CTX0.68-1A-R Allicdata Electronics
Allicdata Part #:

CTX0.68-1A-R-ND

Manufacturer Part#:

CTX0.68-1A-R

Price: $ 0.00
Product Category:

Inductors, Coils, Chokes

Manufacturer: Eaton
Short Description: INDUCT ARRAY 2 COIL 752NH SMD
More Detail: Unshielded 2 Coil Inductor Array 3.01µH Inductance...
DataSheet: CTX0.68-1A-R datasheetCTX0.68-1A-R Datasheet/PDF
Quantity: 1000
1 +: 0.00000
Stock 1000Can Ship Immediately
$ 0
Specifications
Current Saturation - Series: 4.69A
Height: 0.165" (4.19mm)
Size / Dimension: 0.450" L x 0.450" W (11.43mm x 11.43mm)
Package / Case: Nonstandard
Mounting Type: Surface Mount
Operating Temperature: -40°C ~ 85°C
Ratings: --
Shielding: Unshielded
DC Resistance (DCR) - Series: 18.5 mOhm Max
DC Resistance (DCR) - Parallel: 4.6 mOhm Max
Series: OCTA-PAC® PLUS
Current Saturation - Parallel: 9.4A
Current Rating - Series: 4.48A
Current Rating - Parallel: 9A
Tolerance: ±25%
Inductance - Connected In Series: 3.01µH
Inductance - Connected In Parallel: 752nH
Number of Coils: 2
Part Status: Obsolete
Packaging: Tape & Reel (TR) 
Description

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CTX0.68-1A-R signal transformers are primarily used in arrays for many type of applications. An array is a group of individual objects, such as radio antennas, connected together and coordinated in such a way so that each contributes its maximum possible effect to the total effect. The CTX0.68-1A-R is useful for many array applications, due to its ability to provide precise levels of gain to the signals it is responsible for converting.

One such application field for the CTX0.68-1A-R is in its use as a phased-array antenna. A phased-array antenna is an antenna that can change its polarization properties in order to control the wavefront defined by it. This is done by mounting a number of individual radiating elements on a special board, and then phase shift them. The phase-shift control is achieved by using the CTX0.68-1A-R to match the impedance of each element, and to provide the gain needed.

The CTX0.68-1A-R signal transformer also finds application in radar systems. Radar systems work by sending out a burst of high frequency signals into the air, and then waiting for the return of some of that energy reflected off of any objects which the radar may be detecting. By analyzing the return signal, the radar system can determine the distance and velocity of whatever it detects. For most radar applications, it is necessary to match the output impedance of the transmitter, and the CTX0.68-1A-R signal transformer is excellent for this task due to its high precision impedance control.

In addition to the application fields already discussed, the CTX0.68-1A-R signal transformer can be used in many other applications, such as in medical imaging systems and communications networks. In these types of applications, the CTX0.68-1A-R is used to match the impedance levels of the signals being exchanged, thereby ensuring more efficient operation of the system.

The working principle of the CTX0.68-1A-R signal transformer is fairly simple. The device essentially functions as an intelligent impedance matching device, allowing two different signals of different impedances to exchange information with each other. This is done by using a set of inductors, capacitors and resistors, as well as other components, in order to effectively match the difference in impedance between two different signals.

The CTX0.68-1A-R signal transformer is also designed to be very efficient, helping to reduce the amount of power needed to power it. This helps to make the signal transformer more reliable and robust, as well as helping to reduce the amount of noise it produces. Additionally, the CTX0.68-1A-R is designed to be resistant to damage from extreme temperatures, as well as from shocks and vibrations.

In summary, the CTX0.68-1A-R signal transformer is an extremely useful device for many different types of applications, due to its precision impedance matching capabilities. The device is used in many different types of arrays, as well as radar systems, medical imaging systems and communications networks, making it a very versatile and important component. The working principle of the device is fairly simple, and the design of the device is robust and reliable, making it a great choice for any application where precision impedance matching and efficient operation are of great importance.

The specific data is subject to PDF, and the above content is for reference

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