TP050F103Z-B-B Taiyo Yuden, TP050F103Z-B-B Datasheet - Page 19

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TP050F103Z-B-B

Manufacturer Part Number
TP050F103Z-B-B
Description
CAP CERM 10000PF 25V AXIAL
Manufacturer
Taiyo Yuden
Datasheet

Specifications of TP050F103Z-B-B

Capacitance
10000pF
Voltage - Rated
25V
Tolerance
-20%, +80%
Temperature Coefficient
Y5V (F)
Mounting Type
Through Hole
Operating Temperature
-25°C ~ 85°C
Applications
General Purpose
Package / Case
Axial
Size / Dimension
0.087" Dia x 0.126" L (2.20mm x 3.20mm)
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Ratings
-
Thickness
-
Lead Spacing
-

Available stocks

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Part Number
Manufacturer
Quantity
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Part Number:
TP050F103Z-B-B
Manufacturer:
TAIYO YUDEN
0
Precautions on the use of Axiel Leaded Ceramic Capacitors
1. Circuit Design
2. PCB Design
3. Considerations for automatic
PRECAUTIONS
insertion
当社カタログをご使用の際には 「当社製品に関するお断り」 を必ずお読みください。
Stages
◆ Verification of operating environment, electrical rating and
performance
1. A malfunction in medical equipment, spacecraft, nuclear
◆ Verification of Rated voltage (DC rated voltage)
1. The operating voltage for capacitors must always be lower
2. Even if the applied voltage is lower than the rated value, the
◆ Self-generated heat (Verification of Temperature)
1. If the capacitors specified only for DC use are used in AC or
◆ Operating Environment precautions
1. Capacitors should not be used in the following environments:
(1)Environmental conditions to avoid
a. exposure to water or salt water.
b. exposure to moisture or condensation.
c. exposure to corrosive gases (such as hydrogen sulfide,
1. When capacitors are mounted onto a PC board, hole dimen-
◆ Adjustment Automatic Insertion machines (leaded components)
1. When inserting capacitors in a PC board by auto-insertion ma-
reactors, etc. may cause serious harm to human life or have
severe social ramifications. As such, any capacitors to be
used in such equipment may require higher safety and/or
reliability considerations and should be clearly differentiated
from components used in general purpose applications.
than their rated values.
If an AC voltage is loaded on a DC voltage, the sum of the
two peak voltages should be lower than the rated value of
the capacitor chosen. For a circuit where both an AC and a
pulse voltage may be present, the sum of their peak voltages
should also be lower than the capacitor's rated voltage.
reliability of capacitors might be reduced if either a high fre-
quency AC voltage or a pulse voltage having rapid rise time
is present in the circuit.
pulse circuits, the AC or a pulse current can generate heat
inside the capacitor so the self-generated temperature rise
should be limited to within 20 ℃ . The surface temperature
measured should include this self-temperature rise. There-
fore, it is required to limit capacitor surface temperature
including self -generated heat should not exceed the maxi-
mum operating temperature of +85℃ .
sulfurous acid, chlorine, and ammonia)
sions on the board should match the lead pitch of the compo-
nent, if not it will cause breakage of the terminals or cracking
of terminal roots covered with resin as excess stress travels
through the terminal legs.
performance would be lost and may lead to a reduction in
insulation resistance and cause a withstand voltage failure.
chines the impact load imposed on the capacitors should be
minimized to prevent the leads from chucking or clinching.
Precautions
As a result, humidity resistance
1-1. When an AC or a pulse voltage is applied to capacitors specified for DC use, even
1-2. For capacitors, the voltage and frequency relationship is generally determined by
1. When installing products, care should be taken not to apply distortion stress as it may
2. Our company recommends the method to place the lead with fewer loads that join the
if the voltage is less than the rated voltage, the AC current or pulse current running
through the capacitor will cause the capacitor to self-generate heat because of the
loss characteristics.
The amount of heat generated depends on the dielectric materials used, capacitance,
applied voltage, frequency, voltage waveform, etc. The surface temperature changes
due to emitted heat which differs by capacitor shape or mounting method.
peak voltage at low frequencies, and by self-generated heat at high frequencies. (Refer
to the following curve.)
Please contact Taiyo Yuden with any questions regarding emitted heat levels in your
particular application. It is recommend the temperature rise be measured in the ac-
tual circuit to be used.
deform the products.
product.
Please read the "Notice for TAIYO YUDEN products" before using this catalog.
Technical considerations
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