add example for tr7432
[upsgraph] / silcon-with-measureups.conf
CommitLineData
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1package UPSGRAPH;
2
a2c7237f 3$outdir="/var/www/usv/";
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4$step=60;
5
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6$hosts =
7[
8 {
9 'address' => "192.168.34.253",
10 'name' => "faui4usv",
11 'rrdfile' => "/var/www/usv/.work/ups.rrd",
12 'community' => "public",
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14 'fields' => [ 'inputV', 'inputVL1L2', 'inputVL2L3', 'inputVL3L1', 'inputCL1L2', 'inputCL2L3', 'inputCL3L1', 'outputV', 'outputVL1L2', 'outputVL2L3', 'outputVL3L1', 'outputHZ', 'outputCL1', 'outputCL2', 'outputCL3', 'battT', 'battC', 'load', 'loadL1', 'loadL2', 'loadL3', 'ambT', 'ambH', 'timeR', 'timeO' ],
15
16 'vars' => {
17 'inputV' => {
18 'name' => 'Input Voltage',
19 'oidtext' => 'PowerNet-MIB::upsAdvInputLineVoltage.0',
20 'oid' => '1.3.6.1.4.1.318.1.1.1.3.2.1.0',
21 'min' => '180',
22 'max' => '280',
23 },
24 'inputVL1L2' => {
25 'name' => 'Input Voltage (L1/L2)',
26 'oidtext' => 'PowerNet-MIB::upsPhaseInputVoltage.1.1.1',
27 'oid' => '1.3.6.1.4.1.318.1.1.1.9.2.3.1.3.1.1.1',
28 'min' => '300',
29 'max' => '460',
30 },
31 'inputVL2L3' => {
32 'name' => 'Input Voltage (L2/L3)',
33 'oidtext' => 'PowerNet-MIB::upsPhaseInputVoltage.1.1.2',
34 'oid' => '1.3.6.1.4.1.318.1.1.1.9.2.3.1.3.1.1.2',
35 'min' => '300',
36 'max' => '460',
37 },
38 'inputVL3L1' => {
39 'name' => 'Input Voltage (L3/L1)',
40 'oidtext' => 'PowerNet-MIB::upsPhaseInputVoltage.1.1.3',
41 'oid' => '1.3.6.1.4.1.318.1.1.1.9.2.3.1.3.1.1.3',
42 'min' => '300',
43 'max' => '460',
44 },
45 'inputCL1L2' => {
46 'name' => 'Input Current (L1/L2)',
47 'oidtext' => 'PowerNet-MIB::upsPhaseInputCurrent.1.1.1',
48 'oid' => '1.3.6.1.4.1.318.1.1.1.9.2.3.1.6.1.1.1',
49 'min' => '0',
50 'max' => '50',
51 'factor' => 1/10,
52 },
53 'inputCL2L3' => {
54 'name' => 'Input Current (L2/L3)',
55 'oidtext' => 'PowerNet-MIB::upsPhaseInputCurrent.1.1.2',
56 'oid' => '1.3.6.1.4.1.318.1.1.1.9.2.3.1.6.1.1.2',
57 'min' => '0',
58 'max' => '50',
59 'factor' => 1/10,
60 },
61 'inputCL3L1' => {
62 'name' => 'Input Current (L3/L1)',
63 'oidtext' => 'PowerNet-MIB::upsPhaseInputCurrent.1.1.3',
64 'oid' => '1.3.6.1.4.1.318.1.1.1.9.2.3.1.6.1.1.3',
65 'min' => '0',
66 'max' => '50',
67 'factor' => 1/10,
68 },
69 'outputV' => {
70 'name' => 'Output Voltage',
71 'oidtext' => 'PowerNet-MIB::upsAdvOutputVoltage.0',
72 'oid' => '1.3.6.1.4.1.318.1.1.1.4.2.1.0',
73 'min' => '180',
74 'max' => '280',
75 },
76 'outputVL1L2' => {
77 'name' => 'Output Voltage (L1/L2)',
78 'oidtext' => 'PowerNet-MIB::upsPhaseOutputVoltage.1.1.1',
79 'oid' => '1.3.6.1.4.1.318.1.1.1.9.3.3.1.3.1.1.1',
80 'min' => '300',
81 'max' => '500',
82 },
83 'outputVL2L3' => {
84 'name' => 'Output Voltage (L2/L3)',
85 'oidtext' => 'PowerNet-MIB::upsPhaseOutputVoltage.1.1.2',
86 'oid' => '1.3.6.1.4.1.318.1.1.1.9.3.3.1.3.1.1.2',
87 'min' => '300',
88 'max' => '500',
89 },
90 'outputVL3L1' => {
91 'name' => 'Output Voltage (L3/L1)',
92 'oidtext' => 'PowerNet-MIB::upsPhaseOutputVoltage.1.1.3',
93 'oid' => '1.3.6.1.4.1.318.1.1.1.9.3.3.1.3.1.1.3',
94 'min' => '300',
95 'max' => '500',
96 },
97 'outputHZ' => {
98 'name' => 'Output Frequency',
99 'oidtext' => 'PowerNet-MIB::upsAdvOutputFrequency.0',
100 'oid' => '1.3.6.1.4.1.318.1.1.1.4.2.2.0',
101 'min' => '40',
102 'max' => '60',
103 },
104 'outputCL1' => {
105 'name' => 'Output Current (L1)',
106 'oidtext' => 'PowerNet-MIB::upsPhaseOutputCurrent.1.1.1',
107 'oid' => '1.3.6.1.4.1.318.1.1.1.9.3.3.1.4.1.1.1',
108 'min' => '0',
109 'max' => '50',
110 'factor' => 1/10,
111 },
112 'outputCL2' => {
113 'name' => 'Output Current (L2)',
114 'oidtext' => 'PowerNet-MIB::upsPhaseOutputCurrent.1.1.2',
115 'oid' => '1.3.6.1.4.1.318.1.1.1.9.3.3.1.4.1.1.2',
116 'min' => '0',
117 'max' => '50',
118 'factor' => 1/10,
119 },
120 'outputCL3' => {
121 'name' => 'Output Current (L3)',
122 'oidtext' => 'PowerNet-MIB::upsPhaseOutputCurrent.1.1.3',
123 'oid' => '1.3.6.1.4.1.318.1.1.1.9.3.3.1.4.1.1.3',
124 'min' => '0',
125 'max' => '50',
126 'factor' => 1/10,
127 },
128 'battT' => {
129 'name' => 'Battery Temperature',
130 'oidtext' => 'PowerNet-MIB::upsAdvBatteryTemperature.0',
131 'oid' => '1.3.6.1.4.1.318.1.1.1.2.2.2.0',
132 'min' => '0',
133 'max' => '100',
134 },
135 'battC' => {
136 'name' => 'Battery Capacity',
137 'oidtext' => 'PowerNet-MIB::upsAdvBatteryCapacity.0',
138 'oid' => '1.3.6.1.4.1.318.1.1.1.2.2.1.0',
139 'min' => '0',
140 'max' => '110',
141 },
142 'load' => {
143 'name' => 'UPS Load',
144 'oidtext' => 'PowerNet-MIB::upsAdvOutputLoad.0',
145 'oid' => '1.3.6.1.4.1.318.1.1.1.4.2.3.0',
146 'min' => '0',
147 'max' => '110',
148 },
149 'loadL1' => {
150 'name' => 'UPS Load (L1)',
151 'oidtext' => 'PowerNet-MIB::upsPhaseOutputPercentLoad.1.1.1',
152 'oid' => '1.3.6.1.4.1.318.1.1.1.9.3.3.1.10.1.1.1',
153 'min' => '0',
154 'max' => '110',
155 },
156 'loadL2' => {
157 'name' => 'UPS Load (L2)',
158 'oidtext' => 'PowerNet-MIB::upsPhaseOutputPercentLoad.1.1.2',
159 'oid' => '1.3.6.1.4.1.318.1.1.1.9.3.3.1.10.1.1.2',
160 'min' => '0',
161 'max' => '110',
162 },
163 'loadL3' => {
164 'name' => 'UPS Load (L3)',
165 'oidtext' => 'PowerNet-MIB::upsPhaseOutputPercentLoad.1.1.3',
166 'oid' => '1.3.6.1.4.1.318.1.1.1.9.3.3.1.10.1.1.3',
167 'min' => '0',
168 'max' => '110',
169 },
170 'ambT' => {
171 'name' => 'Ambient Temperature',
172 'oidtext' => 'PowerNet-MIB::mUpsEnvironAmbientTemperature.0',
173 'oid' => '1.3.6.1.4.1.318.1.1.2.1.1.0',
174 'min' => '0',
175 'max' => '60',
176 },
177 'ambH' => {
178 'name' => 'Ambient Humidity',
179 'oidtext' => 'PowerNet-MIB::mUpsEnvironRelativeHumidity.0',
180 'oid' => '1.3.6.1.4.1.318.1.1.2.1.2.0',
181 'min' => '0',
182 'max' => '100',
183 },
184 'timeR' => {
185 'name' => 'Time Remaining',
186 'oidtext' => 'PowerNet-MIB::upsAdvBatteryRunTimeRemaining.0',
187 'oid' => '1.3.6.1.4.1.318.1.1.1.2.2.3.0',
188 'factor' => 1/6000,
189 'min' => '0',
190 'max' => '360',
191 },
192 'timeO' => {
193 'name' => 'Time On Battery',
194 'oidtext' => 'PowerNet-MIB::upsBasicBatteryTimeOnBattery.0',
195 'oid' => '1.3.6.1.4.1.318.1.1.1.2.1.2.0',
196 'factor' => 1/6000,
197 'min' => '0',
198 'max' => '360',
199 },
200 },
201 },
202];
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203
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