The observation method quickly eliminates the four major faults of the scanner. The problem of the

  
scanner usually comes from the scanning effect. This is often one of the software failures. Different scanners have different solutions to these software failures, and can be corrected by using relevant software. The hardware failure is mainly the interface and line problems. As long as you connect the lines, set the ports, and use the latest drivers, these problems should be easily solved. Today, we mainly introduce the causes and solutions of scanner failures.
We will first understand the working mode of the scanner. In fact, it is very simple, that is, using the light source to illuminate the original or the picture
produces high-brightness reflected light, light. Through the mirror and the transmission mirror, the color separation is performed by the spectroscope, and is irradiated onto a CCD (Charge Coupled Device) component, and the CCD component converts the optical signal into an electrical signal and transmits it to the computer. Therefore, the key component of the scanner is the CCD, whose quality directly affects the performance of the scanner.
The scanner is mainly composed of a photosensitive device, a high-power fluorescent tube, a driving motor, a driving belt, and an analog-to-digital signal converter. The working of the photosensitive device is to convert the induced optical signal into an electrical signal. High-power light tubes are used to strongly illuminate text or images for full induction. The function of the drive motor is to drive the fluorescent tube and sweep the light through the required items step by step. The drive belt is a device that drives the fluorescent tube together with the drive motor. Analog-to-digital converters convert analog electrical signals into digital signals for computer identification.
The method of determining the fault can be the observation method, observing the cause of the fault, and determining the problematic component, for example, the scanner does not respond, and it can be considered whether the power cord is connected; or the test method, the test, the determination Where there is a problem, such as scanning a picture, it is found that the scanned image is not clear enough; there is also a screening method. When the observation method is used to find that there are several parts that may cause the failure, the screening method can be used to further determine the fault location. Sometimes you can use some methods to determine the source of the fault and then find a solution.
Common Fault 1: Scanner is not ready
After turning on the scanner, if the Ready light is not lit, check the scanner's internal light. If the internal lamp is found to be bright, it may be related to the room temperature. The solution is to turn off the scanner after the scanner is powered on for half an hour, and then turn it on after one minute, the problem can be solved. If the scanner still does not work at this time, first turn off the scanner, disconnect the scanner from the computer, set the SCSI ID value to 7, and turn the scanner on after about one minute. When the temperature is low in winter, it is best to warm up for a few minutes before use, so as to avoid the Ready light after the boot.
Common Fault 2: Scanners Not Found
I believe this is the most common fault. First observe the scanner's power and line interface is connected, then confirm whether to turn on the scanner before starting the computer. If not, you can press the Windows "Device Manager" > Refresh” button to see if the scanner has a self-test and the green indicator light is steady. If the answer is yes, the possibility of the scanner itself being faulty can be ruled out. If the scanner's indicator light blinks continuously, the scanner status is not normal. At this time, you can reinstall the latest scanner driver. At the same time, you should also check if the scanner in the "Device Manager" conflicts with other devices (IRQ or IO address) and changes if there is a conflict. Keep in mind that this type of failure is nothing more than line problems, driver issues, and port conflicts.
Common fault three: the output image color is not gorgeous enough
In the case of such a fault, we can first adjust the brightness, contrast and gamma value of the display. The higher the Gamma value, the richer the level of perceived color. We can adjust the Gamma value. Of course, in order to get better results, you can also adjust the Gamma value in Photoshop and other software, but this is “after the adjustment”, we can adjust the Gamma value according to the specific conditions of the scanned photos. In the software that comes with the scanner, the Gamma value is usually set to 1.4 for general use, 1.8 for printing, and 2.2 for web pages. Also, the scanner should be color corrected before use, otherwise it will most likely distort the scanned image; in addition, the brightness contrast option in the scanner driver dialog can be adjusted.
Common Fault 4: The color of the scanned image is blurred.
First look at the flat glass on the scanner by observation. If it is, please wipe the glass with a clean cloth or paper. Be careful not to use it. A liquid such as alcohol is rubbed, which will make the scanned image appear iridescent. If it is not a glass problem, please check the resolution of the scanner. For example, a 300dpi scanner will blur the image above 1200dpi. Because the 300dpi scanner sweeps 1200dpi is equivalent to putting a point four times larger. Also, check if the monitor settings are 16bit or more. If you scan some prints, it is understandable that there is a certain amount of blur caused by the texture. The processing method can be processed by the scanner itself or by image software such as Photoshop.
The popularity of scanners is getting higher and higher, but there are more faults in such peripherals, and the causes of failures are more complicated. Previous hand-held scanners and drum scanners are not currently the mainstream of the market, and flatbed scanners are the most popular. In terms of service life, flatbed scanners are the longest, followed by drum scanners, which have a relatively low lifetime. This is mainly due to the different internal structures of the three scanners and the different ways of use.
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