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C5750X7S1C105WTXXXX

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型号: C5750X7S1C105WTXXXX
PDF文件:
  • C5750X7S1C105WTXXXX PDF文件
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功能描述: General Application
PDF文件大小: 1392.3 Kbytes
PDF页数: 共72页
制造商: TDK[TDK Electronics]
制造商LOGO: TDK[TDK Electronics] LOGO
制造商网址: http://www.tdk.com
捡单宝C5750X7S1C105WTXXXX
PDF页面索引
120%
C Series
General Application
Type: C0402, C0603, C1005, C1608,
C2012, C3216, C3225, C4532, C5750
• High capacitance has been achieved through precision
technologies that enable the use of multiple thinner
ceramic dielectric layers.
• A monolithic structure ensures superior mechanical
strength and reliability.
• High-accuracy automatic mounting is facilitated through
the maintenance of very precise dimensional tolerances.
• Composed of only ceramics and metals, these
capacitors provide extremely dependable performance,
exhibiting virtually no degradation even when subjected to
temperature extremes.
• Low stray capacitance ensures high conformity with
nominal values, thereby simplifying the circuit design
process.
• Low residual inductance assures superior frequency
characteristics.
• Because electrostatic capacity has been obtained up to
the electrolytic capacitor range, these capacitors offer
long service life and are optimally suited for power supply
designs that require high levels of reliability.
• Owing to their low ESR and excellent frequency
characteristics, these products are optimally suited for
high frequency and high-density type power supplies.
Applications
Electronics equipment
Mobile communications equipment
Office automation equipment
Automotive electronics
Test and measurement equipment
Hybrid ICs, etc.
Decoupling
Smoothing
Charge pump
Features
Shape &
Dimensions
Dimensions in mm
Part Number
Construction
Series Name
C
2012 X7R 1E 105 K T XXXX
Dimensions L x W (mm)
Temperature Characteristic
Rated Voltage (DC)
Nominal Capacitance (pF)
Capacitance Tolerance
Packaging Style
Internal Codes
The capacitance is expressed in three digit
codes and in units of pico Farads (pF). The first
and second digits identify the first and second
significant figures of the capacitance. The third
digit identifies the multiplier. R designates a
decimal point.
Case Code Length Width
C0402
0.40 ± 0.02 0.20 ± 0.02
C0603
0.60 ± 0.03 0.30 ± 0.03
C1005
1.00 ± 0.05 0.50 ± 0.05
C1608
1.60 ± 0.10 0.80 ± 0.10
C2012
2.00 ± 0.20 1.25 ± 0.20
C3216
3.20 ± 0.20 1.60 ± 0.20
C3225
3.20 ± 0.40 2.50 ± 0.30
C4532
4.50 ± 0.40 3.20 ± 0.40
C5750
5.70 ± 0.40 5.00 ± 0.40
Temperature
Characteristics
Capacitance
Change
Temperature
Range
C0G
0±30 ppm/ºC
-55 to +125ºC
SL +350/-1000 ppm/ºC -25 to +85ºC
X5R
±15%
-55 to +85ºC
X6S +22% -55 to +105ºC
X7R
±15%
-55 to +125ºC
X7S
±22%
-55 to +125ºC
Y5V +22/-82% -33 to +85ºC
Packaging Code Style
T Tape & Reel
Tolerance Code Tolerance
W
± 0.05 pF
B
± 0.10 pF
C
± 0.25 pF
D
± 0.50 pF
E
± 0.20 pF
G
± 2%
J
± 5%
K
± 10%
M
± 20%
Z +80-20%
Capacitance Code Capacitance
0R5 0.5pF
010 1pF
102 1,000pF (1nF)
105 1,000,000pF (1µF)
Voltage
Code
Voltage
(DC)
1C 16V
1E 25V
1V 35V
Voltage
Code
Voltage
(DC)
0G 4V
0J 6.3V
1A 10V
TDK MLCC US Catalog Version B11Page 5
L Body Length
W Body Width
T Body Height
B Terminal Width
Voltage
Code
Voltage
(DC)
1H 50V
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