Fi-Shock SS-4000X AC Powered Heavy-Duty 20 Miles Electric Fence Charger with Self-Diagnostic Circuitry

Thursday, September 22, 2011 reviews

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Fi-Shock SS-4000X AC Powered Heavy-Duty 20 Miles Electric Fence Charger with Self-Diagnostic Circuitry

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  • Heavy duty chargers for electric fence containment of pigs, cattle, horses, deer, cows, sheep and goats
  • Uses two 1 amp fuses for down-line protection against power surges. Output Voltage: 15 KV +/- 20-Percent open circuit Voltage
  • Self-diagnostic; shows if circuit board is operational for easy repair analysis
  • UL listed AC powered fence electric energizer. Indicator lamp lights show strength of electrical charge on fence
  • One Year Limited Warranty
Lights show the strength of the electric charge on a fence - high, medium, low and insufficient. Indicates whether the card is designed for easy repair analysis commissioned. Fuse panel. Uses two 1 Amp fuses. UL. Range: Up to 20 miles. Input voltage :110-120VAC, 60 Hz, 0.1 A, 12 W. Output voltage: 15 kV, 1 A + / - 20%, the peak DC output.

Listprice :$ 99.99

More Diagnostic Products

ultrasound diagnosis is a technique based on ultrasound diagnostic imaging to visualize muscles, tendons, and many internal organs to make them visible to their size, structure and pathological changes using real-time tomographic images.

ultrasound and ultrasound by radiologists was to represent the human body for many years and has become one of the most commonly used diagnostic in modern medicine. The technology is relatively inexpensive and convenient, especially when combined with other techniques such as digital radiography compared magnetic resonance imaging and computed tomography.

Ultrasound is a noninvasive test that medical doctors to diagnose and treat diseases. Ultrasound images of the musculoskeletal system are the images of muscles, tendons, ligaments, joints and soft tissues in the body.

Diagnostic Ultrasound is also used to visualize the fetus during routine and emergency prenatal care. These diagnostic applications will be used during pregnancy, referred to the obstetric ultrasound.

The diagnostic ultrasound involves a specific part of the body to high-frequency sound waves to produce images of the body. Ultrasound non-ionizing radiation. However, care must be taken to use low power settings and avoid scanning pulsed wave of the fetal brain, except where noted are in high-risk pregnancies.

Because ultrasound images are captured in real time, they can show the structure and movement of internal organs and blood in blood vessels.

diagnostic ultrasound devices have different Doppler techniques to make the arteries and veins visible. The most common is the color Doppler or power Doppler, but other techniques are used to show blood flow to an organ. Through the use of pulsed Doppler or CW Doppler blood flow velocities can be calculated. Diagnostic ultrasound has the advantage of not need a direct contact with the internal members of the organization. Therefore, the ultrasound probe moved and diagnostic unit for the best scan angle to see. Typical parts include front-end diagnostic ultrasound, beam shaper, and blocked the implementation of back-end.

The block contains a frontal part of the diagnostic ultrasound probe, the transducer elements switching system, the amplifier output power, low noise amplifier input and the ADC. The beam shaping is programmed at the factory by some chip diagnostic ultrasound done.

The back-end ultrasound diagnostic imaging is composed of different reconstruction algorithms and expansion. Color Doppler, harmonic development, non-linear processing, frequency, special connection with the conversion of interpolation and digitizing technologies are commonly used.

The applications are increasingly important in the current trend in ultrasound imaging systems. PC-based applications are accepted in current commercial systems. They offer a user-friendly, easily accessible database, remote diagnostics and data storage for later analysis. Phased array is widely used in transducers used in ultrasound diagnosis.

The ultrasound beam former part of the transmitter determines the pattern of delay and pulse train which set the priority of transmission desired. The outputs of the former beam is then circulated through the high voltage amplifiers that drive the conversion increased. These amplifiers can be digitally controlled to shape the pulses to transmit energy to better delivery of sub-elements of diagnostic ultrasound transducer. Are generally used in areas of multiple transmit focal lengths.

The field should be mapped in place by the energy transmitted is spreading ever deeper into the body. The main reason is the energy transferred to points that increase deeper in the body, because the signal becomes thinner and weaker as it moves through the body.

diagnostic ultrasound systems, the early sampling of the echo signal of the process of back-end. The recorded signals can be combined to extract the useful signal. Subsequently, the amplitude of the useful signals user amplifier, for best picture.

The scope

block application of diagnostic ultrasound is designed to manage basic information in different ways. It may, for example, create 2D, 3D and 4D images, harmonic imaging (second harmonic image has greater clarity, contrast and detail the range of fundamental frequency) and color Doppler. It can also improve image quality by filtering out noise and artifacts.

Last but not least, is the conversion of filtered data analysis of diagnostic ultrasound and places them in a presentable for display. It converts polar coordinates to rectangular pixels positions. Normally, this interpolation is performed at the same time during the conversion.

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