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Union Unilok Alloy 400 1/2 Tube Fitting

Union Unilok Alloy 400 1/2 Tube Fitting

SKU:CYL-a2d1ce

Premium Union Unilok Alloy 400 1/2 Tube Fitting for precise instrumentation connections.

Regular price $29.99
Regular price Sale price $29.99
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Union Unilok Alloy 400 1/2 Tube Fitting

Union Unilok Alloy 400 1/2 Tube Fitting

$29.99

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Union Unilok Alloy 400 1/2 Tube Fitting

Union Unilok Alloy 400 1/2 Tube Fitting

$29.99

Quantity: 1

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The Union Unilok Alloy 400 1/2 Tube Fitting is a high-quality instrumentation tube fitting designed for precision and durability. Made of Alloy 400, this straight-shaped fitting ensures a secure connection with its 1/2 inch size on both ends. With dimensions of A: 2.02 in, C: 0.86 in, D: 0.90 in, E: 0.41 in, G: 7/8 in, H: 13/16 in, T: 1/2 in, and B: 1.22 in, this fitting meets stringent industry standards for reliable performance.

Product Specifications

Filter Circuit And Application Information Filter Circuit And Ap
Three different types of filter circuits are shown in this series; L, Pi and T; each with its own characteristics An analysis of each application by engineering personnel will indicate a preferred circuit from cost, performance and size considerations, as directed below: Features: L - Least expensive but most effective with high impedance noise sources.Pi - Often used in line filters when source and load impedance are not known but can increase unfiltered interference in control circuits or switch circuits.T - Reduces line noise level best in low impedance applications but most expensive.L filters provide significant insertion loss because of the impedance mismatch created when the capacitor end of the filter is mounted towards the high impedance noise source (load) and the inductor end is mounted towards the low impedance line.Pi filters usually provide maximum "dB per dollar" in a matched 50 ohm system, but many times are less effective under actual operating or test conditions. They are particularly suspect in installations involving switching transients, since they can in some instances increase the interference problem rather than correct it.The T circuit is used primarily with switching circuits. It reduces noise level on the system lines, causes no deterioration in the life of switching contacts, and in some instances actually prolongs switch contacts life.The successful operation of any high frequency filter depends on adequate bonding and good RF isolation between input and output. The filter must be bonded to same potential as one side of the RF noise source being filtered. The performance of the filter can be completely masked by ineffective bonding or poor RF isolation between input and output circuits. The RF filter uses the case as common ground for the internal capacitor and cannot provide its total performance if RF is permitted to bypass the filters by means of coupling between input and output circuits.If you have any questions about the circuit to be employed, please call our engineering department for application advice and information.
Specifications Body D
1.25 in
Specifications Body L
2.50 in
Specifications Ckt
L
Specifications Current Rating
1 A
Specifications Insertion Loss 015 Mhz
40
Specifications Note
All "L" Type filters are shown with inductors on the threaded neck ends. Filters with reverse circuits will be supplied when "R" is added to the part number.
Specifications Option
Filters with reverse circuits
Specifications Terminal Dimensions A
0.50 in
Specifications Terminal Dimensions Thread
7/16-20
Specifications Terminal Dimensions Z
0.370 in
Specifications Voltage Ac
250 V
Specifications Voltage Dc
600 V