F72/F75 Series
Low Profile and HiCV Conformal Coated Chip
FEATURES
• Compliant to the RoHS2 directive 2011/65/EU
• SMD Conformal
• Small and low profile
LEAD-FREE COMPATIBLE
COMPONENT
APPLICATIONS
• Smartphone
• Mobile phone
• Wireless module
• Hearing aid
CASE DIMENSIONS:
millimeters (inches)
Code
L
7.20±0.30
(0.283±0.012)
7.20±0.30
(0.283±0.012)
7.10±0.30
(0.280±0.012)
7.30±0.30
(0.287±0.012)
7.20±0.30
(0.283±0.012)
7.10±0.30
(0.280±0.012)
W
H
A
B
D*
F72
H
A
H
B
D
L
W
F75
M
R
B
D
L
W
A
C
D
R
U
Solder electrode
F72 Case Dimensions
6.00±0.30
2.00 Max.
1.30±0.40
(0.236±0.012)
(0.079 Max)
(0.051±0.016)
6.00±0.30
1.20±0.30
1.30±0.40
(0.236±0.012)
(0.047±0.012)
(0.051±0.016)
F75 Case Dimensions
3.20±0.30
2.50±0.30
1.30±0.30
(0.126±0.012)
(0.098±0.012)
(0.051±0.012)
4.30±0.30
2.80±0.30
1.30±0.40
(0.136±0.012)
(0.110±0.012)
(0.051±0.016)
6.00±0.30
3.50±0.30
1.30±0.40
(0.236±0.012)
(0.138±0.012)
(0.051±0.016)
3.20±0.30
2.00 Max.
1.30±0.30
(0.126±0.012)
(0.079 Max)
(0.051±0.012)
3.80±0.60
6.20
(0.150±0.024) (0.244)
3.80±0.60
6.20
(0.150±0.024) (0.244)
3.60±0.60
(0.142±0.024)
3.90±0.60
(0.153±0.024)
3.80±0.60
(0.150±0.024)
3.60±0.60
(0.142±0.024)
6.00
(0.236)
6.40
(0.252)
6.20
(0.244)
6.00
(0.236)
*D dimension only for reference
HOW TO ORDER
F72
1A
107
Type
Rated
Voltage
Capacitance
Code
pF code: 1st two digits
represent significant figures,
3rd digit represents multiplier
(number of zeros to follow)
M
Tolerance
K = ±10%
M = ±20%
R
Case
Size
See
table
above
Packaging
See Tape & Reel
Packaging Section
AQ2
Single
Facing
Electrode
F75
Type
1C
Rated
Voltage
157
Capacitance
Code
pF code: 1st two digits
represent significant figures,
3rd digit represents multiplier
(number of zeros to follow)
M
Tolerance
K = ±10%
M = ±20%
D
Case
Size
See
table
above
Packaging
See Tape & Reel
Packaging Section
AQ2
Single
Facing
Electrode
TECHNICAL SPECIFICATIONS
Category Temperature Range:
Rated Temperature:
Capacitance Tolerance:
Dissipation Factor:
ESR 100kHz:
Leakage Current:
-55 to +125°C
+85°C
±20%, ±10% at 120Hz
Refer to next page
Refer to next page
After 1 minute’s application of rated voltage, leakage current at 20°C
is not more than 0.01CV or 0.5μA, whichever is greater.
After 1 minute’s application of rated voltage, leakage current at 85°C
is not more than 0.1CV or 5μA, whichever is greater.
After 1 minute’s application of derated voltage, leakage current at 125°C
is not more than 0.125CV or 6.3μA, whichever is greater.
+15% Max. at +125°C
+10% Max. at +85°C
-10% Max. at -55°C
Capacitance Change By Temperature
APRIL 2014
■
71
F72/F75 Series
Low Profile and HiCV Conformal Coated Chip
CAPACITANCE AND RATED VOLTAGE RANGE
(LETTER DENOTES CASE SIZE)
F72
Capacitance
μF Code
33
336
47
476
68
686
100
107
150
157
220
227
330
337
470
477
680
687
1000 108
1500 158
4V (0G)
Rated Voltage
6.3V (0J)
10V (1A)
R
R
R
R
R
R*
M
M
M
16V (1C)
R
R
R
F75
Capacitance
μF Code
68
686
100
107
150
157
220
227
330
337
470
477
680
687
1000 108
1500 158
2200 228
4V (0G)
Rated Voltage
6.3V (0J)
10V (1A)
16V (1C)
C
C
D
R
R
R
R
R
R
R
R
R
R
M
M
M
M
C
C/D
D
D/R
R
R
C
C/D
D/U
D/R/U*
R/U*
C
C/D
D
R/U
Available Ratings
*Codes under development – subject to change
Please contact to your local AVX sales office when these series
are being designed in your application.
RATINGS & PART NUMBER REFERENCE
F72
AVX
Part No.
Rated
Case Capacitance Voltage
Size
(μF)
(V)
DCL
(μA)
100kHz RMS *1
DF
ESR
Current
(%)
(Ω)
ΔC/C
(mA)
@ 120Hz @ 100kHz
(%)
20ºC
F75
AVX
Part No.
Rated
Case Capacitance Voltage
Size
(μF)
(V)
DCL
(μA)
100kHz RMS *1
DF
ESR
Current
(%)
(Ω)
ΔC/C
(mA)
@ 120Hz @ 100kHz
(%)
20ºC
F720G107MRC
F720G157MRC
F720G227MRC
F720G337MRC
F720J686MRC
F720J107MRC
F720J157MRC
F720J227MRC
F720J337MRC
F720J108MMCAQ2
F720J158MMCAQ2
F721A476MRC
F721A686MRC
F721A107MRC
F721A157MRC
F721A227MRC
F721A477MMCAQ2
F721A687MMCAQ2
F721A108MMCAQ2
F721C336MRC
F721C476MRC
F721C686MRC
F721C227MMCAQ2
F721C337MMCAQ2
R
R
R
R
R
R
R
R
R
M
M
R
R
R
R
R
M
M
M
R
R
R
M
M
100
150
220
330
68
100
150
220
330
1000
1500
47
68
100
150
220
470
680
1000
33
47
68
220
330
4 Volt
4
4.0
4
6.0
4
8.8
4
13.2
6.3 Volt
6.3
4.3
6.3
6.3
6.3
9.5
6.3 13.9
6.3 20.8
6.3 63.0
6.3 95.0
10 Volt
10
4.7
10
6.8
10 10.0
10 15.0
10 22.0
10 47.0
10 68.0
10
200
16 Volt
16
5.3
16
7.5
16 10.9
16 35.2
16 52.8
8
10
12
12
6
8
10
12
12
30
45
6
6
8
10
12
30
35
45
6
6
6
12
45
0.70
0.70
0.70
0.70
0.75
0.70
0.70
0.70
0.70
0.14
0.14
0.80
0.75
0.70
0.70
0.70
0.14
0.14
0.14
0.90
0.80
0.75
0.20
0.20
463
463
463
463
447
463
463
463
463
1118
1118
433
447
463
463
463
1118
1118
1118
408
433
447
935
935
*
*
*
*
*
*
*
*
*
±15
±20
*
*
*
*
*
±15
±20
±20
*
*
*
±20
±20
F750G337MCC
F750G477MCC
F750G477MDC
F750G687MDC
F750G108MDC
F750G108MRC
F750G158MRC
F750G228MRC
F750J227MCC
F750J337MCC
F750J337MDC
F750J477MDC
F750J477MUC
F750J687MDC
F750J687MRC
F750J108MRC
F751A157MCC
F751A227MCC
F751A227MDC
F751A337MDC
F751A477MRC
F751A477MUCAQ2
F751C686MCC
F751C107MCC
F751C157MDC
F751C227MRC
C
C
D
D
D
R
R
R
C
C
D
D
U
D
R
R
C
C
D
D
R
U
C
C
D
R
330
470
470
680
1000
1000
1500
2200
220
330
330
470
470
680
680
1000
150
220
220
330
470
470
68
100
150
220
* In case of capacitance tolerance ± 10% type, “K” will be put at 9th digit of type numbering system
4 Volt
4
13.2
4
18.8
4
18.8
4
27.2
4
40.0
4
40.0
4
60.0
4
88.0
6.3 Volt
6.3 13.9
6.3 20.8
6.3 20.8
6.3 29.6
6.3 29.6
6.3 42.8
6.3 42.8
6.3 63.0
10 Volt
10 15.0
10 22.0
10 22.0
10 33.0
10 47.0
10 94.0
16 Volt
16 10.9
16 16.0
16 24.0
16 35.2
10
14
14
18
24
24
30
45
10
10
10
14
15
18
18
24
10
10
10
10
14
30
10
10
10
10
0.15
0.12
0.12
0.12
0.12
0.12
0.12
0.07
0.20
0.15
0.15
0.12
0.10
0.12
0.12
0.12
0.22
0.20
0.20
0.15
0.12
0.15
0.22
0.22
0.22
0.20
856
957
1118
1118
1118
1443
1443
1890
742
856
1000
1118
1049
1118
1443
1443
707
742
866
1000
1443
856
707
707
826
1118
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
*
±20
*
*
*
*
*1:
ΔC/C
Marked “*”
Item
Damp Heat
Tempereature cycles
Resistance soldering heat
Surge
Endurance
F72 All Case (%)
±10
±5
±5
±5
±10
* In case of capacitance tolerance ± 10% type, “K” will be put at 9th digit of type numbering system
*1:
ΔC/C
Marked “*”
Item
Damp Heat
Tempereature cycles
Resistance soldering heat
Surge
Endurance
F75 All Case (%)
±10
±5
±5
±5
±10
72
■
APRIL 2014
F72/F75 Series
Low Profile and HiCV Conformal Coated Chip
QUALIFICATION TABLE
Damp Heat
(Steady State)
At 40°C, 90 to 95% R.H., 500 hours (No voltage applied)
Capacitance Change ........... Refer to page 72 (*1)
Dissipation Factor ................ Initial specified value or less
Leakage Current .................. Initial specified value or less
At -55°C / +125°C, 30 minutes each, 5 cycles
Capacitance Change ........... Refer to page 72 (*1)
Dissipation Factor ................ Initial specified value or less
Leakage Current .................. Initial specified value or less
10 seconds reflow at 260°C, 10 seconds immersion at 260°C.
Capacitance Change ........... Refer to page 72 (*1)
Dissipation Factor ................ Initial specified value or less
Leakage Current .................. Initial specified value or less
After application of surge voltage in series with a 33Ω resistor at the rate of 30 seconds ON, 30 seconds OFF,
for 1000 successive test cycles at 85ºC, capacitors shall meet the characteristic requirements in the table above.
Capacitance Change ........... Refer to page 72 (*1)
Dissipation Factor ................ Initial specified value or less
Leakage Current .................. Initial specified value or less
After 2000 hours’ application of rated voltage at 85°C,
capacitors shall meet the characteristic requirements in the table above.
Capacitance Change ........... Refer to page 72 (*1)
Dissipation Factor ................ Initial specified value or less
Leakage Current .................. Initial specified value or less
After applying the pressure load of 5N for 10±1 seconds horizontally to the center of capacitor side body
which has no electrode and has been soldered beforehand on a substrate, there shall be found neither
exfoliation nor its sign at the terminal electrode.
Keeping a capacitor surface-mounted on a substrate upside down and supporting the substrate at
both of the opposite bottom points 45mm apart from the center of capacitor, the pressure strength is
applied with a specified jig at the center of substrate so that the substrate may bend by 1mm as
illustrated. Then, there shall be found no remarkable abnormality on the capacitor terminals.
Temperature Cycles
Resistance to
Soldering Heat
Surge
Endurance
Shear Test
Terminal Strength
APRIL 2014
■
73