RHS7G2A101J0K1H01B

Reference only
6 / 13
Unit : mm
Customer Part Number Murata Part Number T.C.
DC
Rated
volt.
(V)
Cap. Cap. tol.
Dimension (mm)
Size
Lead
Code
Pack
qty.
(pcs)
L W W1 F T H/H0
RHS7G2A101J0DGH01A CCG 100 100pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A121J0DGH01A CCG 100 120pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A151J0DGH01A CCG 100 150pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A181J0DGH01A CCG 100 180pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A221J0DGH01A CCG 100 220pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A271J0DGH01A CCG 100 270pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A331J0DGH01A CCG 100 330pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A391J0DGH01A CCG 100 390pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A471J0DGH01A CCG 100 470pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A561J0DGH01A CCG 100 560pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A681J0DGH01A CCG 100 680pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A821J0DGH01A CCG 100 820pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A102J0DGH01A CCG 100 1000pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A122J0DGH01A CCG 100 1200pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A152J0DGH01A CCG 100 1500pF
±5%
3.8 3.5 - 2.5 2.5 20.0 0DG 2000
RHS7G2A182J1DGH01A CCG 100 1800pF
±5%
4.0 3.5 - 2.5 2.5 20.0 1DG 2000
RHS7G2A222J1DGH01A CCG 100 2200pF
±5%
4.0 3.5 - 2.5 2.5 20.0 1DG 2000
RHS7G2A272J1DGH01A CCG 100 2700pF
±5%
4.0 3.5 - 2.5 2.5 20.0 1DG 2000
RHS7G2A332J1DGH01A CCG 100 3300pF
±5%
4.0 3.5 - 2.5 2.5 20.0 1DG 2000
RHS7G2A101J0M2H01A CCG 100 100pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A121J0M2H01A CCG 100 120pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A151J0M2H01A CCG 100 150pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A181J0M2H01A CCG 100 180pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A221J0M2H01A CCG 100 220pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A271J0M2H01A CCG 100 270pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A331J0M2H01A CCG 100 330pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A391J0M2H01A CCG 100 390pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A471J0M2H01A CCG 100 470pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A561J0M2H01A CCG 100 560pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A681J0M2H01A CCG 100 680pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A821J0M2H01A CCG 100 820pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A102J0M2H01A CCG 100 1000pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A122J0M2H01A CCG 100 1200pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A152J0M2H01A CCG 100 1500pF
±5%
3.8 3.5 6.0 5.0 2.5 20.0 0M2 2000
RHS7G2A182J1M2H01A CCG 100 1800pF
±5%
4.0 3.5 5.0 5.0 2.5 20.0 1M2 2000
RHS7G2A222J1M2H01A CCG 100 2200pF
±5%
4.0 3.5 5.0 5.0 2.5 20.0 1M2 2000
RHS7G2A272J1M2H01A CCG 100 2700pF
±5%
4.0 3.5 5.0 5.0 2.5 20.0 1M2 2000
RHS7G2A332J1M2H01A CCG 100 3300pF
±5%
4.0 3.5 5.0 5.0 2.5 20.0 1M2 2000
Reference only
ESRH05
7 / 13
5. AEC-Q200 Murata Standard Specifications and Test Methods
No.
AEC-Q200
Test Item
Specification AEC-Q200 Test Method
1 Pre-and Post-Stress
Electrical Test
-
2 High
Temperature
Exposure
(Storage)
Appearance
No defects or abnormalities except color change of
outer coating.
Sit the capacitor for 1,00012h at 2005C. Let sit for 242h at
*room condition, then measure.
Capacitance
Change
Within 3% or 0.3pF
(Whichever is larger)
Q
Q 350
I.R.
1,000M min.
3 Temperature
Cycling
Appearance
No defects or abnormalities except color
change of outer coating
Perform the 1,000 cycles according to the four heat treatments
listed in the following table. Let sit for 24±2 h at *room condition,
then measure.
Capacitance
Change
Within 5% or 0.5pF
(Whichever is larger)
Q
Q 350
I.R.
1,000M min.
4 Moisture
Resistance
Appearance No defects or abnormalities
Apply the 24h heat (25 to 65C) and humidity (80 to 98%)
treatment shown below, 10 consecutive times.
Let sit for 24±2 h at *room condition, then measure.
Hours
Capacitance
Change
Within 5% or 0.5pF
(Whichever is larger)
Q
Q 200
I.R.
500M min.
5 Biased
Humidity
Appearance No defects or abnormalities
Apply the rated voltage and DC1.3+0.2/-0 V (add 100k resistor)
at 853C and 80 to 85% humidity for 1,00012h.
Remove and let sit for 24±2 h at *room condition, then measure.
The charge/discharge current is less than 50mA.
Capacitance
Change
Within 5% or 0.5pF
(Whichever is larger)
Q
Q 200
I.R.
500M min.
6 Operational
Life
Appearance
No defects or abnormalities except color
change of outer coating
Apply 25% of the rated voltage for 1,00012h at 2005C.
Let sit for 24±2 h at *room condition, then measure.
The charge/discharge current is less than 50mA.
Capacitance
Change
Within 3% or 0.3pF
(Whichever is larger)
Q
Q 350
I.R.
1,000M min.
7 External Visual No defects or abnormalities Visual inspection
8 Physical Dimension Within the specified dimensions Using calipers and micrometers.
9 Marking To be easily legible. Visual inspection
10 Resistance
to Solvents
Appearance No defects or abnormalities Per MIL-STD-202 Method 215
Solvent 1 : 1 part (by volume) of isopropyl alcohol
3 parts (by volume) of mineral spirits
Solvent 2 : Terpene defluxer
Solvent 3 : 42 parts (by volume) of water
1part (by volume) of propylene glycol
monomethyl ether
1 part (by volume) of monoethanolamine
Capacitance Within the specified tolerance
Q
Q 1,000
I.R.
10,000M min.
* “room condition” Temperature:15 to 35°C, Relative humidity:45 to 75%, Atmosphere pressure:86 to 106kPa
Temperature
Humidit
y
8098
Humidit
y
8098
70
65
60
55
50
45
40
35
30
25
20
15
10
5
0
-5
-10
Temperature
C
Humidit
y
9098
Humidit
y
9098
Initial measurement
+10
- 2 C
One cycle 24 hours
0 1 2 3 4 5 6 7 8 9 10 11 12 13 14 15 16 17 18 19 20 21 22 23 24
Humidit
y
9098
Step 1 2 3 4
Temp.
(C)
-55+0/-3
Room
Temp.
200+5/-0
Room
Temp.
Time
(min.)
153 1 153 1
Reference only
ESRH05
8 / 13
No.
AEC-Q200
Test Item
Specification AEC-Q200 Test Method
11 Mechanical
Shock
Appearance
No defects or abnormalities Three shocks in each direction should be applied along 3
mutually perpendicular axes of the test specimen (18 shocks).
The specified test pulse should be Half-sine and should have a
duration :0.5ms, peak value:1,500G and velocity change: 4.7m/s.
Capacitance
Within the specified tolerance
Q
Q 1,000
12 Vibration Appearance
No defects or abnormalities The capacitor should be subjected to a simple harmonic motion
having a total amplitude of 1.5mm, the frequency being varied
uniformly between the approximate limits of 10 and 2,000Hz.
The frequency range, from 10 to 2,000Hz and return to 10Hz,
should be traversed in approximately 20 min. This motion
should be applied for 12 items in each 3 mutually perpendicular
directions (total of 36 times).
Capacitance
Within the specified tolerance
Q
Q 1,000
13-1 Resistance to
Soldering Heat
(Non-Preheat)
Appearance
No defects or abnormalities The lead wires should be immersed in the melted solder 1.5 to
2.0mm from the root of terminal at 2605C for 101 seconds.
• Post-treatment
Capacitor should be stored for 242 hours at *room condition.
Capacitance
Change
Within 2.5% or 0.25pF
(Whichever is larger)
Dielectric
Strength
(Between
terminals)
No defects
13-2 Resistance to
Soldering Heat
(On-Preheat)
Appearance
No defects or abnormalities
First the capacitor should be stored at 120+0/-5C for 60+0/-5
seconds.
Then, the lead wires should be immersed in the melted solder
1.5 to 2.0mm from the root of terminal at 2605C for 7.5+0/-1
seconds.
• Post-treatment
Capacitor should be stored for 242 hours at *room condition.
Capacitance
Change
Within 2.5% or 0.25pF
(Whichever is larger)
Dielectric
Strength
(Between
terminals)
No defects
13-3 Resistance to
Soldering Heat
(soldering iron
method)
Appearance
No defects or abnormalities
Test condition
Termperature of iron-tip : 35010C
Soldering time : 3.50.5 seconds
Soldering position
Straight Lead:1.5 to 2.0mm from the root of terminal.
Crimp Lead:1.5 to 2.0mm from the end of lead bend.
• Post-treatment
Capacitor should be stored for 242 hours at *room condition.
Capacitance
Change
Within 2.5% or 0.25pF
(Whichever is larger)
Dielectric
Strength
(Between
terminals)
No defects
14 Thermal Shock Appearance
No defects or abnormalities Perform the 300 cycles according to the two heat treatments listed
in the following table(Maximum transfer time is 20s.). Let sit for
24±2 h at *room condition, then measure.
Capacitance
Change
Within 5% or 0.5pF
(Whichever is larger)
Q
Q 350
I.R.
1,000M min.
15 ESD Appearance
No defects or abnormalities Per AEC-Q200-002
Capacitance
Within the specified tolerance
Q
Q 1,000
I.R.
10,000M min.
16 Solderability Lead wire should be soldered with uniform
coating on the axial direction over 95% of the
circumferential direction.
The terminal of a capacitor is dipped into a solution of ethanol
(JIS-K-8101) and rosin (JIS-K-5902) (25%rosin in weight
propotion) and then into molten solder (JIS-Z-3282) for 20.5 sec.
In both cases the depth of dipping is up to about 1.5 to 2mm from
the terminal body.
Temp. of solder :
2455C Lead Free Solder(Sn-3.0Ag-0.5Cu)
2355C H60A or H63A Eutectic Solder
* “room condition” Temperature:15 to 35°C, Relative humidity:45 to 75%, Atmosphere pressure:86 to 106kPa
Step 1 2
Temp.
(C)
-55+0/-3 200+5/-0
Time
(min.)
153 153

RHS7G2A101J0K1H01B

Mfr. #:
Manufacturer:
Description:
Multilayer Ceramic Capacitors MLCC - Leaded 100VDC 100pF 5% CCG AEC-Q200 InCrimp Blk
Lifecycle:
New from this manufacturer.
Delivery:
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