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101SHT100AS1LE датащи(PDF) 18 Page - Exxelia Group

номер детали 101SHT100AS1LE
подробное описание детали  Super HiQ
PDF  34 Pages
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производитель  EXXELIA [Exxelia Group]
домашняя страница  https://exxelia.com/en/
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CERAMIC CAPACITORS
134
www.exxelia.com
info@exxelia.com
Taping : dimensions
Page revised 06/20
II.2.2. Superconducting Detection Coil
This is a single piece of superconducting wire, configured as a second-order gradiome-
ter (see Fig. 3). This pick-up coil system is placed in the uniform magnetic field region
of the solenoidal superconducting magnet.
Fig. 3
II.2.3. SQUID
High sensitivity is possible because this device responds to a fraction of the flux quan-
tum. The SQUID device is usually a thin film that functions as an extremely sensitive
current-to-voltage-converter. A measurement is taken in this equipment by moving the
sample through the second-order gradiometer. Hence, the magnetic moment of the
sample induces an electric current in the pick-up coil system. A change in the magnetic
flux in these coils modifies the persistent current in the detection circuit. The current
change in the detection coils then produces a variation in the SQUID output voltage pro-
portional to the magnetic moment of the sample.
II.2.4. Superconducting Magnetic Shield
This is used to shield the SQUID sensor from the fluctuations of the ambient magnetic
field in the magnetometer’s location and from the large magnetic field produced by the
superconducting magnet.
II.2.5. Applications
This kind of equipment can be used to measure: (a) the real and imaginary components
of the AC magnetic susceptibility as a function of frequency, temperature, AC magnetic
field amplitude and DC magnetic field value; (b) the DC magnetic moment as a function
of temperature, DC magnetic field, and time.
II.3. Capsule Magnetization
The sample under testing has to be placed in a small capsule of 5-mm diameter and
8-mm length. Submitted to a magnetic field, the sample acquires a magnetization. The
capsule is then placed in a 6-cm tube which results in a field strength variation. This is
then measured in the SQUID and converted into a magnetization (uem-CGS unit in our
case). Thin paper is used to secure the sample in place inside the capsule.
Measurements were made with a controlled temperature (298.0±0.1K) and in the 0 to
3.5T range (35’000 Oe) as the magnetic field declined.
The first step before measuring any sample is to define the magnetization of the sam-
ple carrier, i.e. the capsule with some thin paper. Then, as the samples are measured, all
the magnetization values are corrected using the pattern below:
The signal from the capsule is diamagnetic and very weak. The signal from the capsule
+the paper assembly is more complex to determine, combining a strong diamagnetic
signal and a small ferromagnetic contribution (impurities in the paper material).
A constant corrective factor was then applied on all the measurements as a first ap-
proximation.
III. LABORATORY MEASUREMENTS
The aim of this study is to define a range of magnetization values within which electron-
ic components may be considered as non-magnetic and suitable for critical medical and
high RF power applications.
Several components were therefore tested to define a spectrum as wide as possible.
For instance, if we consider the high-Q multilayer ceramic capacitor: we started with
the chip alone, without even its terminations, adding a new variable - such as copper
or silver-palladium or nickel terminations, silver ribbons and finally laser marking - at
each subsequent stage. Using this protocol, it is easy to see the effect of each variable
on the final magnetization.
The magnetization in the charts below is given per gram. Each sample - or set of sam-
ples - is then weighed before the test run. The following designs were tested:
Designation
Number of Samples
Weight (mg)
Batch Number
501 CHB 4R7
3
155.1
C706527
501 CHB 4R7 BC
1
61.5
C649212
501 CHB 4R7 BC1L
1
133.6
C649212-0
501 CHB 4R7 BAL
1
57.5
52196
501 CHB 4R7 BS
1
61.2
C645208-2
silver leads type 1
2
55.4
CK/6297
silver leads type 2
2
57.2
CK/BC/2205
AT9401
1
58.6
OT0041006P
AT9402
1
60.8
OT0111206P
AT9410
2
194.0
OT0020806P
The descriptions of the samples used are as follows:
501 CHB 4R7
B size (1111) capacitor, 4.7pF, no termination
501 CHB 4R7 BC
B size (1111) capacitor, 4.7pF, copper termination
501 CHB 4R7 BC1L B size (1111) capacitor, 4.7pF, copper termination, leads
501 CHB 4R7 BAL B size (1111) capacitor, 4.7pF, silver-palladium termination
501 CHB 4R7 BS
B size (1111) capacitor, 4.7pF, nickel termination
silver leads type 1 silver leads used with B size capacitors
silver leads type 2 silver leads currently undergoing qualification
AT940
ceramic trimmer capacitor, 0.6 to 2.0pF, gold termination
AT9402
ceramic trimmer capacitor, 1.0 to 5.0pF, gold termination
AT9410
ceramic trimmer capacitor, 4.0 to 18pF, gold termination
III.1. DUT: 501 CHB 4R7
This sample shows a slightly paramagnetic behavior. Its magnetic susceptibility Xg is
around 10–7 uem.CGS/g which is a very low value.
General Information



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