36
OVP<
N
> <
NRF
>
Set output <
N
> over voltage protection trip point to <
NRF
> Volts
I<
N
> <
NRF
>
Set output <
N
> current limit to <
NRF
> Amps
OCP<
N
> <
NRF
>
Set output <
N
> over current protection trip point to <
NRF
> Amps
V<
N
>?
Return the set voltage of output <
N
> . For AUX output <
N
>=3
– response is V <
N
> <
NR
2><
RMT
> where <
NR
2> is in Volts
I<
N
>?
Return the set current limit of output <
N
>
– response is I <
N
> <
NR
2><
RMT
> where <
NR
2> is in Amps
OVP<
N
>?
Return the voltage trip setting for output <
N
>
– response is VP<
N
> <
NR
2><
RMT
> where <
NR
2> is in Volts
OCP<
N
>?
Return the current trip setting for output <
N
>
– response is IP<
N
> <
NR
2><
RMT
> where <
NR
2> is in Amps
V<
N
>O?
Return the output readback voltage for output <
N
>. For AUX output <
N
>=3
– response is <
NR
2>V<
RMT
> where <
NR
2> is in Volts
I<
N
>O?
Return the output readback current for output <
N
>. For AUX output <
N
>=3
– response is <
NR
2>A<
RMT
> where <
NR
2> is in Amps
RANGE<
N
> <
NRF
> Set the voltage range of output <
N
> to <
NRF
> where <
NRF
> has the following
meaning:
QL355 Models:
0=15V(5A), 1=35V(3A), 2=35V(500mA)
QL564 Models:
0=25V(4A), 1=56V(2A), 2=56V(500mA)
RANGE<
N
>?
Return the set voltage range of output <
N
>
– response is R<
N
> <
NR
1><
RMT
> where <
NR
1> has the following meaning:
QL355 Models:
0=15V(5A), 1=35V(3A), 2=35V(500mA)
QL564 Models:
0=25V(4A), 1=56V(2A), 2=56V(500mA)
DELTAV<
N
>
<
NRF
>
Set the output <
N
> voltage step size to <
NRF
> Volts. For AUX output <
N
>=3
DELTAI<
N
> <
NRF
> Set the output <
N
> current step size to <
NRF
> Amps
DELTAV<
N
>?
Return the output <
N
> voltage step size. For AUX output <
N
>=3
– response is DELTAV<
N
> <
NR
2><
RMT
> where <
NR
2> is in Volts.
DELTAI<
N
>?
Return the output <
N
> current step size
– response is DELTAI<
N
> <
NR
2><
RMT
> where <
NR
2> is in Amps.
INCV<
N
>
Increment the output <
N
> voltage by
the step size set for output <
N
>.
For AUX output <
N
>=3
INCV<
N
>V
Increment with verify the output <
N
> voltage by the step size set for output <
N
>.
For AUX output <
N
>=3
DECV<
N
>
Decrement the output <
N
> voltage by the step size set for output <
N
>.
For AUX output <
N
>=3
DECV<
N
>V
Decrement with verify the output <
N
> voltage by the step size set for output
<
N
>. For AUX output <
N
>=3
INCI<
N
>
Increment the output <
N
> current limit by the step size set for output <
N
>
DECI<
N
>
Decrement the output <
N
> current limit by the step size set for output <
N
>
OP<
N
> <
NRF
>
Set output <
N
> on/off where <
NRF
> has the following meaning: 0=OFF, 1=ON
For AUX output <
N
>=3
OP<
N
>?
Returns output <
N
> on/off status. For AUX output <
N
>=3
The response is <
NR
1><
RMT
> where 1 = ON, 0 = OFF.