12105C474KAT2A AVX Corporation, 12105C474KAT2A Datasheet

CAP CERM .47UF 10% 50V X7R 1210

12105C474KAT2A

Manufacturer Part Number
12105C474KAT2A
Description
CAP CERM .47UF 10% 50V X7R 1210
Manufacturer
AVX Corporation
Series
1210r
Datasheets

Specifications of 12105C474KAT2A

Capacitance
0.47µF
Tolerance
±10%
Package / Case
1210 (3225 Metric)
Voltage - Rated
50V
Temperature Coefficient
X7R
Mounting Type
Surface Mount, MLCC
Operating Temperature
-55°C ~ 125°C
Applications
General Purpose
Size / Dimension
0.126" L x 0.098" W (3.20mm x 2.50mm)
Thickness
1.27mm Max
Voltage Rating
50 Volts
Operating Temperature Range
- 55 C to + 125 C
Temperature Coefficient / Code
X7R
Product
General Type MLCCs
Dimensions
2.5 mm W x 3.2 mm L x 2.100 mm H
Termination Style
SMD/SMT
Dielectric Characteristic
X7R
Capacitance Tolerance
± 10%
Capacitor Case Style
1210
No. Of Pins
2
Capacitor Mounting
SMD
Rohs Compliant
Yes
Case Size
1210
Dielectric Strength
No breakdown or visual defects
Insulation Resistance
100000 Megohms or 1000 Megohms
Length
0.126 in. +⁄- 0.008 in.
Material, Element
Ceramic
Temperature, Operating, Maximum
125 °C
Temperature, Operating, Minimum
-55 °C
Termination
SMT
Voltage, Rating
50 VDC
Width
0.098 in. +⁄- 0.008 in.
Lead Free Status / RoHS Status
Lead free / RoHS Compliant
Features
-
Ratings
-
Lead Spacing
-
Lead Free Status / Rohs Status
Lead free / RoHS Compliant
Other names
478-1621-2
How to Order
Part Number Explanation
Commercial Surface Mount Chips
EXAMPLE: 08055A101JAT2A
High Voltage Surface Mount Chips
EXAMPLE: 1808AA271KA11A
2
(L" x W")
0805
Size
0201
0402
0603
0805
1206
1210
1812
1825
2220
2225
1808
Style
1206
1210
1808
1812
1825
2220
2225
3640
AVX
D = 35V
Voltage
Z = 10V
Y = 16V
F = 63V
* = 75V
E = 150V
V = 250V
4 = 4V
6 = 6.3V
3 = 25V
5 = 50V
1 = 100V
2 = 200V
7 = 500V
Contact Factory for
Special Voltages
5
W = 2500V
G = 2000V
C = 600V
A = 1000V
S = 1500V
H = 3000V
K = 5000V
J = 4000V
Voltage
A
W = X6S
G = Y5V
C = X7R
D = X5R
U = U Series
A = NP0(C0G)
Z = X7S
9 = 300V
X = 350V
8 = 400V
Dielectric
A
Temperature
Coefficient
C = X7R
A = C0G
A
Decimal point, e.g.,
100 = 10 pF
101 = 100 pF
102 = 1000 pF
223 = 22000 pF
224 = 220000 pF
105 = 1µF
106 = 10µF
107 = 100µF
For values below
Capacitance
10 pF, use “R”
9.1 pF = 9R1.
No. of Zeros
2 Sig. Fig +
220,000 pF = 224
Examples:
in place of
22,000 pF = 223
1,000 pF = 102
101
(2 significant digits
+ no. of zeros)
Examples:
100 pF = 101
Capacitance
10 pF = 100
1 µF = 105
Code
271
M = ±20%
C = ±.25 pF
D = ±.50 pF
G = ±2% (≥ 10 pF)
B = ±.10 pF
K = ±10%
P = +100%, -0%
F = ±1% (≥ 10 pF)
Z = +80%, -20%
J = ±5%
C0G: J = ±5%
Tolerance
X7R: K = ±10%
Capacitance
Tolerance
J*
M = ±20%
M = ±20%
K = ±10%
K
Z = +80%,
-20%
4 = Automotive
Applicable
Failure
A = N/A
Rate
Failure
A=Not
Rate
A
A
1 = Pd/Ag Term
Z = Soft
* B, C & D tolerance for ≤10 pF values.
1= Pd/Ag
T = Plated Ni
Standard Tape and Reel material (Paper/Embossed)
depends upon chip size and thickness.
See individual part tables for tape material type for
each capacitance value.
Terminations
T = Plated Ni
7 = Gold Plated
J = Tin/Lead
Termination
Factory For
Termination
Contact
and Sn
and Sn
1
T
Factory For
2 = 7" Reel
4 = 13" Reel
7 = Bulk Cass.
9 = Bulk
Packaging
Packaging/Marking
Multiples
Contact
1A = 7" Reel
3A = 13" Reel
9A = Bulk/Unmarked
Available
2
Unmarked
Unmarked
1A
Special
A = Std.
Code
A

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12105C474KAT2A Summary of contents

Page 1

How to Order Part Number Explanation Commercial Surface Mount Chips EXAMPLE: 08055A101JAT2A 0805 5 A Size Voltage Dielectric Capacitance (L" x W" NP0(C0G) 2 Sig. Fig + 0201 X7R No. ...

Page 2

... Style Case Array Number Voltage Size of Caps 0405 Z = 10V 2 = 0508 Y = 16V 3 = 0612 3 = 25V 5 = 50V 1 = 100V Low Inductance Capacitors (LICC) EXAMPLE: 0612ZD105MAT2A 0612 Z D Size Voltage Dielectric 0306 X7R 0508 Z = 10V D = X5R 0612 Y = 16V 3 = 25V 5 = 50V Interdigitated Capacitors (IDC) ...

Page 3

... C from -55°C to +125°C. Capacitance drift or hysteresis for C0G (NP0) ceramics is negligible at less than ±0.05% versus up to ±2% for films. Typical capacitance change with life is less than ±0.1% for C0G (NP0), one-fifth that shown by most other dielectrics ...

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