RS 232 Adapter (Female pins)Allows RS 232 port to be connected to a PC (personal com-
15-pin DSUB ConnectorMating connector for Analog input connector A2A5J6
IDC 6-pin connectorMating connector for RS-232 PORT, connector A1J5 and PRO-
IDC 8-pin plugMating connector for PAR/SER PROTECT PORT (IN and
SlidesAllows easy withdrawal of unit from rack (see Figure 1). (Model
Heat SinkProvides adequate cooling for calibration sense resistors.136-0451
Allows connection to IEEE 1118 (BITBUS) port.142-0485 (Kepco)
Connects BOP power supply to GPIB bus.SNC 488-4
Cables required to connect multiple BOP models in parallel,
series, or parallel/series configurations.
232 adapters, one with male pins to connect to DTE equipment
and one with female pins to connect to a PC (personal computer), two RS 232 Loop Back test Connectors (one 6-pin and
one 8-pin) to test RS 232 communication and aid in isolating
RS 232 communication problems.
plied in KIT 219-0436.)
puter). (Supplied in KIT 219-0436.)
Dsub 15 pin hood
Dsub 15 pin male
TECTION EXT. PORT, connector A2A5J7
OUT) connectors.
CS 04 includes slides, brackets, all mounting hardware and
installation instructions.)
PART NUMBER
118-1088
SP2501 (CUI Stack)
KMDLA-5P (Kycon Inc.)
See Operator’s Manual.
KIT 219-0436
142-0487
(L-COM RA098M)
142-0506
(L-COM RA098F)
108-0374
(Tyco-Amp 207470-1)
142-0449
(Amphenol 17S-DA15P)
142-0536
(Amphenol 5-555176-3)
142-0535
(Amphenol 5-555176-3)
CS 04
V — SAFETY. See Table 4
TABLE 4. SAFETY SYMBOLS
SYMBOLMEANING
CAUTION: RISK OF ELECTRIC SHOCK.
CAUTION: REFER TO REFERENCED PROCEDURE.
!
WARNINGINDICATES THE POSSIBILITY OF BODILY INJURY OR DEATH.
CAUTIONINDICATES THE POSSIBILITY OF EQUIPMENT DAMAGE.
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A simple operational check after unpacking and
before equipment installation is advisable to ascertain whether the power supply has suffered damage
resulting from shipping.
1. With POWER switch set to off position, connect
the power supply to source power (see “Input
Connections.” on page 5.
2. With no load connected, set POWER switch to
the ON position. Each time the unit is turned on
an internal self-test is performed. If all tests pass,
the unit goes into the default mode. If a failure
occurs, the failure is displayed. Figure 5 shows
the factory-configured power on defaults displayed on the LCD.
3. Connect a digital voltmeter (DVM) (resolution and
accuracy of 0.01% or better) to the OUT S and
COM S terminals at the rear panel terminal block.
4. Use the keypad to enter the rated maximum voltage of the power supply (e.g., enter 36 for a
model BOP 36-28MG) and press ENTER. If
STANDBY indicator is lit, press STANDBY key.
5. Verify DVM voltage reading agrees with programmed voltage within 0.03% of rated maximum
voltage and agrees with displayed voltage on
LCD within 0.05% of rated maximum voltage.
VII — INSTALLATION.
Install units either on a bench or in a 19 inch-wide
rack. For rack mounting: remove four feet first; rack
must provide support at the rear). Optional slides
may be used. Leave the front and rear panels clear
of obstructions to ensure adequate cooling. For parallel, series and master-slave configurations, refer to
the Operator’s Manual.
It is critical that configurations comprised of BOP,
load, and external programming devices, have a single earth-ground point. Observe the following caution and refer to the applicable BOP 1KW-MG
Operator Manual for earth-ground recommendations. Failure to observe this caution will void the
warranty!
INPUT CONNECTIONS. Source power is connected to the power supply via three-wire input
power using the source power mating connector
supplied (see Table 3). This power supply operates
from single phase a-c mains power (or between two
phases of 3-phase a-c mains power), 230V, 50/60Hz
nominal (range: 176 - 264V, 47-63Hz) without any
need for range selection. The user must provide a
properly sized and rated mains lead (line cord) and
service with a current rating compatible with the
anticipated input current. Line cords available as
accessories are listed in Table 3. Plug the source
power connector into the source power inlet connector at the rear panel.
LOAD CONNECTIONS.
quire wires that are properly rated for the nominal output current of the unit.
PUT and COMMON power terminals on the rear
panel (see Figure 3). OUT S and COM S terminal of
the Monitor and Sensing Terminal block are for connection of remote sensing leads (after removing the
factory-installed local sensing links). NOTE: Output
Sense lines must be connected for proper operation, either locally, or at the load (remote). Also
use OUT S and COM S to monitor voltage at the
load using external equipment such as a DVM, oscilloscope, etc. Use OUT MON and COM MON to
monitor voltage at the BOP output.
Power connections re-
Connect the load to the OUT-
CAUTION: Never connect both the load
!
terminal tied to the BOP COM terminal
and the programming device common
to earth-ground. This compromises
accuracy and will cause catastrophic
damage to the BOP if the connection
between BOP COM and the load terminal tied to earth-ground is lost.
LOCAL SENSING (FACTORY DEFAULT).
Unit is shipped with local sensing links installed:
OUT S connected to OUT MON and COM MON
connected to COM S (see Figure 4A).
REMOTE SENSING SELECT. First remove the
factory-installed local sensing links between OUT S
and OUT MON and between COM MON and COM
S. Then connect the OUT S and COM S lines at the
load (see Figure 4B) using #22 AWG wire, twisted
pair.
ANALOG I/O CONNECTIONS. The Analog I/O
Port connector, located on the rear panel of the BOP
1KW power supply (see Figure 3), provides access
to analog programming inputs which can control the
mode of operation (voltage or current), output voltage or current, and establish positive and negative
voltage and current limits. An output analog corresponding to output current is also provided. Refer to
Operator’s manual for details.
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TRIGGER CONNECTIONS. The Trigger Port
(see Figure 3) provides for an external trigger input
for use with SCPI *TRG and TRIG commands. Refer
to Operator’s manual for details.
GPIB CONNECTIONS. Your computer must
have a GPIB interface card installed. Connect the
power supply to the computer’s GPIB interface card.
Use a standard GPIB interface cable at the GPIB
port on the rear panel (see Figure 3). The default
GPIB address is 6; refer to the Operator’s Manual to
change it.
E
N
T
E
R
FIGURE 2. BOP 1KW SERIES, FRONT PANEL CONTROLS AND INDICATORS
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RS 232 CONNECTIONS. Connect the BOP
1KW to a modem using a Null Modem patch cable at
the RS 232 port located on the rear panel (See Figure 3). A Null Modem cable is not required for older
MAC computers with D-sub serial port in which the
RXD and TXD line transposition is accomplished via
external hardware. The default baud rate is 38400;
refer to the Operator Manual to change it.
FIGURE 3. BOP 1KW SERIES, REAR PANEL VIEW, LINKS INSTALLED FOR LOCAL SENSING
A. LOCAL SENSING
B. REMOTE SENSING
GND
OUT
N / C OUT
MON
S
COM
GND
NET
MON
COM
S
FIGURE 4. LOAD CONNECTION
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Additional features covered in the Operator Manual
are: Quick Boot (eliminating the power- up displays),
use of the internal relay, operation via the LAN interface or analog signals and setting coarse/fine
adjustment preference of the VOLTAGE and CURRENT controls. An Installation/Operation Summary
is also included in the Operator Manual. The Operator Manual also covers the GPIB and RS
232interfaces, including the use of the drivers downloadable from:
www.kepcopower.com/drivers/drivers-dl3.htm
#bop1k.
TURNING THE POWER SUPPLY ON.
CAUTION:
!
DO NOT repeatedly toggle the circuit breaker/switch as this may
damage the unit.
Set POWER ON/OFF circuit breaker/switch on front
panel to ON. If actuator does not lock when
released, wait a few seconds before trying again.
The circuit breaker is “trip-free” design; if overload
exists, contacts cannot be held closed by actuator.
•When the power supply is turned on, it performs a brief self-test that includes testing the
three processors (analog, interface and display), then displays the power-up screen (see
Figure 5). If an error is detected, the FAULT
indicator will light, information about the error
will be briefly displayed on the LCD.
•If the unit powers up in REMOTE mode, press
! to set the unit to LOCAL mode.
•If the display is not viewable, press
The display will cycle through the range of
contrast settings. Press
# again to lock in
the preferred contrast.
ACCESSING THE MENUS. From the power-up
screen, pressing the Function keys indicated on the
LCD opens the associated menu. The menu opened
may list submenus that may be opened either
directly by pressing the associated Function keys, or
by highlighting an item on the list and pressing the
View/Modify function key. Menus and submenus will
display a list of parameters, with the top one highlighted. The function key assignments can vary, but
generally offer the following choices:
! allows the highlighted parameter to be
•
viewed or modified. After changing the param-
# twice.
eter, the following choices are available:
SAVE or ENTER to save the change,
$ -
% -
EXIT to abort the change and exit to the previous menu.
@ - RESTORE DEFAULT restores factory
•
defaults for the parameters displayed (except
for GPIB address). The factory defaults may
be saved as power-up defaults by pressing
$.
•
# - The function varies, depending on the
menu. In most cases
change without applying the modified setting.
From the power-up screen
adjust contrast. In the Revisions/TEST submenu of the General Setup Menu,
to execute a test.
$ - SAVE FOR POWER-UP Saves the con-
•
figuration shown as a power-up setting so the
changes will not be lost when the unit is
turned off.
% - APPLY EXIT applies the current
•
(changed) setting without saving for power-up
and exits to the previous menu or to the
power-up screen, EXIT leaves the current
menu without saving or applying changes.
The menu structure is as follows (NOTE: BOLD =
Factory Default):
Power-up Screen (Power up menu)
•
! - Save/Recall
•• Saved Setups: Recall one of 99 saved setups.
•• • Saved Setup Details: Mode (voltage/
•
•• Saved Waveforms: Choose one of 16
•• • New Waveform Settings: Name (max.
•• • Waveform Settings: Name, protection
•• • •Segment Details: Type (square/
•
•• Display and Beep Settings: Display
current), main channel reference (internal/external/external reference level)
and setting, protection limit (internal/
external/lesser limit) and setting(s), output status (on/off)
•• Interface Settings: Data format (SCPI/
CIIL), GPIB address (default = 6), *RST
sets Output (on/off), Device clear (SCPI/
MATE), Serial Baud (Off/9600/19200),
Xon/Xoff (enable/disable), prompt (enable/
disable)
•• Max/Min Settings: Protect Entry (Bipolar/
Independent); for voltage mode: +Voltage
max, –Voltage min, ±CProtect max/min; for
current mode: +Current max, –Current
min, ±VProtect max/min
•• Load Type: Active/Resistive/Battery
•• Revisions/Test: (Tests: display, keypad,
interface, serial, analog and output)
•• Calibration: Voltage, Current and External
and Controls calibration
•• Power-up Settings: Mode (Volt age/Cur-
rent), Main channel reference (Internal/
External/External Reference Level), protect channel type (Internal/External/Lesser
Limit), Voltage Protect Limit (current
mode), Current Protect Limit (voltage
mode) output on/off
•• Password
•• • Password Settings: Menu protection
(Interface/Max-Min/Load/Test/Powerup/Keypad @ local/Keypad@powerup), Save Display chg (Enable/Dis-able), Passwords (Main/Admin1/
Admin2 or Unprotected)
•• Series/Parallel: Configuration (Standalone/
Parallel/Series/Master 2X2/Master 3X2);
for parallel or series: Unit Type (Standalone/Master+1 to+4/Slave #1 to #5) and
Connection Type: shows Series or Parallel).
FIGURE 5. POWER-UP SCREEN SHOWING GRAPHIC METERS
HOW TO MODIFY A PARAMETER.
First access the parameter by accessing the proper
menu as described above. To modify a parameter
listed in a menu or submenu, proceed as follows:
1. Highlight the parameter using the
2. When the desired choice is highlighted, press
Y and U keys.
!
to modify the active setting. The choices are displayed with the active setting highlighted. In the
case of numerals, the units digit is highlighted.
•To change a numeric setting, press the number keys, then press ENTER to program the
numbers entered. Use the CLEAR key to
clear numbers entered and start over. The
ADJUST control can also be used to incre-
Pressing ADJUST while rotating adjusts the
least significant digit. If the output is on (unit
not in Standby) changes made using the
ADJUST control are immediately applied to
the output.
•For alphanumeric characters use multiple
presses of the number keys for letters or sym-
0 (space), 1 (+, –, /), 2 (ABC), 3
bols:
(DEF), 4 (GHI), 5 (JKL), 6 (MNO). 7
(PQRS), 8 (TUV), 9 (WXYZ). Use the T
key to highlight the next character. As an alternative, the
U or Y keys or ADJUST control
will scroll through numbers, and letters and
symbols. Use the CLEAR key to clear the
entire alphanumeric field and start over
ment or decrement the highlighted digit.
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menu (to change another parameter, repeat steps
1 and 2). To abort (return to the menu without
applying the change), press
NOTE:Press HELP key for more information,
press HELP again to see multiple
screens; press CLEAR key to exit the
help screen.
ADJUSTING LCD BRIGHTNESS, CONTRAST AND BACKGROUND From the power-
up screen, (Figure 5), press
trast adjustment. The contrast gradually alternates
between light and dark. When the contrast is acceptable, press
adjust. Use the
of contrast. Contrast can also be adjusted from the
power-up screen by pressing
T and R as needed for fine adjustment.
ing
To change the background, press
power-up screen, Highlight Background, press
highlight Black or White, then
exit and save for power-up or % to apply the
changes (without saving for power-up) and exit.
ENABLING/DISABLING AUDIBLE BEEPS
From the power-up screen, press
the setting. Even though audible beeps are set to off,
the beeps will still sound upon power-up or detection
of a power supply fault.
SETTING VOLTAGE OR CURRENT MODE
The BOP uses two separate channels, one to set
output voltage or current and one to set the corresponding protection limit. The main channel is determined by the MODE key (in local mode) which
alternately selects either Voltage mode or Current
mode or by SCPI command (in digital remote mode).
The protection channel is determined automatically
by the main channel selected. When Voltage mode
is selected, the current protection channel is active,
and when Current mode is selected, the Voltage
protection channel is active.
PROGRAMMING VOLTAGE OR CURRENT
AND ASSOCIATED PROTECT LIMITS From
the power-up screen the settable voltage/current
parameters are displayed at the bottom of the LCD
above the HELP message. Use
the main or protect channel.
# to apply the change and exit contrast
T and R keys for fine adjustment
%.
# twice to initiate con-
# once, then press-
# from the
!,
$ to save. Press $
#, then modify
Y or U to highlight
1. To verify that the unit is configured for internal references press
verify that Reference Input and Protection Limit
are set to Internal, and External Mode is set to
Disable. If necessary to change a setting, use
or U to highlight the parameter, and press ! to
modify. Highlight the desired selection and press
$ from the power-up screen and
Y
$ to save, then press $ to save for power-up
% to exit. If analog programming is desired,
or
refer to Operator’s Manual.
2. Verify that the load has been configured properly
to ensure that the unit behaves as expected when
the output is off (see PAR. for details).
3. Press MODE key to select the main channel
(VOLTAGE or CURRENT); the associated PROTECT channel is automatically selected and displayed.
4. Set the output on or off as desired using the
STANDBY key. The output is off (disabled) when
the STANDBY indicator is lit, on (enabled) when
not lit.
5. Use
Y or U to highlight the main channel. There
are two ways to program the output in local mode.
These methods can be used either when the output is disabled (STANDBY indicator lit) or
enabled.
WARNING:
When the ADJUST control is
rotated, the active parameter is
immediately effective if the output
is enabled (on = STANDBY indicator not lit). The voltage/current
applied to the load changes as the
ADJUST control is rotated.
•Use the ADJUST control to increase or
decrease the main channel setting (e.g., voltage when the unit is in voltage mode). Start
with the most significant digit of the desired
value, then use
For fine adjustment press the ADJUST control
in while rotating the knob to modify the least
significant digit.
•Enter the desired value on the keypad using
the number keys. For example, to program the
BOP to 75.8V, press the following keys in
75.8 then press ENTER. For fine
order
adjustment use
significant digit. To correct the entry before
T to highlight the next digit.
Y, and U to modify the least
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activation press the CLEAR key to set the
value to zero and start over. When the desired
value is displayed, press ENTER. This causes
the new value to appear at the output and be
applied to the load if the output is enabled.
6. To program the corresponding Protect channel,
Y or U as necessary to highlight the Pro-
press
tect channel. Then set the value using either of
the two methods described above. If the Protect
Entry setting is set to Independent, separate
entries for the positive and negative protect channel are possible. Otherwise the value entered is
applied to both positive and negative protect
channels.
NOTE: The BOP can be configured to show
the protection limits as either a single
value that applies to both protection
channels or show individual settings
for positive and negative protection
limits. See Operator’s Manual for
details
SOFTWARE LIMITS. Software limits prevent
programming of the main channel or the Protect
channel beyond the software limit value. Refer to
Operator’s Manual for a full explanation of software
limits.
Changing Main Channel Software limit.
This procedure allows the user to determine the
maximum value of voltage or current that can be
programmed.
1. Press
General Setup menu, then highlight Max/Min Settings.
2. Press
(Figure 6). (If a Password is required, see Operator’s Manual for instructions.)
3. Highlight the voltage or current max/min value
and press
absolute values (do not use minus sign for negative limits). Use number keys to change the setting, then
4. When complete, press
% from the power-up screen to enter the
! to enter the Max/Min Settings submenu
! to change it. Software limits are
$ to save.
$ to save for power-up,
# to abort, or % to apply the changes (without
saving for power-up) and exit.
5. Upon return to the power-up screen, the main
channel (voltage or current) is compared against
the main channel limits in effect. If the main channel exceeds the limit, it is set to zero.
6. Highlight the ±CPROTECT or ±VPROTECT max/
min value and press
limits are absolute values (do not use minus sign
for negative limits). Use number keys to change
the setting. Press
7. When complete, press
# to abort, or % to apply the changes (with-
or
out saving for power-up) and exit.
Upon return to the power-up screen, the new protection limit (voltage or current) is compared against the
protection limits in effect. If the new protection limit
setting is below the existing setting for the protection
limit, the protection channel (voltage or current) is
set to zero.
! to change it. Software
$ to save, or % to abort.
$ to save for power-up,
VOLTAGE
0.00000.0000
FIGURE 6. MAX/MIN SETTING MENU
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DETERMINING HOW THE UNIT RESPONDS
WHEN OUTPUT IS OFF (LOAD TYPE) The
BOP supports three Load Type selections (see
Table 5) which determine how the power supply
responds when the output is off: ACTIVE, RESISTIVE and BATTERY. The Load Type selection does
TABLE 5. POWER SUPPLY BEHAVIOR WHEN OUTPUT IS SET TO OFF
not affect the settings of the power supply for ON
state; it only affects the main internal reference level
and the protection levels during the OFF state.
LOAD TYPE
SETTING
ACTIVE
RESISTIVE
BATTERY
If unit was in Voltage Mode when output OFF
command issued.
• Unit remains in voltage mode.
• Voltage set to zero.
• Both ± Current Protect set to maximum.
• Both ± Voltage Limit remain at maximum.
• Unit remains in voltage mode.
• Voltage set to zero.
• Both ± Current Protect set to minimum box values.
• Both ± Voltage Limit. remain at maximum.
• Unit set to current mode.
• Current set to zero.
• Both ± Voltage Protect. remain at maximum.
• Both ± Current Limit set to maximum.
WARNING
For inductive loads, and especially
superconducting magnet type
loads, the inherent offset of the
BOP in the OFF state may generate
significant current in the circuit. A
properly rated switch in parallel
with a resistor must be connected
between the power supply and the
load. The switch must be open and
the BOP front panel LCD must read
0V, 0A before removing or installing connections between BOP and
load.
Active. Active mode (default setting) is necessary
for the power supply to function properly and safely
with inductive loads and constant-current-type active
electronic loads. Active mode can also be used with
resistive loads. Table 5 indicates how the power supply responds to a command to go from Output ON to
OFF. When the output is disabled, the unit is set to
voltage mode, voltage is set to zero and both current
protect and voltage limit are set to maximum. When
If unit was in Current Mode when output OFF
command issued.
• Unit set to voltage mode.
• Voltage set to zero.
• Both ± Current Protect remain at maximum.
• Both ± Voltage Limit set to maximum.
• Unit remains in current mode.
• Current set to zero.
• Both ± Current Protect set to minimum box values.
• Both ± Voltage Limit set to maximum,
• Unit remains in current mode,
• Current set to zero.
• Both ± Voltage Protect set to maximum.
• Both ± Current Limit remain at maximum.
the unit is enabled, the pre-existing settings for voltage, current protect and voltage limit are restored.
WARNING
For both inductive loads and constant-current-type active electronic
loads when the BOP output is set
to OFF, a path is provided for
absorbing either the energy accumulated in the reactance of the
load during the ON state, or energy
delivered by an electronic load.
This prevents damage to the load
and power supply as well as providing safety for the user. However,
In addition to the built-in safety features, constant-current-type active
electronic loads must be adjusted
to zero and the BOP front panel
LCD must read 0V, minimum current, before handling the power
supply-to-load connections.
KEPCO, INC. " 131-38 SANFORD AVENUE " FLUSHING, NY. 11355 U.S.A. " TEL (718) 461-7000 " FAX (718) 767-1102
Resistive. This mode, as the name suggests, is
useful for resistive loads. Table 5 indicates how the
power supply responds to a command to go from
Output ON to OFF.
WARNING
Accessing the BOP after the output
is disabled in BATTERY mode is
hazardous because (1) high current
arcing is possible and (2) either the
external battery voltage, or the voltage (±Voltage Protection max) on
the BOP output terminals may be
dangerous. Therefore, for battery
and constant-voltage-type active
electronic loads it is recommended
that two properly rated external
switches be installed for safety:
one in series with the battery, and
one across the BOP output. After
the unit is set to OFF, first open the
switch in series with the battery,
then close the switch across the
BOP output to ensure safety before
handling BOP connections. When
connecting the battery, the switch
across the output should be
opened after the connections are
complete and then the switch in
series with the battery should be
closed. If the constant-voltage-type
active electronic load is adjusted to
zero before handling the power
supply-to-load connections, only
the switch across the BOP output
is required.
Battery. This mode is necessary for the power sup-
ply to function properly and safely with either battery
or constant-voltage-type active electronic loads.
This mode prevents the battery from discharging
during the OFF state. When the output is disabled
(set to OFF), the BOP will go to current mode, current will be set to zero, with voltage protect and current limit set to maximum. In this way the battery will
not be discharged while the output is OFF. For constant-voltage-type active electronic loads this mode
stops energy flow during the OFF state. Table 5 indicates how the power supply responds to a command
to go from Output ON to OFF.
CONFIGURE LOAD TYPE. To configure, press
% from the power-up screen, then highlight Load
Type and press
required, see Operator’s Manual for instructions.)
Highlight Active, Resistive or Battery (see explanations and associated WARNINGS above) and press
! to modify. (If a Password is
$ to save. Then press $ to save for power-up,
# to abort, or % to apply the changes (without
saving for power-up) and exit. After configuring, the
new setting will be effective when the power supply
goes from output on to output off.
To restore factory default (Active), press
the power-up screen, highlight Load Type, press
% from
!, then press @ to restore default. Press $ to
save for power-up or
ENABLING/DISABLING OUTPUT POWER.
The BOP output can be disabled (OFF) or enabled
(ON) by toggling the STANDBY key in local mode.
The behavior of the unit when disabled depends on
the Load Type setting (See “Determining How the
Unit Responds when Output is OFF (Load Type)” on
page 12. and Table 5 for details).
% to exit
IX — ADDITIONAL FEATURES.
The user is urged to refer to the Operator’s Manual
for full explanations all BOP 1KW features, including:
•Passwords - three independent levels of
access
•Changing the Default Power up Settings
•Digital Remote Operation - using SCPI commands via RS 232 or GPIB ports
•Analog Remote Operation - via Analog I/O
port
•Details about Protect Limits and Softwarecontrolled limits
KEPCO, INC. " 131-38 SANFORD AVENUE " FLUSHING, NY. 11355 U.S.A. " TEL (718) 461-7000 " FAX (718) 767-1102
•Waveform Generation - Sine, Triangle,
±Ramp, Square and Level segments. Local
operation allows up to 16 waveforms, maximum 10 segments per waveform. Remote
operation allows 1 waveform, maximum of
126 segments, or using LIST commands.
•Operator Testing
•Calibration - via either local keypad or remote
SCPI commands
•Parallel/Series Configurations -increase current capability, voltage capability, or both.
Page 14
18.805 [477.63]
18.018 [457.64]
17.675 [448.93]
16.835 [427.60]
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9
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3
7
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18.235 [463.16]
18.985 [482.21]
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FIGURE 1. BOP 1KW OUTLINE DIMENSIONS (SHEET 1 OF 2)
KEPCO, INC. " 131-38 SANFORD AVENUE " FLUSHING, NY. 11355 U.S.A. " TEL (718) 461-7000 " FAX (718) 767-1102