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Ironically, the construction your home is undergoing might even enhance its security, like the addition of a carport that conceals high end vehicles or a guest house that doubles as a storage unit for valuables. But the process of making these changes can cause inherent safety risks. Your walls are being torn down and your property is being swarmed with strangers each day. That’s why adding security cameras during construction, or re positioning your current ones to monitor the work area, can be very helpful. Here are 7 reasons you should use surveillance cameras during construction. Finding safety issues Reviewing the surveillance footage from the construction area can help you identify safety weak points caused by the work.

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If we were really creative, maybe we used a different tape for each day of the week. In this case, it took about 7 weeks to start looping over. I even know one business that used 31 tapes, one for each day of the month. I would much rather explore other options. Choose a wireless system, or even choose something with a combination of both. One option that I have also considered is the use of a generator as a backup, or even several generators as a backup. The only problem with this is that generators have small gas tanks, and it will not be much fun having to go outside every few hours to fill your machine with gas. That is also assuming that you would be able to find gas at affordable prices at that point. Another solution is to have a generator connected right into your home power system. This is something I have looked into a little bit; it still suffers from most of the same flaws. Another really cool feature is that when choose to purchase a camera through Logitech, it is easily able to be integrated into a complete system.

 

Blandit Etiam

7B, the rear exterior surface of the device housing 702 may include a second recess 724B and a third recess 724C configured to cover the heads of the fasteners fastened into the first and second open slots 802 and 804, when the device housing 702 is mounted onto the mounting plate 800. Each of the second and third recess 724B and 724C may have a respective depth substantially greater than the respective head height of the fasteners fastened into the first and second open slots 802 and 804. In some implementations, the mounting plate 800 includes a first fastener structure 806 located at a first end of the mounting plate 800, and the first fastener structure 806 is configured to mate with a second fastener structure 726 located at a corresponding end of the rear exterior surface of the device housing 702. The device housing 702 is mechanically fixed onto the mounting plate 800, when the first and second fastener structures are fastened to each other. In some implementations, the mounting plate 800 includes a third fastener structure 808 located at a second end of the mounting plate 800, and the third fastener structure 808 is configured to mate with a fourth fastener structure 728 located at a corresponding end of the rear exterior surface of the device housing 702. The device housing 702 is mechanically fixed onto the mounting plate 800, when the first and third fastener structures 806 and 808 are fastened to the second and fourth fastener structures 726 and 728, respectively. In a specific example, the third fastener structure 808 includes an extended holding structure, and the fourth fastener structure 728 of the device housing 702 includes a recess hole configured to receive the extended holding structure. The extended holding structure may be pulled out of the recess hole of the device housing 702 when the device housing 702 slides along a longitudinal direction 812A or a transversal direction 812B, but not when the device housing 702 is pulled by a separation force having a direction perpendicular to a front exterior surface of the device housing 702. Further, the first fastener structure 806 may include a snap fastener configured to lock onto the respective fastener structure 726 of the device housing 702. Once locked onto each other, the snap fastener 806 and the respective fastener structure 726 securely hold the device housing 702 onto the mounting plate 800, thereby onto the wall or doorframe surface to which the mounting plate 800 is mounted. Alternatively, in another example, each of the first and third fastener structures 806 and 808 includes a respective snap fastener configured to lock onto the respective fastener structure 726 or 728.