Owner's manual
Table Of Contents
- SECTION 1 - INTRODUCTION
- SECTION 2 - INSTALLATION
- SECTION 3 - CALIBRATION
- SECTION 4 - OPERATION
- FIGURE 1-1. Remotely Controlled Power Supply Configurations Using Kepco Products
- SECTION 1 - INTRODUCTION
- 1.1 Scope of Manual
- 1.2 General Description
- TABLE 1-1. Kepco BIT 488, BIT 4882, and BIT 4886 Digital Programming Cards
- TABLE 1-2. Applicability of BIT 4882, 4882-F and BIT 4886 Cards to Specific BOP Models
- 1.3 Specifications, BIT 4882, BIT 4882-F and BIT 4886
- TABLE 1-3. Specifications, BIT 4882, BIT 4882-F AND BIT 4886
- SECTION 2 - INSTALLATION
- 2.1 Unpacking and Inspection
- 2.2 Set Start-up DefaultS
- 2.2.1 Set (GPIB) Device Address
- 2.2.2 Start-up Language Default
- 2.2.3 IEEE Cable Shield Ground Selection
- 2.2.4 Set Power Supply Identification Switch
- FIGURE 2-1. BIT 4882 and BIT 4882-F Switch and Adjustment Locations
- TABLE 2-1. Power Supply Identification Switch S2 Setting
- 2.3 Installation of Interface Card into the BOP
- TABLE 2-2. Device Address Selection
- FIGURE 2-2. Installation of Model BIT 4882-f into BOP
- FIGURE 2-3. Installation of Model BIT 4882 into BOP
- 2.4 Input/OUtput Signals
- TABLE 2-3. Input/Output Pin Assignments
- FIGURE 2-4. IEEE 488 (GPIB) Connector
- SECTION 3 - CALIBRATION
- 3.1 Equipment Required
- 3.2 Adjustment of the Bop ±10 Volt Calibration Controls (R31, R32)
- 3.3 Adjustment of the Ammeter Zero (R50)
- FIGURE 3-1. BOP Power Supply, Internal Calibration Control Locations
- 3.4 Adjustment Of The Output Voltage Zero (R81)
- 3.5 Adjustment of the Full Scale Output Voltage (R21)
- TABLE 3-1. BOP Power Supply, Internal Calibration Controls
- 3.6 Voltage Reading Zero Calibration (R35)
- 3.7 Voltage Reading Calibration (R19)
- 3.8 Adjustment of the Output Current Zero (R83)
- 3.9 Adjustment of the Full Scale Output Current (R22)
- 3.10 Current Reading Zero Calibration (R36)
- TABLE 3-2. Calibration Measurements and Tolerances - Current
- TABLE 3-3. Suggested Sense Resistors
- FIGURE 3-2. Current Shunt Connections
- 3.11 Current Reading Calibration (R20)
- SECTION 4 - OPERATION
- 4.1 General
- 4.2 IEEE 488 (GPIB) Bus Protocol
- TABLE 4-1. IEEE 488 (GPIB) Bus Interface Functions
- TABLE 4-2. IEEE 488 (GPIB) Bus Command Mode Messages
- TABLE 4-3. IEEE 488 (GPIB) Bus Data Mode Messages
- 4.3 SCPI Programming
- 4.3.1 SCPI Messages
- 4.3.2 Common Commands/Queries
- 4.3.3 SCPI Subsystem Command/Query Structure
- FIGURE 4-1. Tree Diagram of SCPI Commands Used with BIT 4882, BIT 4882-F and BIT 4886 Interface Card
- 4.3.4 Program Message Structure
- TABLE 4-4. SCPI Command Index
- 4.3.4.1 Keyword
- TABLE 4-5. Rules Governing Shortform Keywords
- FIGURE 4-2. Message Structure
- 4.3.4.2 Keyword Separator
- 4.3.4.3 Query Indicator
- 4.3.4.4 Data
- 4.3.4.5 Data Separator
- 4.3.4.6 Message Unit Separator
- 4.3.4.7 Root Specifier
- 4.3.4.8 Message Terminator
- 4.3.5 Understanding The Command Structure
- 4.3.6 Program Message Syntax Summary
- 4.3.7 SCPI Program Example
- FIGURE 4-3. Typical Example of Interface Card Program Using SCPI Commands
- 4.4 CIIL Programming
- APPENDIX A - SCPI COMMON COMMAND/QUERY DEFINITIONS
- TABLE A-1. IEEE 488.2 Command/query Index
- A.2 *CLS — Clear Status Command
- A.3 *ESE — Standard Event Status Enable Command
- TABLE A-2. Standard Event Status Enable Register and Standard Event Status Register Bits
- A.4 *ESE? — Standard Event Status Enable Query
- A.5 *ESR? — Event Status Register Query
- A.6 *IDN? — Identification Query
- A.7 *OPC — Operation Complete Command
- A.8 *OPC? — Operation Complete Query
- A.9 *RST — Reset Command
- FIGURE A-1. GPIB Commands
- A.10 *SRE — Service Request Enable Command
- TABLE A-3. Service Request Enable and Status Byte Register Bits
- A.11 *SRE? — Service Request Enable Query
- A.12 *STB? — Status Byte Register Query
- A.13 *TRG — Trigger Command
- A.14 *TST? — Self Test Query
- A.15 *WAI — Wait-To-Continue Command
- APPENDIX B - SCPI COMMAND/QUERY DEFINITIONS
- B.1 Introduction
- TABLE B-1. SCPI Subsystem Command/query Index
- B.2 INITiate[:IMMediate] Command
- B.3 INITiate:CONTinuous Command
- B.4 INITiate:CONTinuous Query
- FIGURE B-1. Programming the Output
- B.5 MEASure[:SCALar]:CURRent[:DC]? Query
- B.6 MEASure:VOLTage[:SCALar][:DC]? Query
- B.7 [SOURce:]CURRent[:LEVel][:IMMediate][:AMPlitude] Command
- B.8 [SOURce:]CURRent[:LEVel][:IMMediate][:AMPlitude] Query
- B.9 [SOURce:]CURRent:[:LEVel]TRIGgered[:AMPlitude] Command
- B.10 [SOURce:]CURRent:[:LEVel]TRIGgered[:AMPlitude]? Query
- B.11 .[SOURce:]VOLTage[:LEVel][:IMMediate][:AMPlitude] Command
- B.12 [SOURce:]VOLTage[:LEVel][:IMMediate][:AMPlitude]? Query
- B.13 [SOURce:]VOLTage:[:LEVel]TRIGgered[:AMPlitude] Command
- B.14 [SOURce:]VOLTage:[:LEVel]TRIGgered[:AMPlitude]? Query
- B.15 [SOURce:]FUNCtion:MODE
- B.16 STATus:OPERation:CONDition Query
- TABLE B-2. Operation Condition Register, Operation Enable Register, and Operation Event Register ...
- B.17 STATus:OPEReration:ENABle Command
- B.18 STATus:OPEReration:ENABle? Query
- B.19 STATus:OPERation[:EVENt] Query
- B.20 STATus:PRESet Command
- B.21 STATus:QUEStionable[:EVENt]? Query
- TABLE B-3. Questionable Event Register, Questionable Condition Register and Questionable Conditio...
- B.22 STATus:QUEStionable:CONDition? Query
- FIGURE B-2. Using Status Commands and Queries
- B.23 STATus:QUEStionable:ENABle Command
- B.24 STATus:QUEStionable:ENABle? Query
- B.25 SYSTem:ERRor? Query
- TABLE B-4. Error Messages
- B.26 SYSTem:LANGuage Command
- B.27 SYSTem:VERSion Query
- FIGURE B-3. Using System Commands and Queries
- APPENDIX C - CIIL COMMAND DEFINITIONS
- TABLE C-1. CIIL Subsystem Command/query Index
- FIGURE C-1. FNC — Function Command
- FIGURE C-2. INX — Initiate Op Code Command
- FIGURE C-3. FTH — Fetch Command
- FIGURE C-4. SET Command
- FIGURE C-5. RST — Reset Command
- FIGURE C-6. CNF, IST — Confidence Test, Internal Self Test Commands
- TABLE C-2. CIIL Error Messages
- FIGURE C-7. STA — Status Command
- TABLE C-3. CIIL Error Handling Utility Commands
- FIGURE C-8. GAL — Go to alternate Language Command

BIT 4882 030507 A-3
OUTP[:STAT] = OFF. If the power supply is in either an overvoltage or overcurrent state, this condition
is reset by *RST. (See example, Figure A-1.)
FIGURE A-1. GPIB COMMANDS
A.10 *SRE — SERVICE REQUEST ENABLE COMMAND *SRE
Syntax: *SRE<integer> where <integer> = value from 0 - 255 per Table A-3, except bit 6 cannot be pro-
grammed.
Description: Sets the condition of the Service Request Enable register.
The Service Request Enable register
determines which events of the Status Byte Register are summed into the MSS (Master Status Sum-
mary) and RQS (Request for Service) bits. RQS is the service request bit that is cleared by a serial
poll, while MSS is not cleared when read. A "1" (1 = set = enable, 0 = reset = disable) in any Service
Request Enable register bit position enables the corresponding Status Byte bit to set the RQS and
MSS bits. All the enabled Service Request Enable register bits then are logically ORed to cause Bit 6
of the Status Byte Register (MSS/RQS) to be set. Related Commands: *SRE?, *STB?. (See exam-
ple, Figure A-1.)
*CLS Power supply clears status data.
*ESE 60 Power supply enables bits 5, 4, 3 and 2, allowing command error, execution
error, device dependent error and query error to set the Event Status
Summary bit when an STB command is executed.
*ESE? Returns 60, (value of the mask) verifying that bits 5, 4, 3 and 2 are enabled.
*ES Unknown command will set command error (Bit 5).
*ESR? Returns 32 (bit 5 set), indicating Command Error has occurred since the last
time the register was read.
*IDN? Power supply returns: KEPCO, BOP BIT 488 REV 1.
*OPC Allows status bit 0 to be set when pending operations complete
VOLT 21;CURR 3 Sets output voltage to 21V, output current to 3A
*ESR Returns 129 (128 + 1, power on, bit 7 = 1, operation complete, bit 1 = 1)
*ESR Returns 0 (event status register cleared by prior *ESR?)
VOLT 15;CURR 5;*OPC? Sets output voltage to 15V, output current to 5A, puts “1” on output bus when
command operations are complete.
*RST Power supply reset to power on default state.
*SRE 40 When ESB or QUES bits are set (Table A-3), the Request for Service bit will
be set.
*SRE? Returns the value of the mask (40).
*STB? For example, the Power supply responds with 96 (64 + 32) if MSS and the
Event Status Byte (Table A-3) summary bit have been set. The power supply
returns 00 if no bits have been set.
VOLT 25 Power supply voltage commanded to 25V.
VOLT:TRIG 12 Programs power supply voltage to 12V when *TRG received.
INIT Trigger event is initialized.
*TRG Power supply reverts to commanded output voltage of 12V.
** LOAD DISCONNECTED
*TST? Power supply executes self test and responds with 0 if test completed
successfully, with 1 if test failed.
TABLE A-3. SERVICE REQUEST ENABLE AND STATUS BYTE REGISTER BITS
CONDITION OPER
MSS
RQS
ESB MAV QUES
ERR
QUE
NU NU
BIT 7 6543210
VALUE 128 64 32 16 8 4 2 1
OPER Operation Status Summary
MSS Master Status Summary
RQS Request for Service
ESB Event Status Byte summary
MAV Message available
QUES QUEStionable Status Summary
ERR QUE 1 or more errors occurred (see
PAR. B.25)
NU (Not Used)