nut/docs/man/powercom.8

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'\" t
.\" Title: powercom
.\" Author: [see the "AUTHOR" section]
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.\" Generator: DocBook XSL Stylesheets v1.78.1 <http://docbook.sf.net/>
.\" Date: 04/17/2015
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.\" Manual: NUT Manual
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.\" Source: Network UPS Tools 2.7.3
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.\" Language: English
.\"
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.TH "POWERCOM" "8" "04/17/2015" "Network UPS Tools 2\&.7\&.3" "NUT Manual"
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.SH "NAME"
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powercom \- UPS driver for serial Powercom/Trust/Advice UPS equipment
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.SH "NOTE"
.sp
This man page only documents the hardware\-specific features of the powercom driver\&. For information about the core driver, see \fBnutupsdrv\fR(8)\&.
.SH "SUPPORTED HARDWARE"
.sp
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This driver supports many similar kinds of serial UPS hardware (as well as a few USB UPS models with USB\-to\-serial adapters)\&. The most common ones are the Trust 425/625, Powercom, and Advice Partner/King PR750\&. Others using the same protocol may also work\&. For USB connections, you might need \fBusbhid-ups\fR(8)\&.
.sp
For more specific guidance on which driver is applicable for a USB connection, see the NUT Hardware Compatibility List (HCL)\&.
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.SH "EXTRA ARGUMENTS"
.sp
This driver supports the following optional settings in the \fBups.conf\fR(5) file:
.PP
\fBlinevoltage\fR=\fIvalue\fR
.RS 4
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An integer specifying the line voltage\&. It can\(cqt be auto detected\&. Acceptable values are in the range of 110\-120 or 220\-240\&. The default is
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\fI230\fR\&.
.RE
.PP
\fBmanufacturer\fR=\fIname\fR
.RS 4
Specify the manufacturer name, which also can\(cqt be auto detected\&. This is a user defined string, so any name is acceptable\&. The default is
\fIPowerCom\fR\&.
.RE
.PP
\fBmodelname\fR=\fIname\fR
.RS 4
Specify the model name, which also can\(cqt be auto detected\&. This is a user defined string, so any name is acceptable\&. The default is
\fIUnknown\fR\&.
.RE
.PP
\fBserialnumber\fR=\fIvalue\fR
.RS 4
Like modelname above, but for the serial number\&. The default is
\fIUnknown\fR\&.
.RE
.PP
\fBtype\fR=\fIname\fR
.RS 4
The exact type of the communication protocol within the powercom family, that will be used to communicate with the UPS\&. The type is named after the first modelname that was coded with that protocol\&. The acceptable names are
\fITrust\fR,
\fIEgys\fR,
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\fIKP625AP\fR,
\fIIMP\fR,
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\fIKIN\fR,
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\fIBNT\fR,
\fIBNT\-other\fR
and
\fIOPTI\fR\&. The default is
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\fITrust\fR\&.
.sp
\fIBNT\-other\fR
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is a special type for other BNT models (such as the 1500A at 120V and can be used to override ALL models using ALL of the following values\&.
.RE
.PP
\fBshutdownArguments\fR={{\fIminutes\fR,\fIseconds\fR},\fIwhether_minutes_should_be_used\fR}
.RS 4
The minutes and seconds that the UPS should wait between receiving the shutdown command and actually shutting off\&. The other argument should be set to the character
\fIn\fR
only when the minutes value should be skipped and not sent to the UPS\&. The default is type\-dependent and is given below\&. The braces and commas are mandatory\&. Note that there should be no whitespace characters\&.
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.RE
.PP
\fBnumOfBytesFromUPS\fR=\fIvalue\fR
.RS 4
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The number of bytes in a UPS frame: 16 is common, 11 for
\fITrust\fR\&. The default is type\-dependent and is given below\&.
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.RE
.PP
\fBmethodOfFlowControl\fR=\fIname\fR
.RS 4
The method of serial communication flow control that is engaged by the UPS\&. The default is type\-dependent and is given below\&. Acceptable names are
\fIdtr0rts1\fR,
\fIdtr1\fR
or
\fIno_flow_control\fR\&.
.RE
.PP
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\fBvalidationSequence\fR={{\fIindex1\fR,\fIvalue1\fR},{\fIindex2\fR,\fIvalue2\fR},{\fIindex3\fR,\fIvalue3\fR}}
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.RS 4
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(Only for types KP625AP, Trust, Egys\&.) 3 pairs to be used for validating the UPS by comparing bytes of the raw data with constant values\&. The index selects the byte from the UPS (see numOfBytesFromUPS) and the value is for matching to the byte\&. The default is type\-dependent and is given below\&. The braces and commas are mandatory, as the lack of white space characters\&.
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.RE
.PP
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\fBfrequency\fR={\fIA\fR,\fIB\fR}
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.RS 4
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(Only for types KP625AP, Trust, Egys\&.) A pair to convert the raw frequency data to a human\-readable frequency reading using the function 1/(A*x+B)\&. If the raw value x IS the frequency, then set A=1/(x^2) and B=0\&. The default is type\-dependent and is given below\&. Do note that the braces and commas are mandatory as well, as the lack of whitespace characters\&.
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.RE
.PP
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\fBloadPercentage\fR={\fIBatteryA\fR,\fIBatteryB\fR,\fILineA\fR,\fILineB\fR}
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.RS 4
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(Only for types KP625AP, Trust, Egys\&.) A quad to convert the raw load data to human readable load percentage reading using the function A*x+B\&. If the raw value x IS the Load Percent, then set A=1 and B=0\&. The default is type\-dependent and is given below\&. Do note that the braces and commas are mandatory, as the lack of white space characters\&.
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.RE
.PP
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\fBbatteryPercentage\fR={\fIBattery1\fR,\fIBattery2\fR,\fIBattery3\fR,\fILine4\fR,\fILine5\fR}
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.RS 4
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(Only for KP625AP, Trust, Egys\&.) A 5 tuple to convert the raw battery and line data to a human\-readable battery and line percentage reading using the functions (Battery) A*x+B*y+C and (Line) D*x+E\&. If the raw value x IS the Battery Percent, then set A=1, B=0, C=0, D=1, E=0\&. The default is type\-dependent and is given below\&. Do note that the braces and commas are mandatory, as the lack of white space characters\&.
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.RE
.PP
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\fBvoltage\fR={\fI240A\fR,\fI240B\fR,\fI120A\fR,\fI120B\fR}
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.RS 4
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(Only for types KP625AP, Trust, Egys\&.) A quad that is used convert the raw voltage data to a human\-readable voltage reading using the function A*x+B\&. If the raw value x IS HALF the Voltage, then set A=2, B=0\&. The default is type\-dependent and is given below\&. Do note that the braces and commas are mandatory, as well as the lack of whitespace characters\&.
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.RE
.SH "DEFAULT VALUES FOR THE EXTRA ARGUMENTS"
.sp
.if n \{\
.RS 4
.\}
.nf
linevoltage = 230
manufacturer = PowerCom
modelname = Unknown
serialnumber = Unknown
type = Trust
.fi
.if n \{\
.RE
.\}
.sp
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The rest of the default values for the extra arguments are type\-dependent\&. However, \fIBNT\-other\fR is a special type that can be used to override ALL values for ALL models\&.
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.SS "Trust"
.sp
.if n \{\
.RS 4
.\}
.nf
numOfBytesFromUPS = 11
methodOfFlowControl = dtr0rts1
validationSequence = {{5,0},{7,0},{8,0}}
shutdownArguments = {{0,10},n}
frequency = {0\&.00020997,0\&.00020928}
loadPercentage = {6\&.1343,\-0\&.3808,4\&.3110,0\&.1811}
batteryPercentage = {5\&.0000,0\&.3268,\-825\&.00,4\&.5639,\-835\&.82}
voltage = {1\&.9216,\-0\&.0977,0\&.9545,0\&.0000}
.fi
.if n \{\
.RE
.\}
.SS "KP625AP"
.sp
.if n \{\
.RS 4
.\}
.nf
numOfBytesFromUPS = 16
methodOfFlowControl = dtr0rts1
validationSequence = {{5,0x80},{7,0},{8,0}}
shutdownArguments = {{0,10},n}
frequency = {0\&.00020997,0\&.00020928}
loadPercentage = {6\&.1343,\-0\&.3808,4\&.3110,0\&.1811}
batteryPercentage = {5\&.0000,0\&.3268,\-825\&.00,4\&.5639,\-835\&.82}
voltage = {1\&.9216,\-0\&.0977,0\&.9545,0\&.0000}
.fi
.if n \{\
.RE
.\}
.SS "Egys"
.sp
.if n \{\
.RS 4
.\}
.nf
numOfBytesFromUPS = 16
methodOfFlowControl = no_flow_control
validationSequence = {{5,0x80},{7,0},{8,0}}
shutdownArguments = {{0,10},n}
frequency = {0\&.00020997,0\&.00020928}
loadPercentage = {6\&.1343,\-0\&.3808,1\&.3333,0\&.6667}
batteryPercentage = {5\&.0000,0\&.3268,\-825\&.00,2\&.2105,\-355\&.37}
voltage = {1\&.9216,\-0\&.0977,0\&.9545,0\&.0000}
.fi
.if n \{\
.RE
.\}
.SS "IMP"
.sp
.if n \{\
.RS 4
.\}
.nf
numOfBytesFromUPS = 16
methodOfFlowControl = no_flow_control
validationSequence = {{5,0xFF},{7,0},{8,0}}
shutdownArguments = {{1,30},y}
.fi
.if n \{\
.RE
.\}
.SS "KIN"
.sp
.if n \{\
.RS 4
.\}
.nf
numOfBytesFromUPS = 16
methodOfFlowControl = no_flow_control
validationSequence = {{11,0x4b},{8,0},{8,0}}
shutdownArguments = {{1,30},y}
.fi
.if n \{\
.RE
.\}
.SS "BNT"
.sp
.if n \{\
.RS 4
.\}
.nf
numOfBytesFromUPS = 16
methodOfFlowControl = no_flow_control
validationSequence = {{11,0x42},{8,0},{8,0}}
shutdownArguments = {{1,30},y}
.fi
.if n \{\
.RE
.\}
.SS "BNT\-other"
.sp
.if n \{\
.RS 4
.\}
.nf
numOfBytesFromUPS = 16
methodOfFlowControl = no_flow_control
validationSequence = {{8,0},{8,0},{8,0}}
shutdownArguments = {{1,30},y}
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frequency = {0\&.00027778,0\&.0000}
loadPercentage = {1\&.0000,0\&.0,1\&.0000,0\&.0}
batteryPercentage = {1\&.0000,0\&.0000,0\&.0000,1\&.0000,0\&.0000}
voltage = {2\&.0000,0\&.0000,2\&.0000,0\&.0000}
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.fi
.if n \{\
.RE
.\}
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.SS "OPTI"
.sp
.if n \{\
.RS 4
.\}
.nf
numOfBytesFromUPS = 16
methodOfFlowControl = no_flow_control
validationSequence = {{5,0xFF},{7,0},{8,0}}
shutdownArguments = {{1,30},y}
.fi
.if n \{\
.RE
.\}
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.SH "AUTHOR"
.sp
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Peter Bieringer <pb@bieringer\&.de>, Alexey Sidorov <alexsid@altlinux\&.org>, Keven L\&. Ates <atescomp@gmail\&.com>
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.SH "SEE ALSO"
.SS "The core driver:"
.sp
\fBnutupsdrv\fR(8)
.SS "Internet resources:"
.sp
The NUT (Network UPS Tools) home page: http://www\&.networkupstools\&.org/