SpectraLink Corporation

Setup and Administration—NetLink e340/i640 Wireless Telephone

 

Mitel Networks 3300 ICP and 5220 IP Phone emulation

XXX1 through XXX4 are the last four digits of the access points’ MAC address. The primary access point (the access point which had the strongest signal to this Wireless Telephone) displays first, followed by the three access points with the next strongest signals.

YY is the power level in dBm at which this Wireless Telephone heard the associated access point. Although shown as a positive number, YY represents negative dBm and lower numbers represent stronger signals. For example, a displayed value of 40 indicates -40dBm, and is therefore a stronger signal than a display of 50 (which indicates -50dBm). At least one access point’s reading should be stronger than -70 dBm in all areas.

Note any areas that have inadequate dBm readings.

Detect Overlap or Conflicts

Press FCN to toggle to the Site Survey function that shows the channel number of the access points. Use this information to detect overlaps or conflicts in access point signaling.

XXX1 ZZ XXX2 ZZ

XXX3 ZZ XXX4 ZZ

Chnl

XXX1 through XXX4 are the last four digits of the access points’ MAC address.

ZZ is the channel number that the access point is using.

Note any areas that have access points that are in contention for the same channel.

It is preferable that no overlaps exist anywhere in your facility. If the site survey mode indicates two APs using the same channel, then at least one other AP must be indicated at 10 dBm stronger than those APs to avoid channel conflicts.

Confirm Supported Data Rates

Press FCN to toggle to the Detail function. Use this information to confirm signal strength and supported data rates.

#: Full MAC

dB Ch 1b2b5b11b

Detl

# is the number (1-4) of the AP

Full MAC is the MAC address of the AP

dB is the signal strength of the AP

Ch is the channel of the AP

PN: 72-1084-02-B.doc

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TDK 3300 ICP manual Detect Overlap or Conflicts, Confirm Supported Data Rates

3300 ICP specifications

The TDK 3300 ICP is a cutting-edge sensor that exemplifies the latest advancements in industrial measurement technology. Designed for precision applications, this device caters primarily to industries requiring accurate monitoring and data acquisition. Its robust construction and versatility make it an essential tool in various settings, from automotive to aerospace and beyond.

One of the central features of the TDK 3300 ICP is its ability to measure dynamic signals. The integrated sensors provide an advanced method for capturing high-frequency vibration and acceleration data. This capability is crucial for applications involving structural health monitoring and condition-based maintenance. With a wide frequency range, the TDK 3300 ICP effectively captures minute changes, making it ideal for research and development in various engineering fields.

The technology behind the TDK 3300 ICP includes a high-sensitivity piezoelectric design, which enhances its performance in detecting vibration signals. This piezoelectric element converts mechanical stress into electrical charge, allowing for precise readings in real-time. The ability to operate across a broad range of temperatures further expands its applicability in diverse environments.

Additionally, the TDK 3300 ICP showcases excellent linearity and frequency response, ensuring that the data collected is both accurate and reliable. Its low noise characteristics contribute to the integrity of the measurements, making it suitable for use in laboratories where precision is vital. The device also supports various output formats, including analog signals, making it easy to integrate into existing measurement systems.

Another notable characteristic is its compact design. The TDK 3300 ICP can be installed in confined spaces without compromising performance. This feature is particularly beneficial in industries like automotive engineering where space is often at a premium.

The TDK 3300 ICP also prioritizes user-friendliness. It is designed for straightforward installation, allowing engineers to set up the system quickly without extensive training. Its compatibility with various data acquisition systems further enhances its usability, making it a favorite among professionals seeking a reliable measurement solution.

In summary, the TDK 3300 ICP is a versatile, high-performance sensor that excels in dynamic measurement applications. With its piezoelectric technology, excellent frequency response, and compact design, it stands out as a leading choice for those in need of accurate and reliable data in industrial settings.