DATA SHEET
SOLID TANTALUM CAPACITOR
SVS SERIES
Surface mount resin molded, Ultra miniaturized chip
The SVS series is a line-up of high performance ultra miniaturized tantalum chip capacitors.
The case dimensions are 2.0 mm
×
1.25 mm
×
1.2 mm as shown below.
FEATURES
™
The smallest molded chip tantalum capacitor (half size of the EIA standard A case)
™
Available up to 10
µ
F with case dimension of 2.0 mm
×
1.25 mm
×
1.2 mm (case code P)
APPLICATIONS
™
Portable stereos
™
VCR cameras
™
Hearing aids
DIMENSIONS
2.0
±
0.2
1.25
±
0.2
1.2 max.
0.5
±
0 . 2
0.5
±
0 . 2
0.9
±
0 . 1
(Unit : mm)
The information in this document is subject to change without notice.
Document No. EC0062EJ6V0DS00 (6th edition)
Date Published February 1998 M
Printed in Japan
©
1992 (1996)
SVS SERIES
PRODUCT LINE-UP AND MARKING CODE
U
R
(Vdc)
Capacitance
(
µ
F)
0.33
0.47
0.68
1
1.5
2.2
3.3
4.7
6.8
10
U
R
: Rated voltage
eJ
eN
eS
eW
7eA
GE
GJ
GN
GS
GW
7GA
JA
JE
JJ
JN
JS
JW
7JA
AW
AA
AE
AJ
AN
2.5
4
6.3
10
16
CN
CS
CW
CA
Marking detail
up to 6.8
µ
F
Polarity +
10
µ
F
JA
∗∗
Production date code
(indicated by dots)
7JA
Marking code
(corresponding to rated
voltage and capacitance)
∗∗
Implement date code on trial.
PART NUMBER SYSTEM
[BULK]
SVS
P
0J
105
M
Capacitance tolerance
±20%
Capacitance code in pF
First two digits represent significant
figures. Third digit specifies number
of zeros to follow.
Rated voltage
0E : 2.5 V, 0G : 4 V, 0J : 6.3 V
1A : 10 V, 1C : 16 V
Case code
SVS series
Part number of bulk
(see left)
[TAPE & REEL]
TE SVSP0J105M 8 R
Packing orientation
R : (Standard)
Orientation
Tape
Feed direction
⊕
Polarity mark
Tape and reel
L : (Non-Standard)
Orientation
Feed direction
Tape
⊕
Polarity mark
Tape width 8 mm
2
SVS SERIES
SPECIFICATIONS
No.
1
2
3
4
5
6
7
8
9
Items
Operating Temp. Range
Rated Voltage
Surge Voltage
Derated Voltage
Capacitance Range
Capacitance Tolerance
Leakage Current
Tangent of loss angle
2.5
3.3
1.6
4
5.2
2.5
Specifications
–55 to +125˚C
Test Conditions
Over 85˚C, applied voltage shall be derated
on the basis of the Derated Voltage at
125˚C specified in this table item no.4.
16
20
10
Vdc
Vdc
Vdc
up to 85˚C
up to 85˚C
at 125˚C
at 120 Hz
at 120 Hz
5 min. after rated voltage applied
at 25˚C, 120 Hz
at 85˚C
Surge voltage for 30 sec. (Rs = 1 kΩ)
Discharge for 5 min. 30 sec.
1 000 cycles
Step1 : +25˚C
Step2 : –55˚C
Step3 : +25˚C
Step4 : +85˚C
Step5 : +125˚C
Step6 : +25˚C
IEC68-2-14 Test N and IEC68-2-33
Guidance
–55 to +125˚C
5 cycles
IEC68-2-58 Test Td
Fully immersion to solder at 260˚C for
5 sec
IEC68-2-3 Test Ca
at 40˚C, 90 to 95% RH, for 500H
6.3
8
4
±20%
10
13
6.3
0.33 to 10
µ
F
0.5
µ
A max.
0.1 max. / 0.2 max. (Refer to ratings)
:
±20%
Tangent of loss angle : Initial requirement
Leakage Current
: Initial requirement
∆
C /C
Surge Voltage Resistance
Temp.
Characteris-
tics at high
and low
temperature
–55˚C
0
– 20
+85˚C
+20
0
+125˚C
+20
0
∆
C /C
Tangent of
loss angle
Leakage
Current
%
%
%
10
150% of initial
requirement
Initial
requirement
0.1 CV or 5
µ
A
whichever is
greater
:
±20%
150%of initial
requirement
0.125 CV or 6.25
µ
A
whichever is
greater
––
∆
C /C
11
Rapid change of temperature
Tangent of loss angle : Initial requirement
Leakage Current
: Initial requirement
:
±20%
∆
C /C
Tangent of loss angle : Initial requirement
Leakage Current
: Initial requirement
:
±20%
Tangent of loss angle : 150% of Intial requirement
12
Resistance to soldering
∆
C /C
13
Damp Heat (Steady state)
Leakage Current
: Initial requirement
14
Endurance
:
±20%
Tangent of loss angle : Initial requirement
Leakage Current
: 200% of Initial requirement
λ
0
= 1% / 1 000 h
∆
C /C
at 85˚C & 125˚C (Derated Voltage),
rated voltage applied for 2 000 H
at 85˚C & 125˚C (Derated Voltage),
rated voltage applied for 1 000 H
15
Failure Rate
∆
C /C : Capacitance change ratio
4