Changes for page Seismometers

Last modified by robert on 2025/06/15 15:01

From version 6.1
edited by Jack Dent
on 2024/01/10 17:45
Change comment: There is no comment for this version
To version 30.1
edited by robert
on 2024/01/15 11:29
Change comment: There is no comment for this version

Summary

Details

Page properties
Author
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1 -XWiki.JackD
1 +XWiki.robert
Content
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4 4  (((
5 5  = Broadband sensors =
6 6  
7 -Broadband (or BB) sensors are especially sensitive to low frequency energy, and are //broad//ly defined as any instrument capable of **reliably recording wave periods greater or equal to 10 seconds**. This makes them useful for analysis and detection of teleseismic earthquakes as well as techniques involving ambient noise. However they are also well-suited for measuring high frequency energy, limited only by the Nyquist frequency of the [[data logger>>doc:Instrumentation.Data Loggers.WebHome]]'s sampling rate. The downside to broadband sensors is usually their cost, size, and fragility relative to short period sensors.
7 +Broadband (or BB) sensors are especially sensitive to low frequency energy, and are //broad//ly defined as any instrument capable of **reliably recording wave periods greater or equal to 10 seconds**. This makes them useful for analysis and detection of teleseismic earthquakes as well as techniques involving ambient noise. However they are also well-suited for measuring high frequency energy, limited only by the Nyquist frequency of the [[data logger>>doc:Instrumentation.ANU LPR-200.WebHome]]'s sampling rate. The downside to broadband sensors is usually their cost, size, and fragility relative to short period sensors.
8 8  
9 9  == Nanometrics ==
10 10  
... ... @@ -43,37 +43,75 @@
43 43  {{toc/}}
44 44  {{/box}}
45 45  
46 -{{box title="= Trillium Compact 120 ="}}
47 -|(% style="width:122px" %)**Model**|(% style="width:105px" %)Trillium Compact 120
48 -|(% style="width:122px" %)**Size (Diameter x Height cm)**|(% style="width:105px" %)9*13
49 -|(% style="width:122px" %)**Weight (kg)**|(% style="width:105px" %)1.1
46 +(% class="box" %)
47 +(((
48 += Trillium Compact 120 =
50 50  
50 += [[image:Trillium compact120.jpg]] =
51 +
52 +|**Frequency Band**|120 seconds to 100 Hz
53 +|**Sensitivity**| 754 V/m/s
54 +|**Size (Diameter x Height)**|9 x 13 cm
55 +|**Weight**|1.1 kg
56 +)))
57 +
58 +(% class="box" %)
59 +(((
60 += Trillium Compact PostHole 120 =
61 +
62 += [[image:Trillium compact posthole.jpg]] =
63 +
64 +|**Frequency Band**|120 seconds to 100 Hz
65 +|**Sensitivity**| 754 V/m/s
66 +|**Size (Diameter x Height)**|10 x 17 cm
67 +|**Weight**|3.1 kg
68 +)))
69 +
70 +
71 +(% class="box" %)
72 +(((
73 += Lennartz LE-3D-Lite MkII =
74 +
75 += [[image:LE3Dlite.jpg||data-xwiki-image-style-alignment="~"center~""]] =
76 +
77 +
78 +|**Frequency Band**|1 seconds to 100 Hz
79 +|**Sensitivity**| 400 V/m/s
80 +|**Size (Diameter x Height)**|10 x 10 cm
81 +|**Weight**|1.9 kg
82 +)))
83 +
84 +{{box title="= Guralp 40T =
85 +
86 +[[image:Guralp 40T.jpg]]
87 +
88 +
89 +|(% style=~"width:128px~" %)**Sensitivity**|(% style=~"width:103px~" %)
90 +|(% style=~"width:128px~" %)**Size (Diameter x Height)**|(% style=~"width:103px~" %)17 x 23cm
91 +|(% style=~"width:128px~" %)**Weight**|(% style=~"width:103px~" %)6.6 Kg"}}
51 51  
52 52  {{/box}}
53 53  
54 -{{box title="= Trillium Compact 20 =
95 +{{box title="= Guralp 3ESP =
55 55  
56 -= **[[image:Trillium compact120.jpg||height=~"231~" width=~"219~"]]** =
97 +[[image:GURALP 3ESP.jpg]]
57 57  
58 -|(% style=~"width:115px~" %)**Model**|(% style=~"width:112px~" %)Trillium Compact 20
59 -|(% style=~"width:115px~" %)**Size (Diameter x Height cm)**|(% style=~"width:112px~" %)9*13
60 -|(% style=~"width:115px~" %)**Weight (kg)**|(% style=~"width:112px~" %)1.1
61 -
62 - "}}
99 +|(% style=~"width:121px~" %)**Sensitivity**|(% style=~"width:110px~" %)
100 +|(% style=~"width:121px~" %)**Size (Diameter x Height)**|(% style=~"width:110px~" %)17 x 27cm
101 +|(% style=~"width:121px~" %)**Weight**|(% style=~"width:110px~" %)10.3Kg"}}
63 63  
64 64  {{/box}}
65 65  
66 -{{box title="= Trillium Compact Posthole =
105 +{{box title="= Guralp 3ESPC =
67 67  
68 -= [[image:Trillium compact posthole.jpg]] =
107 +[[image:Guralp 3ESPC.jpg]]
69 69  
70 -|(% style=~"width:139px~" %)**Model**|(% style=~"width:88px~" %)
71 -|(% style=~"width:139px~" %)**Size (Diameter x Height cm)**|(% style=~"width:88px~" %)10*17
72 -|(% style=~"width:139px~" %)**Weight (kg)**|(% style=~"width:88px~" %)3.1"}}
109 +|(% style=~"width:122px~" %)**Sensitivity**|(% style=~"width:109px~" %)
110 +|(% style=~"width:122px~" %)**Size (Diameter x Height)**|(% style=~"width:109px~" %)18 x 28cm
111 +|(% style=~"width:122px~" %)**Weight**|(% style=~"width:109px~" %)8.2 Kg"}}
73 73  
74 74  {{/box}}
75 75  
76 -[[image:LE3Dlite.jpg||alt="LE-3Dlite"]]
77 -//Figure 2: LE-3Dlite MKII//
115 +
78 78  )))
79 79  )))
GURALP 3ESP.jpg
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Guralp 3ESPC.jpg
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Guralp 40T.jpg
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1 +XWiki.JackD
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1 +1007.9 KB
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