0612/0508/0306 LICC Low Inductance Chip Capacitors

0612/0508/0306 LICC
Low Inductance Chip Capacitors
GENERAL DESCRIPTION
The total inductance of chip capacitor is determined both by its
length to width ratio and by the mutual inductance coupling
between its electrodes.
Thus a 1210 chip size has a lower inductance than a 1206 chip.
This design improvement is the basis of AVX’s Low Inductance
Chip Capacitors (LICC), where the electrodes are terminated on the
long side of the chip instead of the short side. The 1206 becomes
an 0612, in the same manner, an 0805 becomes an 0508, an 0603
becomes an 0306. This results in a reduction in inductance from
the 1nH range found in normal chip capacitors to less than 0.4nH
for LICCs. Their low profile is also ideal for surface mounting (both
on the PCB and on IC package) or inside cavity mounting on the IC
itself.
LICC
MLCC
HOW TO ORDER
0612
Z
D
105
M
A
T
2
A*
Size
0306
0508
0612
Voltage
6 = 6.3V
Z = 10V
Y = 16V
3 = 25V
Dielectric
C = X7R
D = X5R
Capacitance
Code
2 Sig Digits +
Number of Zeros
Capacitance
Tolerance
K = ±10%
M = ±20%
Failure Rate
A = N/A
Terminations
T = Ni/Sn
Packaging
Available
2 = 7" Reel
4 = 13" Reel
Thickness
Thickness
mm (in)
0.56 (0.022)
0.61 (0.024)
0.76 (0.030)
1.02 (0.040)
1.27 (0.050)
PERFORMANCE CHARACTERISTICS
Capacitance Tolerances
Operation
Temperature Range
Temperature Coefficient
Voltage Ratings
Dissipation Factor
K = ±10%; M = ±20%
X7R = -55°C to +125°C;
X5R = -55°C to +85°C
±15% (0VDC)
10, 16, 25 VDC
6.3V = 6.5% max; 10V = 5.0% max;
16V = 3.5% max; 25V = 3.0% max
100,000 MΩ min, or 1,000 MΩ per
µF min.,whichever is less
Insulation Resistance
(@+25°C, RVDC)
TYPICAL INDUCTANCE
Package Style
Measured
Inductance (pH)
1206 MLCC
1200
0612 LICC
550
0508 LICC
510
0306 LICC
375
*Note: See Range Chart for Codes
TYPICAL IMPEDANCE CHARACTERISTICS
10
10
0508
1.0
0.1
Impedance (Ohms)
Impedance (Ohms)
0805
1206
1.0
0612
0.1
.01
.01
1
10
100
Frequency (MHz)
1000
1
10
100
Frequency (MHz)
1000
0612/0508/0306 LICC
Low Inductance Chip Capacitors
SIZE
Length
Width
Terminal
Pitch
Separation
0306
MM
0.81 ± 0.15
(in.)
(0.032 ± 0.006)
MM
1.60 ± 0.15
(in.)
(0.063 ± 0.006)
MM 0.38 max./0.13 min.
(in.) (0.015 max./0.005min.)
MM
023 min.
(in.)
(0.009 min.)
WVDC
CAP (uF)
and Thickness
10
16
0508
0612
1.27 ± 0.25
(0.050 ± 0.010)
2.00 ± 0.25
(0.080 ± 0.010)
0.50 max./0.13 min.
(0.020 max./0.005 min.)
0.38 min.
(0.015 min.)
1.60 ± 0.25
(0.063 ± 0.010)
3.20 ± 0.25
(0.126 ± 0.010)
0.46 max./0.13 min.
(0.018 max./0.005 min.)
0.50 min.
(0.020 min.)
6.3
10
16
25
6.3
10
16
25
0.010
0.015
0.022
0.047
0.068
0.10
0.15
0.22
0.47
0.68
1.0
1.5
2.2
3.3
Consult factory for additional requirements
mm (in.)
Solid = X7R
= X5R
mm (in.)
mm (in.)
0306
0508
0612
Code Thickness
Code Thickness
Code Thickness
A
0.61 (0.024)
S
0.56 (0.022)
S
0.56 (0.022)
V
0.76 (0.030)
V
0.76 (0.030)
A
1.02 (0.040)
W
1.02 (0.040)
A
1.27 (0.050)
0612/0508/0306 LICC
Low Inductance Chip Capacitors
PHYSICAL DIMENSIONS AND PAD LAYOUT
t
X
W
T
L
PHYSICAL CHIP DIMENSIONS
0612
0508
0306
millimeters (inches)
L
W
X (min.)
t
1.60±0.25
(0.063±0.010)
1.27±0.25
(0.050±0.010)
0.81±0.15
(0.032±0.006)
3.20±0.25
(0.126±0.010)
2.00±0.25
(0.080±0.010)
1.60±0.15
(0.063±0.006)
0.50
(0.020)
0.38
(0.015)
0.23
(0.009)
0.46 max./0.13 min.
(0.018 max./0.005 min.)
0.50 max./0.13 min.
(0.020 max./0.005 min.)
0.38 max./0.13 min.
(0.015 max./0.005 min.)
T - See Range Chart for Thickness and Codes
PAD LAYOUT DIMENSIONS
A
B
0612
0.76
(0.030)
3.05
(0.120)
0508
0.51
(0.020)
2.03
(0.080)
0306
0.31
(0.012)
1.52
(0.060)
"B"
.889mm
(0.035")
"A"
.889mm
(0.035")
NOTICE: Specifications are subject to change without notice. Contact your nearest AVX Sales Office for the latest specifications. All statements, information and data given
herein are believed to be accurate and reliable, but are presented without guarantee, warranty, or responsibility of any kind, expressed or implied. Statements
or suggestions concerning possible use of our products are made without representation or warranty that any such use is free of patent infringement and are not
recommendations to infringe any patent. The user should not assume that all safety measures are indicated or that other measures may not be required. Specifications are
typical and may not apply to all applications.
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S-LICC00M0701-N