Reference Specification
Leaded MLCC for General Purpose
RDE Series
Product specifications in this catalog are as of Jun. 2022, and are subject to change or
obsolescence without notice.
Please consult the approval sheet before ordering.Please read rating and Cautions first.
Reference only
CAUTION
1. OPERATING VOLTAGE
When DC-rated capacitors are to be used in AC or ripple current circuits, be sure to maintain the Vp-p
value of the applied voltage or the Vo-p which contains DC bias within the rated voltage range. When the
voltage is started to apply to the circuit or it is stopped applying, the irregular voltage may be generated
for a transit period because of resonance or switching. Be sure to use a capacitor within rated voltage
containing these irregular voltage.
When DC-rated capacitors are to be used in input circuits from commercial power source (AC filter),
be sure to use Safety Recognized Capacitors because various regulations on withstand voltage or
impulse withstand established for each equipment should be taken into considerations.
Voltage
DC Voltage
DC+AC Voltage
AC Voltage
Pulse Voltage(1)
Pulse Voltage(2)
Positional
Measurement
Vo-p
Vo-p
Vp-p
Vp-p
Vp-p
2. OPERATING TEMPERATURE AND SELF-GENERATED HEAT
Keep the surface temperature of a capacitor below the upper limit of its rated operating temperature range.
Be sure to take into account the heat generated by the capacitor itself.
When the capacitor is used in a high-frequency current, pulse current or the like, it may have the selfgenerated heat due to dielectric-loss. In case of Class 2 capacitors (Temp.Char. : X7R,X7S,X8L, etc.),
applied voltage should be the load such as self-generated heat is within 20 °C on the condition of
atmosphere temperature 25 °C. Please contact us if self-generated heat is occurred with Class 1
capacitors (Temp.Char. : C0G,U2J,X8G, etc.). When measuring, use a thermocouple of small thermal
capacity-K of Φ0.1mm and be in the condition where capacitor is not affected by radiant heat of other
components and wind of surroundings. Excessive heat may lead to deterioration of the capacitor’s
characteristics and reliability.
3. FAIL-SAFE
Be sure to provide an appropriate fail-safe function on your product to prevent a second damage that
may be caused by the abnormal function or the failure of our product.
4. OPERATING AND STORAGE ENVIRONMENT
The insulating coating of capacitors does not form a perfect seal; therefore, do not use or store
capacitors in a corrosive atmosphere, especially where chloride gas, sulfide gas, acid, alkali, salt or the
like are present. And avoid exposure to moisture. Before cleaning, bonding, or molding this product, verify
that these processes do not affect product quality by testing the performance of a cleaned, bonded or
molded product in the intended equipment. Store the capacitors where the temperature and relative
humidity do not exceed 5 to 40 °C and 20 to 70%. Use capacitors within 6 months.
5. VIBRATION AND IMPACT
Do not expose a capacitor or its leads to excessive shock or vibration during use.
6. SOLDERING
When soldering this product to a PCB/PWB, do not exceed the solder heat resistance specification of the
capacitor. Subjecting this product to excessive heating could melt the internal junction solder and may
result in thermal shocks that can crack the ceramic element.
7. BONDING AND RESIN MOLDING, RESIN COAT
In case of bonding, molding or coating this product, verify that these processes do not affect the quality
of capacitor by testing the performance of a bonded or molded product in the intended equipment.
In case of the amount of applications, dryness / hardening conditions of adhesives and molding resins
containing organic solvents (ethyl acetate, methyl ethyl ketone, toluene, etc.) are unsuitable, the outer
coating resin of a capacitor is damaged by the organic solvents and it may result, worst case, in a short
circuit.
The variation in thickness of adhesive or molding resin may cause a outer coating resin cracking and/or
ceramic element cracking of a capacitor in a temperature cycling.
8. TREATMENT AFTER BONDING AND RESIN MOLDING, RESIN COAT
When the outer coating is hot (over 100 °C) after soldering, it becomes soft and fragile.
So please be careful not to give it mechanical stress.
EGLEDMNO03
1/20
Reference only
Failure to follow the above cautions may result, worst case, in a short circuit and cause fuming or partial
dispersion when the product is used.
9. LIMITATION OF APPLICATIONS
Please contact us before using our products for the applications listed below which require especially
high reliability for the prevention of defects which might directly cause damage to the third party’s life,
body or property.
1. Aircraft equipment
2. Aerospace equipment
3. Undersea equipment
4. Power plant control equipment
5. Medical equipment
6. Transportation equipment (vehicles, trains, ships, etc.)
7. Traffic signal equipment
8. Disaster prevention / crime prevention equipment
9. Data-processing equipment exerting influence on public
10. Application of similar complexity and/or reliability requirements to the applications listed in the above.
NOTICE
1. CLEANING (ULTRASONIC CLEANING)
To perform ultrasonic cleaning, observe the following conditions.
Rinse bath capacity : Output of 20 watts per liter or less.
Rinsing time : 5 min maximum.
Do not vibrate the PCB/PWB directly.
Excessive ultrasonic cleaning may lead to fatigue destruction of the lead wires.
2. SOLDERING AND MOUNTING
Insertion of the Lead Wire
• When soldering, insert the lead wire into the PCB without mechanically stressing the lead wire.
• Insert the lead wire into the PCB with a distance appropriate to the lead space.
3. CAPACITANCE CHANGE OF CAPACITORS
• Class 2 capacitors (Temp.Char. : X7R,X7S,X8L etc.)
Class 2 capacitors an aging characteristic, whereby the capacitor continually decreases its capacitance
slightly if the capacitor leaves for a long time. Moreover, capacitance might change greatly depending on
a surrounding temperature or an applied voltage. So, it is not likely to be able to use for the time constant
circuit.
Please contact us if you need a detail information.
NOTE
1. Please make sure that your product has been evaluated in view of your specifications with our product
being mounted to your product.
2. You are requested not to use our product deviating from this specification.
EGLEDMNO03
2/20
Reference only
1. Application
This product specification is applied to Leaded MLCC RDE series used
for General Electronic equipment.
Do not use these products in any automotive power train or safety
equipment including battery chargers for electric vehicles and plug-in hybrids.
2. Rating
• Part Number Configuration
ex.)
RDE
Series
1E
104
K
0
P1
Temperature
R7
Rated
Capacitance
Capacitance
Dimension
Lead
Individual
Characteristics
Voltage
Style
Specification
Tolerance
(LxW)
H03
B
Package
• Temperature Characteristics
Code
R7
C7
Temp. Char.
X7R
(EIA code)
X7S
(EIA code)
• Rated Voltage
Code
1E
1H
2A
Temp. Range
Cap. Change
Standard
Temp.
Operating
Temp. Range
-55~125°C
+/-15%
25°C
-55~125°C
-55~125°C
+/-22%
25°C
-55~125°C
Rated voltage
DC25V
DC50V
DC100V
• Capacitance
The first two digits denote significant figures ; the last digit denotes the multiplier of 10 in pF.
ex.) In case of 104
4
10×10 = 100000pF
• Capacitance Tolerance
Code
Capacitance Tolerance
K
+/-10%
M
+/-20%
• Dimension (LxW)
Please refer to [ Part number list ].
• Lead Style
*Lead wire is "solder coated CP wire".
Code
Lead Style
K1
Inside crimp type
M1
Inside crimp taping type
P1
Outside crimp type
S1
Outside crimp taping type
Lead spacing (mm)
5.0+/-0.8
5.0+0.6/-0.2
2.5+/-0.8
2.5+0.4/-0.2
• Individual Specification
Murata’s control code.
Please refer to [ Part number list ].
TEIKAKU
3/20
Reference only
• Package
Code
A
B
Package
Taping type of Ammo
Bulk type
3. Marking
Temp. char.
Capacitance
Capacitance tolerance
Rated voltage
Company name code
:
:
:
:
Letter code : C (X7R/X7S Char. Except dimension code : 0,1)
3 digit numbers
Code
Letter code : 2 (DC25V. Except dimension code : 0,1)
Letter code : 5 (DC50V. Except dimension code : 0,1)
Letter code : 1 (DC100V. Except dimension code : 0,1)
: Abbreviation :
(Except dimension code : 0,1)
(Ex.)
Rated voltage
DC25V
DC50V
DC100V
104K
103K
224K
Dimension code
0,1
2
475
K2C
105
K5C
105
K1C
3,W
226
K2C
335
K5C
225
K1C
TEIKAKU
4/20
Reference only
4. Part number list
Unit : mm
Customer
Part Number
Murata Part Number
T.C.
DC
Rated
Volt.
(V)
Cap.
Cap.
Tol.
Dimension (mm)
L
W
W1
F
T
Dimension Pack
(LxW)
qty.
Lead Style (pcs)
RDER71E104K0P1H03B
X7R
25
0.10μF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDEC71E224K0P1H03B
X7S
25
0.22μF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDEC71E474K0P1H03B
X7S
25
0.47μF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDEC71E105K0P1H03B
X7S
25
1.0μF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDEC71E225K1P1H03B
X7S
25
2.2μF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDEC71E475K2P1H03B
X7S
25
4.7μF
±10%
5.5
4.0
6.0
2.5
3.15
2P1
500
RDEC71E106K2P1H03B
X7S
25
10μF
±10%
5.5
4.0
6.0
2.5
3.15
2P1
500
RDEC71E226K3P1H03B
X7S
25
22μF
±10%
5.5
5.0
7.5
2.5
4.0
3P1
500
RDER71H221K0P1H03B
X7R
50
220pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H331K0P1H03B
X7R
50
330pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H471K0P1H03B
X7R
50
470pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H681K0P1H03B
X7R
50
680pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H102K0P1H03B
X7R
50
1000pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H152K0P1H03B
X7R
50
1500pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H222K0P1H03B
X7R
50
2200pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H332K0P1H03B
X7R
50
3300pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H472K0P1H03B
X7R
50
4700pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H682K0P1H03B
X7R
50
6800pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H103K0P1H03B
X7R
50
10000pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H153K0P1H03B
X7R
50
15000pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H223K0P1H03B
X7R
50
22000pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H333K0P1H03B
X7R
50
33000pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H473K0P1H03B
X7R
50
47000pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H683K0P1H03B
X7R
50
68000pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H104K0P1H03B
X7R
50
0.10μF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER71H154K1P1H03B
X7R
50
0.15μF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDER71H224K1P1H03B
X7R
50
0.22μF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDER71H334K1P1H03B
X7R
50
0.33μF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDER71H474K1P1H03B
X7R
50
0.47μF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDER71H684K2P1H03B
X7R
50
0.68μF
±10%
5.5
4.0
6.0
2.5
3.15
2P1
500
RDEC71H105K1P1H03B
X7S
50
1.0μF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDER71H105K2P1H03B
X7R
50
1.0μF
±10%
5.5
4.0
6.0
2.5
3.15
2P1
500
RDER71H155K2P1H03B
X7R
50
1.5μF
±10%
5.5
4.0
6.0
2.5
3.15
2P1
500
RDER71H225K2P1H03B
X7R
50
2.2μF
±10%
5.5
4.0
6.0
2.5
3.15
2P1
500
RDER71H335K3P1H03B
X7R
50
3.3μF
±10%
5.5
5.0
7.5
2.5
4.0
3P1
500
RDEC71H475K2P1H03B
X7S
50
4.7μF
±10%
5.5
4.0
6.0
2.5
3.15
2P1
500
RDEC71H106K3P1H03B
X7S
50
10μF
±10%
5.5
5.0
7.5
2.5
4.0
3P1
500
RDER72A221K0P1H03B
X7R
100
220pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER72A331K0P1H03B
X7R
100
330pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER72A471K0P1H03B
X7R
100
470pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
PNLIST
5/20
Reference only
Unit : mm
Customer
Part Number
Murata Part Number
T.C.
DC
Rated
Volt.
(V)
Cap.
Cap.
Tol.
Dimension (mm)
L
W
W1
F
T
Dimension Pack
(LxW)
qty.
Lead Style (pcs)
RDER72A681K0P1H03B
X7R
100
680pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER72A102K0P1H03B
X7R
100
1000pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER72A152K0P1H03B
X7R
100
1500pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER72A222K0P1H03B
X7R
100
2200pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER72A332K0P1H03B
X7R
100
3300pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER72A472K0P1H03B
X7R
100
4700pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER72A682K0P1H03B
X7R
100
6800pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER72A103K0P1H03B
X7R
100
10000pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER72A153K0P1H03B
X7R
100
15000pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER72A223K0P1H03B
X7R
100
22000pF
±10%
5.0
3.5
6.0
2.5
2.5
0P1
500
RDER72A333K1P1H03B
X7R
100
33000pF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDER72A473K1P1H03B
X7R
100
47000pF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDER72A683K1P1H03B
X7R
100
68000pF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDER72A104K1P1H03B
X7R
100
0.10μF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDER72A154K2P1H03B
X7R
100
0.15μF
±10%
5.5
4.0
6.0
2.5
3.15
2P1
500
RDER72A224K1P1H03B
X7R
100
0.22μF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDER72A334K1P1H03B
X7R
100
0.33μF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDER72A474K1P1H03B
X7R
100
0.47μF
±10%
5.0
3.5
5.0
2.5
3.15
1P1
500
RDER72A684K2P1H03B
X7R
100
0.68μF
±10%
5.5
4.0
6.0
2.5
3.15
2P1
500
RDER72A105K2P1H03B
X7R
100
1.0μF
±10%
5.5
4.0
6.0
2.5
3.15
2P1
500
RDEC72A155K3P1H03B
X7S
100
1.5μF
±10%
5.5
5.0
7.5
2.5
4.0
3P1
500
RDEC72A225K3P1H03B
X7S
100
2.2μF
±10%
5.5
5.0
7.5
2.5
4.0
3P1
500
RDER71E104K0K1H03B
X7R
25
0.10μF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDEC71E224K0K1H03B
X7S
25
0.22μF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDEC71E474K0K1H03B
X7S
25
0.47μF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDEC71E105K0K1H03B
X7S
25
1.0μF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDEC71E225K1K1H03B
X7S
25
2.2μF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
RDEC71E475K2K1H03B
X7S
25
4.7μF
±10%
5.5
4.0
6.0
5.0
3.15
2K1
500
RDEC71E106K2K1H03B
X7S
25
10μF
±10%
5.5
4.0
6.0
5.0
3.15
2K1
500
RDEC71E226K3K1H03B
X7S
25
22μF
±10%
5.5
5.0
7.5
5.0
4.0
3K1
500
RDEC71E476MWK1H03B
X7S
25
47μF
±20%
5.5
7.5
10.0
5.0
4.0
WK1
500
RDER71H221K0K1H03B
X7R
50
220pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H331K0K1H03B
X7R
50
330pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H471K0K1H03B
X7R
50
470pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H681K0K1H03B
X7R
50
680pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H102K0K1H03B
X7R
50
1000pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H152K0K1H03B
X7R
50
1500pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H222K0K1H03B
X7R
50
2200pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H332K0K1H03B
X7R
50
3300pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H472K0K1H03B
X7R
50
4700pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
PNLIST
6/20
Reference only
Unit : mm
Customer
Part Number
Murata Part Number
T.C.
DC
Rated
Volt.
(V)
Cap.
Cap.
Tol.
Dimension (mm)
L
W
W1
F
T
Dimension Pack
(LxW)
qty.
Lead Style (pcs)
RDER71H682K0K1H03B
X7R
50
6800pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H103K0K1H03B
X7R
50
10000pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H153K0K1H03B
X7R
50
15000pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H223K0K1H03B
X7R
50
22000pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H333K0K1H03B
X7R
50
33000pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H473K0K1H03B
X7R
50
47000pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H683K0K1H03B
X7R
50
68000pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H104K0K1H03B
X7R
50
0.10μF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER71H154K1K1H03B
X7R
50
0.15μF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
RDER71H224K1K1H03B
X7R
50
0.22μF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
RDER71H334K1K1H03B
X7R
50
0.33μF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
RDER71H474K1K1H03B
X7R
50
0.47μF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
RDER71H684K2K1H03B
X7R
50
0.68μF
±10%
5.5
4.0
6.0
5.0
3.15
2K1
500
RDEC71H105K1K1H03B
X7S
50
1.0μF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
RDER71H105K2K1H03B
X7R
50
1.0μF
±10%
5.5
4.0
6.0
5.0
3.15
2K1
500
RDER71H155K2K1H03B
X7R
50
1.5μF
±10%
5.5
4.0
6.0
5.0
3.15
2K1
500
RDER71H225K2K1H03B
X7R
50
2.2μF
±10%
5.5
4.0
6.0
5.0
3.15
2K1
500
RDER71H335K3K1H03B
X7R
50
3.3μF
±10%
5.5
5.0
7.5
5.0
4.0
3K1
500
RDEC71H475K2K1H03B
X7S
50
4.7μF
±10%
5.5
4.0
6.0
5.0
3.15
2K1
500
RDEC71H106K3K1H03B
X7S
50
10μF
±10%
5.5
5.0
7.5
5.0
4.0
3K1
500
RDEC71H226MWK1H03B
X7S
50
22μF
±20%
5.5
7.5
10.0
5.0
4.0
WK1
500
RDER72A221K0K1H03B
X7R
100
220pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A331K0K1H03B
X7R
100
330pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A471K0K1H03B
X7R
100
470pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A681K0K1H03B
X7R
100
680pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A102K0K1H03B
X7R
100
1000pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A152K0K1H03B
X7R
100
1500pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A222K0K1H03B
X7R
100
2200pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A332K0K1H03B
X7R
100
3300pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A472K0K1H03B
X7R
100
4700pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A682K0K1H03B
X7R
100
6800pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A103K0K1H03B
X7R
100
10000pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A153K0K1H03B
X7R
100
15000pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A223K0K1H03B
X7R
100
22000pF
±10%
4.0
3.5
6.0
5.0
2.5
0K1
500
RDER72A333K1K1H03B
X7R
100
33000pF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
RDER72A473K1K1H03B
X7R
100
47000pF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
RDER72A683K1K1H03B
X7R
100
68000pF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
RDER72A104K1K1H03B
X7R
100
0.10μF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
RDER72A154K2K1H03B
X7R
100
0.15μF
±10%
5.5
4.0
6.0
5.0
3.15
2K1
500
RDER72A224K1K1H03B
X7R
100
0.22μF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
PNLIST
7/20
Reference only
Unit : mm
Customer
Part Number
Murata Part Number
T.C.
DC
Rated
Volt.
(V)
Cap.
Cap.
Tol.
Dimension (mm)
L
W
W1
F
T
Dimension Pack
(LxW)
qty.
Lead Style (pcs)
RDER72A334K1K1H03B
X7R
100
0.33μF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
RDER72A474K1K1H03B
X7R
100
0.47μF
±10%
4.5
3.5
5.0
5.0
3.15
1K1
500
RDER72A684K2K1H03B
X7R
100
0.68μF
±10%
5.5
4.0
6.0
5.0
3.15
2K1
500
RDER72A105K2K1H03B
X7R
100
1.0μF
±10%
5.5
4.0
6.0
5.0
3.15
2K1
500
RDEC72A155K3K1H03B
X7S
100
1.5μF
±10%
5.5
5.0
7.5
5.0
4.0
3K1
500
RDEC72A225K3K1H03B
X7S
100
2.2μF
±10%
5.5
5.0
7.5
5.0
4.0
3K1
500
RDEC72A475MWK1H03B
X7S
100
4.7μF
±20%
5.5
7.5
10.0
5.0
4.0
WK1
500
PNLIST
8/20
Reference only
Unit : mm
Customer
Part Number
Murata Part Number
T.C.
DC
Rated
Volt.
(V)
Cap.
Cap.
Tol.
Dimension (mm)
L
W
W1
F
T
Dimension Pack
(LxW)
qty.
H/H0 Lead Style (pcs)
RDER71E104K0S1H03A
X7R
25
0.10μF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDEC71E224K0S1H03A
X7S
25
0.22μF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDEC71E474K0S1H03A
X7S
25
0.47μF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDEC71E105K0S1H03A
X7S
25
1.0μF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDEC71E225K1S1H03A
X7S
25
2.2μF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDEC71E475K2S1H03A
X7S
25
4.7μF
±10%
5.5
4.0
6.0
2.5 3.15 16.0
2S1
2000
RDEC71E106K2S1H03A
X7S
25
10μF
±10%
5.5
4.0
6.0
2.5 3.15 16.0
2S1
2000
RDEC71E226K3S1H03A
X7S
25
22μF
±10%
5.5
5.0
7.5
2.5
4.0 16.0
3S1
1500
RDER71H221K0S1H03A
X7R
50
220pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H331K0S1H03A
X7R
50
330pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H471K0S1H03A
X7R
50
470pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H681K0S1H03A
X7R
50
680pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H102K0S1H03A
X7R
50
1000pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H152K0S1H03A
X7R
50
1500pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H222K0S1H03A
X7R
50
2200pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H332K0S1H03A
X7R
50
3300pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H472K0S1H03A
X7R
50
4700pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H682K0S1H03A
X7R
50
6800pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H103K0S1H03A
X7R
50
10000pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H153K0S1H03A
X7R
50
15000pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H223K0S1H03A
X7R
50
22000pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H333K0S1H03A
X7R
50
33000pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H473K0S1H03A
X7R
50
47000pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H683K0S1H03A
X7R
50
68000pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H104K0S1H03A
X7R
50
0.10μF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER71H154K1S1H03A
X7R
50
0.15μF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDER71H224K1S1H03A
X7R
50
0.22μF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDER71H334K1S1H03A
X7R
50
0.33μF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDER71H474K1S1H03A
X7R
50
0.47μF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDER71H684K2S1H03A
X7R
50
0.68μF
±10%
5.5
4.0
6.0
2.5 3.15 16.0
2S1
2000
RDEC71H105K1S1H03A
X7S
50
1.0μF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDER71H105K2S1H03A
X7R
50
1.0μF
±10%
5.5
4.0
6.0
2.5 3.15 16.0
2S1
2000
RDER71H155K2S1H03A
X7R
50
1.5μF
±10%
5.5
4.0
6.0
2.5 3.15 16.0
2S1
2000
RDER71H225K2S1H03A
X7R
50
2.2μF
±10%
5.5
4.0
6.0
2.5 3.15 16.0
2S1
2000
RDER71H335K3S1H03A
X7R
50
3.3μF
±10%
5.5
5.0
7.5
2.5
4.0 16.0
3S1
1500
RDEC71H475K2S1H03A
X7S
50
4.7μF
±10%
5.5
4.0
6.0
2.5 3.15 16.0
2S1
2000
RDEC71H106K3S1H03A
X7S
50
10μF
±10%
5.5
5.0
7.5
2.5
4.0 16.0
3S1
1500
RDER72A221K0S1H03A
X7R
100
220pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER72A331K0S1H03A
X7R
100
330pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER72A471K0S1H03A
X7R
100
470pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
PNLIST
9/20
Reference only
Unit : mm
Customer
Part Number
Murata Part Number
T.C.
DC
Rated
Volt.
(V)
Cap.
Cap.
Tol.
Dimension (mm)
L
W
W1
F
T
Dimension Pack
(LxW)
qty.
H/H0 Lead Style (pcs)
RDER72A681K0S1H03A
X7R
100
680pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER72A102K0S1H03A
X7R
100
1000pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER72A152K0S1H03A
X7R
100
1500pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER72A222K0S1H03A
X7R
100
2200pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER72A332K0S1H03A
X7R
100
3300pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER72A472K0S1H03A
X7R
100
4700pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER72A682K0S1H03A
X7R
100
6800pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER72A103K0S1H03A
X7R
100
10000pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER72A153K0S1H03A
X7R
100
15000pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER72A223K0S1H03A
X7R
100
22000pF
±10%
5.0
3.5
6.0
2.5
2.5 16.0
0S1
2000
RDER72A333K1S1H03A
X7R
100
33000pF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDER72A473K1S1H03A
X7R
100
47000pF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDER72A683K1S1H03A
X7R
100
68000pF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDER72A104K1S1H03A
X7R
100
0.10μF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDER72A154K2S1H03A
X7R
100
0.15μF
±10%
5.5
4.0
6.0
2.5 3.15 16.0
2S1
2000
RDER72A224K1S1H03A
X7R
100
0.22μF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDER72A334K1S1H03A
X7R
100
0.33μF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDER72A474K1S1H03A
X7R
100
0.47μF
±10%
5.0
3.5
5.0
2.5 3.15 16.0
1S1
2000
RDER72A684K2S1H03A
X7R
100
0.68μF
±10%
5.5
4.0
6.0
2.5 3.15 16.0
2S1
2000
RDER72A105K2S1H03A
X7R
100
1.0μF
±10%
5.5
4.0
6.0
2.5 3.15 16.0
2S1
2000
RDEC72A155K3S1H03A
X7S
100
1.5μF
±10%
5.5
5.0
7.5
2.5
4.0 16.0
3S1
1500
RDEC72A225K3S1H03A
X7S
100
2.2μF
±10%
5.5
5.0
7.5
2.5
4.0 16.0
3S1
1500
RDER71E104K0M1H03A
X7R
25
0.10μF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDEC71E224K0M1H03A
X7S
25
0.22μF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDEC71E474K0M1H03A
X7S
25
0.47μF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDEC71E105K0M1H03A
X7S
25
1.0μF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDEC71E225K1M1H03A
X7S
25
2.2μF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
RDEC71E475K2M1H03A
X7S
25
4.7μF
±10%
5.5
4.0
6.0
5.0 3.15 16.0
2M1
2000
RDEC71E106K2M1H03A
X7S
25
10μF
±10%
5.5
4.0
6.0
5.0 3.15 16.0
2M1
2000
RDEC71E226K3M1H03A
X7S
25
22μF
±10%
5.5
5.0
7.5
5.0
4.0 16.0
3M1
1500
RDEC71E476MWM1H03A X7S
25
47μF
±20%
5.5
7.5 10.0
5.0
4.0 16.0
WM1
1500
RDER71H221K0M1H03A
X7R
50
220pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H331K0M1H03A
X7R
50
330pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H471K0M1H03A
X7R
50
470pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H681K0M1H03A
X7R
50
680pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H102K0M1H03A
X7R
50
1000pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H152K0M1H03A
X7R
50
1500pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H222K0M1H03A
X7R
50
2200pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H332K0M1H03A
X7R
50
3300pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H472K0M1H03A
X7R
50
4700pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
PNLIST
10/20
Reference only
Unit : mm
Customer
Part Number
Murata Part Number
T.C.
DC
Rated
Volt.
(V)
Cap.
Cap.
Tol.
Dimension (mm)
L
W
W1
F
T
Dimension Pack
(LxW)
qty.
H/H0 Lead Style (pcs)
RDER71H682K0M1H03A
X7R
50
6800pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H103K0M1H03A
X7R
50
10000pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H153K0M1H03A
X7R
50
15000pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H223K0M1H03A
X7R
50
22000pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H333K0M1H03A
X7R
50
33000pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H473K0M1H03A
X7R
50
47000pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H683K0M1H03A
X7R
50
68000pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H104K0M1H03A
X7R
50
0.10μF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER71H154K1M1H03A
X7R
50
0.15μF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
RDER71H224K1M1H03A
X7R
50
0.22μF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
RDER71H334K1M1H03A
X7R
50
0.33μF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
RDER71H474K1M1H03A
X7R
50
0.47μF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
RDER71H684K2M1H03A
X7R
50
0.68μF
±10%
5.5
4.0
6.0
5.0 3.15 16.0
2M1
2000
RDEC71H105K1M1H03A
X7S
50
1.0μF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
RDER71H105K2M1H03A
X7R
50
1.0μF
±10%
5.5
4.0
6.0
5.0 3.15 16.0
2M1
2000
RDER71H155K2M1H03A
X7R
50
1.5μF
±10%
5.5
4.0
6.0
5.0 3.15 16.0
2M1
2000
RDER71H225K2M1H03A
X7R
50
2.2μF
±10%
5.5
4.0
6.0
5.0 3.15 16.0
2M1
2000
RDER71H335K3M1H03A
X7R
50
3.3μF
±10%
5.5
5.0
7.5
5.0
4.0 16.0
3M1
1500
RDEC71H475K2M1H03A
X7S
50
4.7μF
±10%
5.5
4.0
6.0
5.0 3.15 16.0
2M1
2000
RDEC71H106K3M1H03A
X7S
50
10μF
±10%
5.5
5.0
7.5
5.0
4.0 16.0
3M1
1500
RDEC71H226MWM1H03A X7S
50
22μF
±20%
5.5
7.5 10.0
5.0
4.0 16.0
WM1
1500
RDER72A221K0M1H03A
X7R
100
220pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A331K0M1H03A
X7R
100
330pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A471K0M1H03A
X7R
100
470pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A681K0M1H03A
X7R
100
680pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A102K0M1H03A
X7R
100
1000pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A152K0M1H03A
X7R
100
1500pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A222K0M1H03A
X7R
100
2200pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A332K0M1H03A
X7R
100
3300pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A472K0M1H03A
X7R
100
4700pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A682K0M1H03A
X7R
100
6800pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A103K0M1H03A
X7R
100
10000pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A153K0M1H03A
X7R
100
15000pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A223K0M1H03A
X7R
100
22000pF
±10%
4.0
3.5
6.0
5.0
2.5 16.0
0M1
2000
RDER72A333K1M1H03A
X7R
100
33000pF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
RDER72A473K1M1H03A
X7R
100
47000pF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
RDER72A683K1M1H03A
X7R
100
68000pF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
RDER72A104K1M1H03A
X7R
100
0.10μF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
RDER72A154K2M1H03A
X7R
100
0.15μF
±10%
5.5
4.0
6.0
5.0 3.15 16.0
2M1
2000
RDER72A224K1M1H03A
X7R
100
0.22μF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
PNLIST
11/20
Reference only
Unit : mm
Customer
Part Number
Murata Part Number
T.C.
DC
Rated
Volt.
(V)
Cap.
Cap.
Tol.
Dimension (mm)
L
W
W1
F
T
Dimension Pack
(LxW)
qty.
H/H0 Lead Style (pcs)
RDER72A334K1M1H03A
X7R
100
0.33μF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
RDER72A474K1M1H03A
X7R
100
0.47μF
±10%
4.5
3.5
5.0
5.0 3.15 16.0
1M1
2000
RDER72A684K2M1H03A
X7R
100
0.68μF
±10%
5.5
4.0
6.0
5.0 3.15 16.0
2M1
2000
RDER72A105K2M1H03A
X7R
100
1.0μF
±10%
5.5
4.0
6.0
5.0 3.15 16.0
2M1
2000
RDEC72A155K3M1H03A
X7S
100
1.5μF
±10%
5.5
5.0
7.5
5.0
4.0 16.0
3M1
1500
RDEC72A225K3M1H03A
X7S
100
2.2μF
±10%
5.5
5.0
7.5
5.0
4.0 16.0
3M1
1500
RDEC72A475MWM1H03A X7S
100
4.7μF
±20%
5.5
7.5 10.0
5.0
4.0 16.0
WM1
1500
PNLIST
12/20
Reference only
5.SPECIFICATIONS AND TEST METHODS
No.
Item
Specification
Test Method
1
Appearance
No defects or abnormalities.
Visual inspection.
2
Dimension and Marking
Within the specified dimensions and
Visual inspection, Using Caliper.
Marking
3
Dielectric
Between
Strength
Terminals
No defects or abnormalities.
The capacitor should not be damaged when voltage
in Table is applied between the terminations for
1 to 5 seconds. (Charge/Discharge current ≦ 50mA.)
Rated voltage
DC25V・DC50V
DC100V
Body
No defects or abnormalities.
Insulation
Test voltage
250% of the rated voltage
The capacitor is placed in a container with metal balls
of 1mm diameter so that each terminal, short-circuit,
is kept approximately 2mm from the balls, and
voltage in Table is impressed for 1 to 5 seconds
between capacitor terminals and metal balls.
(Charge/Discharge current ≦ 50mA.)
Rated voltage
DC25V・DC50V
DC100V
4
Test voltage
250% of the rated voltage
Insulation
Between
10,000MΩ or 500MΩ・μF min.
The insulation resistance should be measured with a
Resistance
Terminals
(Whichever is smaller)
DC voltage not exceeding the rated voltage at normal
(I.R.)
temperature and humidity and within 2 minutes of
charging. (Charge/Discharge current ≦ 50mA.)
5
Capacitance
Within the specified tolerance.
The capacitance, D.F. should be measured at 25°C
6
Dissipation Factor (D.F.)
X7R : 0.025 max.
Nominal Cap.
Frequency
Voltage
X7S : 0.125 max.
C≦10μF
1±0.1kHz
AC1±0.2V (r.m.s.)
C>10μF
120±24Hz
AC0.5±0.1V (r.m.s.)
at the frequency and voltage shown in the table.
7
Capacitance
X7R : within ±15%
The capacitance change should be measured after 5
Temperature
X7S : within ±22%
min. at each specified temperature stage.
Characteristics
The ranges of capacitance change compared with the
25°C value over the temperature ranges shown in the
table should be within the specified ranges.
Step
Temperature(°C)
1
25±2
2
-55±3
3
25±2
4
125±3
5
25±2
• Pretreatment
Perform a heat treatment at 150+0/-10°C for one
hour and then set at *room condition for 24±2 hours.
8
Terminal
Tensile
Termination not to be broken or
As in the figure, fix the capacitor body, apply the
Strength
Strength
loosened
force gradually to each lead in the radial direction of
the capacitor until reaching 10N and then keep
applied the force for 10±1 seconds.
Bending
Termination not to be broken or
Each lead wire should be subjected to a force of
Strength
loosened
2.5N and then be bent 90° at the point of egress in
one direction. Each wire is then returned to the
original position and bent 90° in the opposite
direction at the rate of one bend per 2 to 3 seconds.
9
Vibration
Appearance
No defects or abnormalities.
The capacitor should be subjected to a simple
Resistance
Capacitance
Within the specified tolerance.
harmonic motion having a total amplitude of 1.5mm,
D.F.
X7R : 0.025 max.
the frequency being varied uniformly between the
X7S : 0.125 max.
approximate limits of 10Hz and 55Hz.
The frequency range, from 10Hz to 55Hz and return
to 10Hz, shall be traversed in approximately 1 minute.
This motion shall be applied for a period of 2 hours in
each 3 mutually perpendicular directions (total of 6 hours).
* “room condition” Temperature : 15 to 35°C, Relative humidity : 45 to 75%, Atmosphere pressure : 86 to 106kPa
ESRDE103E
13/20
F
Reference only
No.
10
Item
Solderability of Lead
Specification
Test Method
Solder is deposited on unintermittently
The terminal of capacitor is dipped into a solution of
immersed portion in axial direction
ethanol (JIS K 8101) and rosin (JIS K 5902) (25%
covering 3/4 or more in circumferential
rosin in weight propotion). Immerse in solder
direction of lead wires.
solution for 2±0.5 seconds. In both cases the depth
of dipping is up to about 1.5 to 2mm from the terminal body.
Temp. of solder :
245±5°C Lead Free Solder (Sn-3.0Ag-0.5Cu)
235±5°C H60A or H63A Eutectic Solder
11-1 Resistance
Appearance
No defects or abnormalities.
The lead wires should be immersed in the melted solder 1.5 to 2.0mm
to Soldering
Capacitance
X7R : Within ±7.5%
from the root of terminal at 260±5°C for 10±1 seconds.
Heat
Change
X7S : Within ±10%
(Non-
Dielectric
No defects.
Preheat)
Strength
Capacitor should be stored at 150+0/-10°C for one hour, then place at
(Between
*room condition for 24±2 hours before initial measurement.
terminals)
• Post-treatment
• Pretreatment
Capacitor should be stored for 24±2 hours at *room condition.
11-2 Resistance
Appearance
No defects or abnormalities.
First the capacitor should be stored at 120+0/-5°C for 60+0/-5 seconds.
to Soldering
Capacitance
X7R : Within ±7.5%
Then, the lead wires should be immersed in the melted solder
Heat
Change
X7S : Within ±10%
1.5 to 2.0mm from the root of terminal at 260±5°C for 7.5+0/-1 seconds.
(On-
Dielectric
No defects.
Preheat)
Strength
• Pretreatment
(Between
Capacitor should be stored at 150+0/-10°C for one hour, then place at
terminals)
*room condition for 24±2 hours before initial measurement.
• Post-treatment
Capacitor should be stored for 24±2 hours at *room condition.
11-3 Resistance
Appearance
No defects or abnormalities.
to Soldering
Capacitance
X7R : Within ±7.5%
Heat
Change
X7S : Within ±10%
(soldering
iron method)
Dielectric
No defects.
Test condition
Temperature of iron-tip : 350±10°C
Soldering time : 3.5±0.5 seconds
Soldering position
Strength
Straight Lead : 1.5 to 2.0mm from the root of terminal.
(Between
Crimp Lead : 1.5 to 2.0mm from the end of bend.
terminals)
• Pretreatment
Capacitor should be stored at 150+0/-10°C for one hour, then place at
*room condition for 24±2 hours before initial measurement.
• Post-treatment
Capacitor should be stored for 24±2 hours at *room condition.
12
Temperature
Appearance
No defects or abnormalities.
Repeat 5 cycles according to the 4 heat
Cycle
Capacitance
X7R, X7S : Within±12.5%
treatments listed in the following table.
Change
D.F.
Set at *room condition for 24±2 hours, then measure.
X7R : 0.05 max.
X7S : 0.2 max.
I.R.
1,000MΩ or 50MΩ・μF min.
(Whichever is smaller)
Dielectric
Step
1
2
3
4
Temp.
(°C)
Min.
Operating
Temp. ±3
Room
Temp.
Max.
Operating
Temp. ±3
Room
Temp.
Time
(min.)
303
3 max.
303
3 max.
No defects or abnormalities.
Strength
(Between
• Pretreatment
Terminals)
Perform a heat treatment at 150+0/-10°C for one
hour and then set at *room condition for 24±2 hours.
13
Humidity
Appearance
No defects or abnormalities.
Set the capacitor at 40±2°C and relative
(Steady
Capacitance
X7R, X7S : Within ±15%
humidity 90 to 95% for 500+24/-0 hours.
State)
Change
D.F.
I.R.
Remove and set for 24±2 hours at *room condition, then measure.
X7R : 0.05 max.
X7S : 0.2 max.
• Pretreatment
1,000MΩ or 50MΩ・μF min.
Perform a heat treatment at 150+0/-10°C for one
(Whichever is smaller)
hour and then set at *room condition for 24±2 hours.
* “room condition” Temperature : 15 to 35°C, Relative humidity : 45 to 75%, Atmosphere pressure : 86 to 106kPa
ESRDE103E
14/20
Reference only
No.
14
Item
Specification
Test Method
Humidity
Appearance
No defects or abnormalities.
Apply the rated voltage at 40±2°C and relative
Load
Capacitance
X7R, X7S : Within±15%
humidity of 90 to 95% for 500+24/-0 hours.
Change
D.F.
Remove and set for 24±2 hours at *room condition, then measure.
X7R : 0.05 max.
(Charge/Discharge current ≦ 50mA.)
X7S : 0.2 max.
I.R.
500MΩ or 25MΩ・μF min.
• Pretreatment
(Whichever is smaller)
Perform a heat treatment at 150+0/-10°C for one
hour and then set at *room condition for 24±2 hours.
15
High
Appearance
No defects or abnormalities.
Apply 150% of the rated voltage at the maximum
Temperature
Capacitance
X7R, X7S : Within±15%
operating temperature ±3°C for 1000+48/-0 hours.
Load
Change
D.F.
Remove and set for 24±2 hours at *room condition, then measure.
X7R : 0.05 max.
(Charge/Discharge current ≦ 50mA.)
X7S : 0.2 max.
I.R.
1,000MΩ or 50 MΩ・μF min.
• Pretreatment
(Whichever is smaller)
Apply test voltage for one hour at test temperature.
Remove and set at *room condition for 24±2 hours.
16
Solvent
Appearance
No defects or abnormalities.
The capacitor should be fully immersed, unagitated,
Resistance
Marking
Legible
in reagent at 20 to 25°C for 30±5 seconds and then
remove gently. Marking on the surface of the
capacitor shall immediately be visually examined.
Reagent : Isopropyl alcohol
* “room condition” Temperature : 15 to 35°C, Relative humidity : 45 to 75%, Atmosphere pressure : 86 to 106kPa
ESRDE103E
15/20
Reference only
6. Packing specification
・Bulk type (Packing style code : B)
The size of packing case and packing way
Polyethylene bag
Partition
270 max.
125 max.
Unit : mm
340 max.
The number of packing =
*1
Packing quantity × *2 n
*1 : Please refer to [Part number list].
*2 : Standard n = 20 (bag)
Note)
The outer package and the number of outer packing be changed by the order getting amount.
JKBCRPE02
16/20
Reference only
・Ammo pack taping type (Packing style code : A)
A crease is made every 25 pitches, and the tape with capacitors is packed zigzag into a case.
When body of the capacitor is piled on other body under it.
The size of packing case and packing way
240 max.
Position of label
340 max.
Unit : mm
51 max.
Hold down tape
Capacitor
Base tape
Hold down
tape upper
EKTRPE01
17/20
Reference only
7. Taping specification
7-1. Dimension of capacitors on tape
Inside crimp taping type < Lead Style : M1 >
Pitch of component 12.7mm / Lead spacing 5.0mm
P2
P
Δh1
0
Δh2
ΔS
Marking
t2
W0
L
ΦD0
t1
Φd
W
H0
F
W1
P1
W2
e
P0
Unit : mm
Item
Code
Dimensions
Pitch of component
P
12.7+/-1.0
Pitch of sprocket hole
P0
12.7+/-0.2
F
5.0+0.6/-0.2
P2
6.35+/-1.3
Length from hole center to lead
P1
3.85+/-0.7
Deviation along tape, left or right defect
ΔS
0+/-2.0
Carrier tape width
W
18.0+/-0.5
Position of sprocket hole
W1
9.0+0/-0.5
Lead distance between reference and
bottom plane
H0
16.0+/-0.5
Lead spacing
Length from hole center to component
center
Protrusion length
ΦD0
4.0+/-0.1
Φd
0.5+/-0.05
Total tape thickness
t1
0.6+/-0.3
t2
1.5 max.
Total thickness of tape and lead wire
Deviation across tape
Portion to cut in case of defect
They include deviation by lead bend
Deviation of tape width direction
They include hold down tape
thickness
Δh1 2.0 max. (Dimension code : W)
Δh2 1.0 max. (except as above)
L
11.0+0/-1.0
Hold down tape width
W0
9.5 min.
Hold down tape position
W2
1.5+/-1.5
Coating extension on lead
Deviation of progress direction
0.5 max.
Lead diameter
Diameter of sprocket hole
Remarks
e
Up to the end of crimp
ETP1M101A
18/20
Reference only
Outside crimp taping type < Lead Style : S1 >
Pitch of component 12.7mm / Lead spacing 2.5mm
P2
P
Dh1
0
Dh2
DS
Marking
H0
F
fd
t1
t2
W
W0
L
f D0
W1
P1
W2
e
P0
Unit : mm
Item
Code
Dimensions
Pitch of component
P
12.7+/-1.0
Pitch of sprocket hole
P0
12.7+/-0.2
F
2.5+0.4/-0.2
P2
6.35+/-1.3
Length from hole center to lead
P1
5.1+/-0.7
Deviation along tape, left or right defect
ΔS
0+/-2.0
Carrier tape width
W
18.0+/-0.5
Position of sprocket hole
W1
9.0+0/-0.5
Lead distance between reference and
bottom plane
H0
16.0+/-0.5
Lead spacing
Length from hole center to component
center
Protrusion length
ΦD0
4.0+/-0.1
Φd
0.5+/-0.05
Total tape thickness
t1
0.6+/-0.3
t2
1.5 max.
Total thickness of tape and lead wire
Deviation across tape
Portion to cut in case of defect
Δh1
They include deviation by lead bend
Deviation of tape width direction
L
11.0+0/-1.0
W0
9.5 min.
Hold down tape position
W2
1.5+/-1.5
e
They include hold down tape
thickness
1.0 max.
Δh2
Hold down tape width
Coating extension on lead
Deviation of progress direction
0.5 max.
Lead diameter
Diameter of sprocket hole
Remarks
Up to the end of crimp
ETP1S101A
19/20
Reference only
7-2. Splicing way of tape
1) Adhesive force of tape is over 3N at test condition as below.
W
Hold down tape
Base tape
2) Splicing of tape
a) When base tape is spliced
•Base tape shall be spliced by cellophane tape.
(Total tape thickness shall be less than 1.05mm.)
Progress direction
in production line
Hold down tape
Base tape
No lifting for the
direction of
progressing
About 30 to 50
Cellophane tape
Unit : mm
b) When hold down tape is spliced
•Hold down tape shall be spliced with overlapping.
(Total tape thickness shall be less than 1.05mm.)
20 to 30
Hold down tape
Progress direction
in production line
Base tape
Unit : mm
c) When both tape are spliced
•Base tape and hold down tape shall be spliced with splicing tape.
ETP2R01
20/20