Tensor's range of high speed clocking in machines are used to operate your time and attendance systems.
Our clocking in machines use well-proven and reliable RF (Radio Frequency) reading technology. This gives a consistent read range and is unaffected by most external conditions.
Operated by contact less smart cards or key fobs that can be read in under ¼ second, a clocking in machine from Tensor is at the forefront of attendance monitoring solutions.
Sophisticated software enables your clocking in machines to automatically update, for example when the clocks change at Daylight Saving Time.
The T25xx range of clocking in machines are designed specifically to cope with the harshest of physical environments.
When optionally encased in stainless steel, they conform to the IP65 standard, allowing the clock to be situated outside, without the need for further protection.
This clocking in machine is ideally suited for factory or office environments.
The T8440 is a new range of clocking in machine especially designed to operate with the new generation of Tensor software.
Sporting an informative LCD display, the preformed clocking case is available in black or beige and is particularly suitable for any office or reception area.
From a simple network consisting of a single clocking in machine, your time and attendance network can be easily expanded to incorporate additional clocks and other network devices such as scanners and attendance monitors.
Tensor's range of clocking in machines are compatible with the following packages:
Each clocking in machine transmits a 125 KHz frequency field (the electromagnetic field), which is picked up by an aerial in your smart card or key fob. The clocking in machine has two read bands within this field; an inner and outer band, and these are controlled and rapidly oscillated by the on-board microprocessor.
As a smart card or key fob enters the electromagnetic field emitted by the clocking in machine, it is automatically activated by the field's energy, and the content of the chip is read.