Samsung has already sacrificed the last killer against the new iPhone, and it is the Galaxy Note 7, which is definitely one of the best smartphones in terms of shape design, configuration, and photo taking.
Now, the foreign media PhoneBuff has done a speed test comparison between Note 7 and iPhone 6S. This test is not only the configuration of the mobile phone, but also the system optimization skills, but the results are somewhat surprising.
Video: Click
Galaxy Note 7 is equipped with quad-core processor + 4GB memory, the system is Android 6.0, and iPhone 6S is dual-core processor + 2GB memory, running iOS 9 system, the test process is also very simple, two mobile phones open wild car, angry Birds, cameras and other applications.
As a result, you will find that the speed of the iPhone 6S is not normal. After successfully opening two applications, Samsung's new flagship Note 7 will open the first one, that is, 6S open all applications takes 1 minute and 21 seconds, and Note7 takes 2 hours. 5 seconds in minutes, complete the second application to open, iPhone6s takes 1 minute and 51 seconds, Samsung Note7 takes 2 minutes and 50 seconds.
It’s not surprising that this result is happening. Apple has optimized the software and hardware synchronously, while the hardware of the Android phone is very fragmented. This means that on the Android platform, only the more powerful devices can achieve the same performance.
Magnetic Scale
Displacement sensor, also known as linear sensor, is a linear device belonging to metal induction. The function of the sensor is to convert various measured physical quantities into electricity. In the production process, the measurement of displacement is generally divided into measuring the physical size and mechanical displacement. According to the different forms of the measured variable, the displacement sensor can be divided into two types: analog and digital. The analog type can be divided into two types: physical property type and structural type. Commonly used displacement sensors are mostly analog structures, including potentiometer-type displacement sensors, inductive displacement sensors, self-aligning machines, capacitive displacement sensors, eddy current displacement sensors, Hall-type displacement sensors, etc. An important advantage of the digital displacement sensor is that it is convenient to send the signal directly into the computer system. This kind of sensor is developing rapidly, and its application is increasingly widespread.
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