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posted in February 2013
IMEC working on remote cardiac monitoring
Design How-To  
2/27/2013   1 comment
IMEC has joined forces with two organizations to develop cardiac monitoring products integrating ultra-low power ICs.
Vishay integrates MEPIC resistor on a PCB substrate
Product News  
2/22/2013   Post a comment
Device offers joule or flash ignition for fast firing times down to 250 µs, and features firing energy down to 1.5 mJ.
Qualcomm integrates RF for world LTE phone
Product How-To  
2/22/2013   2 comments
Fabless giant aims to ease the job of creating a phone that can roam LTE’s 40 global spectrum bands.
Flexible termination capacitors rated for use at 150°C
Product News  
2/14/2013   Post a comment
Kemet has extended the case size offerings as well as capacitance values in both the C0G and ultra-stable X8R dielectric platforms.
Medical monitoring gets personal, goes mobile
Design How-To  
2/14/2013   3 comments
The trend towards continuous monitoring of vital signs relies on low-power, high-performance sensors, analog and digital processing, and ease of connectivity.
How to meet driver assistance requirements
Design How-To  
2/12/2013   Post a comment
A flexible multi-channel approach to communications can meet the requirements of infotainment and driver assistance as they grow together and face higher bandwidth needs.
Wide terminal thin film chip resistors debut with ohmic values down to 1 O
Product News  
2/7/2013   Post a comment
In a compact 0406 package, Vishay claims its latest devices boast the lowest ohmic values in the industry.
How healthy is your heart?
Design How-To  
2/6/2013   Post a comment
Medical equipments have one thing in common and that is the presence of electronics. From the tiny gadget that checks the amount of sugar in blood to the bulky ECG machine which measures your heart operation. This paper gives a small-window view of the places where electronics is used and has been sitting silently in our lives over the years.


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As data rates begin to move beyond 25 Gbps channels, new problems arise. Getting to 50 Gbps channels might not be possible with the traditional NRZ (2-level) signaling. PAM4 lets data rates double with only a small increase in channel bandwidth by sending two bits per symbol. But, it brings new measurement and analysis problems. Signal integrity sage Ransom Stephens will explain how PAM4 differs from NRZ and what to expect in design, measurement, and signal analysis.

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