BOP-1K 091719
B-31
In all cases, the trigger input must be high or low for at least 2
S
to be considered stable. This 2
S
delay provides a noise filter to insure only a level causes the output change.
This command must be preceded by LIST:CURR or LIST:VOLT command, otherwise a -221 “Settings
Conflict” error results. The entries of the dwell list must match the values in the current or voltage list,
otherwise a -236 “Lists Unbalanced” error results. (See Figures B-8 and B-9.)
B.103 [SOURce:]VOLTage[:LEVel][:IMMediate][:AMPlitude] COMMAND
VOLT
Syntax:
Short Form: [SOUR:]VOLT[:LEV][:IMM][:AMP] <exp_value>
Long Form: [SOURce:]VOLTage[:LEVel][:IMMediate][:AMPlitude] <exp_value>
<exp_value> = digits with decimal point and Exponent, e.g., 2.71E1 for 27.1
Description:
Sets programmed voltage level at power supply output.
This command programs output voltage
to a specific value; actual output voltage will depend on load conditions. If the value exceeds the max-
imum for the model being programmed, error message -222,”Data out of range” is posted in output
queue. (See example, Figure B-1.)
B.104 [SOURce:]VOLTage[:LEVel][:IMMediate][:AMPlitude]? QUERY
VOLT?
Syntax:
Short Form: [SOUR:]VOLT[:LEV][:IMM][:AMP]? {MIN | MAX}
Long Form: [SOURce:]VOLTage[:LEVel][:IMMediate][:AMPlitude]? {MIN | MAX}
Description:
Identifies programmed voltage, maximum allowable voltage, or minimum voltage.
The VOLT?
query returns the programmed value of voltage. Actual output voltage will depend on load conditions.
The VOLT?MAX query returns the maximum voltage allowed for a particular model. VOLT? MIN
returns minimum voltage allowed for power supply (always negative).
Related Commands:
VOLT.
(See example, Figure B-1.)
B.105 [SOURce:]VOLTage[:LEVel]:LIMit[:BOTH] COMMAND
VOLT:LIM[:BOTH]
Syntax:
Short Form: [SOUR:]VOLT[:LEV]:LIM[:BOTH] <value>
Long Form: [SOURce:]VOLTage[:LEVel]:LIMit[:BOTH] <value>
where <value> is between zero and rated (nominal) output voltage
Description: Establishes the software limit <value> for output voltage, i.e., sets the maximum value of positive or
negative output voltage that the unit will be allowed to produce. Requires MEM:UPD (PAR. B.20) to
save for power up. See PAR. 3.5.2.2 and Figure 3-19 for special programming considerations.
B.106 [SOURce:]VOLTage[:LEVel]:LIMit[:BOTH]? QUERY
VOLT:LIM[:BOTH]?
Syntax:
Short Form: [SOUR:]VOLT[:LEV]:LIM[:BOTH]?
Long Form: [SOURce:]VOLTage[:LEVel]:LIMit:[:BOTH]?
Returns <value>
Description: Identifies the software limit value for both positive and negative output voltage specified by the user.
B.107 [SOURce:]VOLTage[:LEVel]:LIMit:NEGative COMMAND
VOLT:LIM:NEG
Syntax:
Short Form: [SOUR:]VOLT[:LEV]:LIM:NEG <value>
Long Form: [SOURce:]VOLTage[:LEVel]:LIMit:NEGative <value>
where <value> is between zero and rated (nominal) output voltage
Description: Establishes the software limit <value> for negative output voltage, i.e., sets the maximum value of
negative output voltage that the unit will be allowed to produce. Requires MEM:UPD (PAR. B.20) to
save for power up. See PAR. 3.5.2.2 and Figure 3-19 for special programming considerations.
B.108 [SOURce:]VOLTage[:LEVel]:LIMit:NEGative? QUERY
VOLT:LIM:NEG?
Syntax:
Short Form: [SOUR:]VOLT[:LEV]:LIM:NEG? <value>
Long Form: [SOURce:]VOLTage[:LEVel]:LIMit:NEGative? <value>
Description: Identifies the software limit value for negative output voltage specified by the user.
B.109 [SOURce:]VOLTage[:LEVel]:LIMit:POSitive COMMAND
VOLT:LIM:POS
Syntax:
Short Form: [SOUR:]VOLT[:LEV]:LIM:POS <value>
Long Form: [SOURce:]VOLTage[:LEVel]:LIMit:POSitive <value>
where <value> is between zero and rated (nominal) output voltage
Description: Establishes the software limit <value> for positive output voltage, i.e., sets the maximum value of pos-
itive output voltage that the unit will be allowed to produce. Requires MEM:UPD (PAR. B.20) to save
for power up. See PAR. 3.5.2.2 and Figure 3-19 for special programming considerations.
Содержание BOP-ME 1KW
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Страница 20: ...xii BOP 1K 091719 FIGURE 1 1 HIGH POWER BOP SERIES POWER SUPPLY...
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Страница 64: ...2 22 BOP HIPWR 091719 FIGURE 2 11 PARALLEL CONFIGURATION LOCAL SENSING TYPICAL...
Страница 65: ...BOP HIPWR 091719 2 23 FIGURE 2 12 PARALLEL CONFIGURATION REMOTE SENSING TYPICAL...
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Страница 161: ...BOP HIPWR 091719 3 85 FIGURE 3 29 STATUS REPORTING STRUCTURE...
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