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The IRIS-Bus Concept for Seismic Instrumentation John D. West Arizona State University

The IRIS-Bus Concept for Seismic Instrumentation John D. West Arizona State University

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Page 1: The IRIS-Bus Concept for Seismic Instrumentation John D. West Arizona State University

The IRIS-Bus Concept for Seismic Instrumentation

John D. WestArizona State University

Page 2: The IRIS-Bus Concept for Seismic Instrumentation John D. West Arizona State University

Datalogger

Power controller

Batteries

Sensor Breakout Box

Cable to Sensor

Cable to GPS Antenna

Data storage (not shown)

(High Lava Plains Experiment)

Page 3: The IRIS-Bus Concept for Seismic Instrumentation John D. West Arizona State University

Cables!

photos: Rick Aster

Page 4: The IRIS-Bus Concept for Seismic Instrumentation John D. West Arizona State University

(High Lava Plains Experiment)

Page 5: The IRIS-Bus Concept for Seismic Instrumentation John D. West Arizona State University

(High Lava Plains Experiment)

Page 6: The IRIS-Bus Concept for Seismic Instrumentation John D. West Arizona State University
Page 7: The IRIS-Bus Concept for Seismic Instrumentation John D. West Arizona State University

How dowe getfrom here

tothere?

Page 8: The IRIS-Bus Concept for Seismic Instrumentation John D. West Arizona State University

Community/Vendor Joint Standards

1. Connectors: type, pin-outs, signal levels and protocols

2. Modules: size, shape, connector locations, locking mechanisms

3. Enclosures: size, shape, material, connectors, accessories

commons.wikimedia.org

Page 9: The IRIS-Bus Concept for Seismic Instrumentation John D. West Arizona State University

Conclusion

To get to the point where we can efficiently configure, deploy, and service large arrays of seismic stations, we need to develop standards for interconnection and form factor of seismic instrumentation. Those standards should be jointly developed between IRIS and the instrumentation vendors.