A new way of manufacturing a more accurate and smaller-sized electronic compass for mass production by VTT
06.03.2007
Applications include consumer mobile phones, wrist computers and GPS navigation solutions
VTT Technical Research Centre of Finland has developed a new way of manufacturing a more accurate and smaller-sized electronic compass, which also consumes less power and is suitable for mass production. Possible applications include mobile phones, wrist computers and GPS navigator solutions.
VTT has developed micromechanic magnetometers that can be used in applications
such as more sensitive electronic compasses integrated in mobile phones or
other mobile devices. Integrated in a mobile phone, this compass can be used
to locate, for example, the nearest ATM, pharmacy or doctor's clinic. In GPS
navigator solutions, the compass supports the operation of other devices, for
example in cases where the satellite connection fails as the result of
buildings or trees. It can also provide directional information when the user
is motionless.
For manufacturing magnetometers, VTT has
developed a new processing method for silicon wafers. This enables the
production of the sensors used for an electronic compass on one silicon chip
instead of several chips. This means that the size of the compass can be
smaller and the manufacturing costs for mass production can be lowered. Thanks
to the reduced need for calibration, the compass is also more reliable than
the existing electronic compasses. One of the benefits for the customer is
that, owing to the reduced power consumption, the battery life of a wrist
computer or a mobile phone, for example, is considerably longer when using the
compass.
Commercial manufacturing of the component is
expected to begin in Finland in a few year's time.
The
research was funded by Tekes, and the cooperative partners included VTI
Technologies Oy, Suunto Oy and Okmetic Oyj.
The research will
continue with the new RESTLES project, focusing on streamlining the
manufacturing process and making the sensors more compact.
