SPECIFICATION
· Supplier : Samsung electro-mechanics
· Product : Multi-layer Ceramic Capacitor
(Reference sheet)
CL21B106KAYQFNE
CAP, 10㎌, 25V, ±10%, X7R, 0805
· Samsung P/N :
· Description :
A. Samsung Part Number
CL
①
① Series
② Size
③ Dielectric
④ Capacitance
⑤ Capacitance
tolerance
⑥ Rated Voltage
⑦ Thickness
21
②
B
③
106
④
K
⑤
A
⑥
Y
⑦
Q
⑧
F
⑨
Samsung Multi-layer Ceramic Capacitor
0805 (inch code)
L : 2.00 ± 0.20 ㎜
X7R
10 ㎌
±10 %
E
⑪
W : 1.25 ± 0.20 ㎜
Inner electrode
Termination
Plating
⑨ Product
⑩ Special
⑪ Packaging
⑧
25 V
1.25 ± 0.20 ㎜
N
⑩
Ni
Cu
Sn 100%
(Pb Free)
Normal
Product for POWER application
Embossed Type, 7" reel
B. Structure & Dimension
Dimension(㎜)
Samsung P/N
CL21B106KAYQFNE
L
W
T
BW
2.00 ± 0.20
1.25 ± 0.20
1.25 ± 0.20
0.50 +0.20/-0.30
C. Samsung Reliablility Test and Judgement Condition
Judgement
Capacitance
Tan δ (DF)
Insulation
Resistance
Appearance
Withstanding
Voltage
Temperature
Characteristics
Test condition
1㎑ ±10% / 1.0±0.2Vrms
Within specified tolerance
*A capacitor prior to measuring the capacitance is heat
treated at 150℃+0/-10℃ for 1hour and maintained in
ambient air for 24±2 hours.
Rated Voltage 60~120 sec
0.1 max.
10,000Mohm or 100Mohm×㎌
Whichever is smaller
No abnormal exterior appearance
No dielectric breakdown or
mechanical breakdown
Microscope (×10)
250% of the rated voltage
X7R(From -55℃ to 125℃, Capacitance change shoud be within ±15%) below 50% of the rated voltage
*Capacitance change rate = (C1-C2)/C3
C1 : Capacitance value shown in the table from step 3 to step 5
C2 : Capacitance value shown in the table at step 2
C3 : Capacitance value shown in the table at step 1
Step
1
2
3
4
5
Temperature (℃)
25±2
25±2
Min. temp.
25±2
Max. temp.
Applying voltage(V)
No bias
50% of the rated voltage
Adhesive Strength
of Termination
Bending Strength
No peeling shall be occur on the
terminal electrode
Capacitance change :
within ±12.5%
No mechanical damage
Solderability
More than 75% of terminal surface
is to be soldered newly
Resistance to
Soldering Heat
Vibration Test
Moisture
Resistance
High Temperature
Resistance
Temperature
Cycling
Capacitance change :
Tan δ, IR : initial spec.
Capacitance change :
Tan δ, IR : initial spec.
500g·f, for 10±1 sec.
Bending to the limit (1mm)
with 1.0mm/sec.
Outgoing test (SPL) ClassⅡ: 2mm
SnAg3.0Cu0.5 solder
245±5℃, 3±0.3sec.
(preheating : 80~120℃ for 10~30sec.)
within ±7.5%
Solder pot : 270±5℃, 10±1sec.
within ± 5%
Amplitude : 1.5mm
Capacitance change :
within ±12.5%
Tan δ : 0.125 max
IR :
500Mohm or 12.5Mohm×㎌
Whichever is smaller
Capacitance change :
within ±12.5%
Tan δ : 0.125 max
IR :
1,000Mohm or 25Mohm×㎌
Whichever is smaller
Capacitance change :
within ±7.5%
Tan δ, IR : initial spec.
From 10㎐ to 55㎐ (return : 1min.)
2hours × 3 direction (x, y, z)
With rated voltage
40±2℃, 90~95%RH, 500+12/-0hrs
With 100% of the rated voltage
Max. operating temperature
1,000+48/-0hrs
1 cycle condition
Min. operating temperature
Max. operating temperature
→
5 cycle test
※ The reliability test condition can be replaced by the corresponding accelerated test condition.
D. Recommended Soldering method :
Reflow ( Reflow Peak Temperature : 260±5℃, 30sec. )
Product specifications included in the specifications are effective as of March 1, 2013.
Please be advised that they are standard product specifications for reference only.
We may change, modify or discontinue the product specifications without notice at any time.
So, you need to approve the product specifications before placing an order.
Should you have any question regarding the product specifications,
please contact our sales personnel or application engineers.
→
→
25℃
25℃
The products listed in this Specification sheet are NOT designed and manufactured for any use
and applications set forth below.
Please note that any misuse of the products deviating from products specifications or information
provided in this Spec sheet may cause serious property damages or personal injury.
We will NOT be liable for any damages resulting from any misuse of the products, specifically
including using the products for high reliability applications as listed below.
If you have any questions regarding this 'Limitation of Use and Application', you should first contact
our sales personnel or application engineers.
Aerospace/Aviation equipment
Automotive or Transportation equipment (vehicles, trains, ships, etc)
Medical equipment
Military equipment
Disaster prevention/crime prevention equipment
Power plant control equipment
Atomic energy-related equipment
Undersea equipment
Traffic signal equipment
Data-processing equipment
Electric heating apparatus, burning equipment
Safety equipment
Any other applications with the same as or similar complexity or reliability to the applications
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