Murata GRM31C Chip monolithic ceramic capacitors for flow/reflow soldering grm15/18/21/31 sery Datasheet

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Chip Monolithic Ceramic Capacitors
1
for Flow/Reflow Soldering GRM15/18/21/31 Series
e
g
e
■ Features
T
1. Terminations are made of metal highly resistant to
migration.
2. The GRM series is a complete line of chip ceramic
capacitors in 6.3V, 10V, 16V, 25V, 50V, 100V, 200V
and 500V ratings. These capacitors have
temperature characteristics ranging from C0G to
Y5V.
3. A wide selection of sizes is available, from the
miniature LxWxT: 1.0x0.5x0.5mm to
LxWxT: 3.2x1.6x1.15mm.
GRM18, 21 and GRM31 types are suited to flow and
reflow soldering.
GRM15 type is applied to only reflow soldering.
4. Stringent dimensional tolerances allow highly
reliable, high speed automatic chip placement on
PCBs.
5. The GRM series is available in paper or plastic
embossed tape and reel packaging for automatic
placement. Bulk case packaging is also available
for GRM15, GRM18 and GRM21.
L
Part Number
GRM155
GRM188*
GRM216
GRM219
GRM21A
GRM21B
GRM316
GRM319
GRM31M
GRM31C
W
Dimensions (mm)
L
W
T
e
1.0 ±0.05 0.5 ±0.05 0.5 ±0.05 0.15 to 0.3
1.6 ±0.1 0.8 ±0.1 0.8 ±0.1 0.2 to 0.5
0.6 ±0.1
0.85 ±0.1
2.0 ±0.1 1.25 ±0.1
0.2 to 0.7
1.0 +0/-0.2
1.25 ±0.1
0.6 ±0.1
3.2 ±0.15 1.6 ±0.15 0.85 ±0.1
0.3 to 0.8
1.15 ±0.1
3.2 ±0.2 1.6 ±0.2 1.6 ±0.2
g min.
0.4
0.5
0.7
1.5
* Bulk Case : 1.6 ±0.07(L)g0.8 ±0.07(W)g0.8 ±0.07(T)
■ Applications
General electronic equipment
Temperature Compensating Type GRM15 Series (1.0x0.5 mm) 50V/25V
GRM15
Part Number
1.00x0.50 [0402]
L x W [EIA]
TC
C0G
(5C)
P2H
(6P)
R2H
(6R)
S2H
(6S)
Rated Volt.
50
(1H)
50
(1H)
50
(1H)
50
(1H)
SL
(1X)
50
(1H)
25
(1E)
T2H
(6T)
U2J
(7U)
50
(1H)
50
(1H)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
0.50pF(R50)
0.50(5)
0.75pF(R75)
0.50(5)
1.0pF(1R0)
0.50(5)
2.0pF(2R0)
0.50(5)
3.0pF(3R0)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
4.0pF(4R0)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
5.0pF(5R0)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
6.0pF(6R0)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
7.0pF(7R0)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
8.0pF(8R0)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
9.0pF(9R0)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
10pF(100)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
12pF(120)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
15pF(150)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
18pF(180)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
22pF(220)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
27pF(270)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
33pF(330)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
Continued on the following page.
7
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Continued from the preceding page.
1
GRM15
Part Number
1.00x0.50 [0402]
L x W [EIA]
TC
C0G
(5C)
P2H
(6P)
R2H
(6R)
S2H
(6S)
Rated Volt.
50
(1H)
50
(1H)
50
(1H)
50
(1H)
SL
(1X)
50
(1H)
25
(1E)
T2H
(6T)
U2J
(7U)
50
(1H)
50
(1H)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
39pF(390)
0.50(5)
0.50(5)
0.50(5)
47pF(470)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
56pF(560)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
68pF(680)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
82pF(820)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
100pF(101)
0.50(5)
0.50(5)
0.50(5)
0.50(5)
120pF(121)
0.50(5)
0.50(5)
0.50(5)
150pF(151)
0.50(5)
0.50(5)
0.50(5)
180pF(181)
0.50(5)
0.50(5)
220pF(221)
0.50(5)
0.50(5)
270pF(271)
0.50(5)
0.50(5)
330pF(331)
0.50(5)
0.50(5)
390pF(391)
0.50(5)
0.50(5)
470pF(471)
0.50(5)
560pF(561)
0.50(5)
680pF(681)
0.50(5)
820pF(821)
0.50(5)
1000pF(102)
0.50(5)
0.50(5)
The part numbering code is shown in ( ).
Dimensions are shown in mm and Rated Voltage in Vdc.
Temperature Compensating Type GRM18 Series (1.60x0.80 mm) 200V/100V/50V/25V
GRM18
Part Number
1.60x0.80 [0603]
L x W [EIA]
C0G
(5C)
TC
Rated Volt.
200
(2D)
100
(2A)
50
(1H)
P2H
(6P)
R2H
(6R)
S2H
(6S)
50
(1H)
50
(1H)
50
(1H)
SL
(1X)
200
(2D)
100
(2A)
50
(1H)
25
(1E)
T2H
(6T)
U2J
(7U)
50
(1H)
50
(1H)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
0.50pF(R50)
0.80(8)
0.80(8)
0.80(8)
0.75pF(R75)
0.80(8)
0.80(8)
0.80(8)
1.0pF(1R0)
0.80(8)
0.80(8)
0.80(8)
2.0pF(2R0)
0.80(8)
0.80(8)
0.80(8)
3.0pF(3R0)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
4.0pF(4R0)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
5.0pF(5R0)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
6.0pF(6R0)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
7.0pF(7R0)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
8.0pF(8R0)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
9.0pF(9R0)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
10pF(100)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
12pF(120)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
15pF(150)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
18pF(180)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
22pF(220)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
27pF(270)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
33pF(330)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
39pF(390)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
47pF(470)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
56pF(560)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
Continued on the following page.
8
C02E10.pdf 04.1.20
catalog
to prevent
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and/or
burning,
Pleaseread
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ratingand
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burning,
etc. etc.
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approval
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Thiscatalog
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Continued from the preceding page.
GRM18
Part Number
C0G
(5C)
TC
Rated Volt.
1
1.60x0.80 [0603]
L x W [EIA]
200
(2D)
100
(2A)
50
(1H)
P2H
(6P)
R2H
(6R)
S2H
(6S)
50
(1H)
50
(1H)
50
(1H)
SL
(1X)
200
(2D)
100
(2A)
50
(1H)
25
(1E)
T2H
(6T)
U2J
(7U)
50
(1H)
50
(1H)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
68pF(680)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
82pF(820)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
100pF(101)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
120pF(121)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
150pF(151)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
180pF(181)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
220pF(221)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
270pF(271)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
330pF(331)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
390pF(391)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
470pF(471)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
560pF(561)
0.80(8)
0.80(8)
0.80(8)
0.80(8)
680pF(681)
0.80(8)
0.80(8)
820pF(821)
0.80(8)
0.80(8)
1000pF(102)
0.80(8)
0.80(8)
1200pF(122)
0.80(8)
0.80(8)
1500pF(152)
0.80(8)
0.80(8)
1800pF(182)
0.80(8)
2200pF(222)
0.80(8)
2700pF(272)
0.80(8)
0.80(8)
The part numbering code is shown in ( ).
Dimensions are shown in mm and Rated Voltage in Vdc.
Temperature Compensating Type GRM21 Series (2.00x1.25 mm) 200V/100V/50V/25V
GRM21
Part Number
2.00x1.25 [0805]
L x W [EIA]
C0G
(5C)
TC
Rated Volt.
200
(2D)
100
(2A)
50
(1H)
C0H
(6C)
P2H
(6P)
R2H
(6R)
S2H
(6S)
25
(1E)
50
(1H)
50
(1H)
50
(1H)
SL
(1X)
200
(2D)
100
(2A)
50
(1H)
25
(1E)
T2H
(6T)
U2J
(7U)
50
(1H)
50
(1H)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
12pF(120)
0.85(9)
15pF(150)
0.85(9)
18pF(180)
0.85(9)
22pF(220)
0.85(9)
27pF(270)
0.85(9)
33pF(330)
0.85(9)
39pF(390)
0.85(9)
47pF(470)
0.85(9)
56pF(560)
0.85(9)
68pF(680)
1.25(B)
0.85(9)
82pF(820)
1.25(B)
0.85(9)
100pF(101)
1.25(B)
0.60(6)
120pF(121)
1.25(B)
0.60(6)
150pF(151)
1.25(B)
0.60(6)
180pF(181)
1.25(B)
0.60(6)
0.85(9)
220pF(221)
1.25(B)
0.60(6)
0.85(9)
0.85(9)
270pF(271)
0.60(6)
0.85(9)
0.85(9)
0.85(9)
1.25(B)
330pF(331)
0.60(6)
0.85(9)
0.85(9)
0.85(9)
1.25(B)
390pF(391)
0.60(6)
1.25(B)
0.85(9)
0.85(9)
1.25(B)
0.85(9)
1.25(B)
1.25(B)
1.25(B)
Continued on the following page.
9
C02E10.pdf 04.1.20
catalog
to prevent
smoking
and/or
burning,
Pleaseread
readrating
ratingand
and!CAUTION
!CAUTION(for
(forstorage,
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operating,rating,
rating,soldering,
soldering,mounting
mountingand
andhandling)
handling)ininthis
thisPDF
catalog
to prevent
smoking
and/or
burning,
etc. etc.
!Note •Please
you are
requested
approvespecifications.
our product specifications
or to transact
approval
for product
before ordering.
•This
Thiscatalog
cataloghas
hasonly
onlytypical
typicalspecifications.
specificationsTherefore,
because there
is no
space fortodetailed
Therefore, please
approvethe
our
productsheet
specifications
or specificaions
transact the approval
sheet for product specifications before ordering.
Continued from the preceding page.
1
GRM21
Part Number
2.00x1.25 [0805]
L x W [EIA]
C0G
(5C)
TC
Rated Volt.
200
(2D)
100
(2A)
50
(1H)
C0H
(6C)
P2H
(6P)
R2H
(6R)
S2H
(6S)
25
(1E)
50
(1H)
50
(1H)
50
(1H)
SL
(1X)
200
(2D)
100
(2A)
50
(1H)
25
(1E)
T2H
(6T)
U2J
(7U)
50
(1H)
50
(1H)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
470pF(471)
0.60(6)
1.25(B)
0.85(9)
0.85(9)
560pF(561)
0.60(6)
1.25(B)
1.25(B)
1.25(B)
1.25(B)
0.85(9)
0.85(9)
680pF(681)
0.85(9)
1.25(B)
1.25(B)
0.85(9)
820pF(821)
0.85(9)
1.25(B)
1.25(B)
0.60(6)
1.25(B)
0.60(6)
1000pF(102)
0.85(9)
1.25(B)
1.25(B)
1.25(B)
0.60(6)
1.25(B)
0.60(6)
1200pF(122)
1.25(B)
0.60(6)
1.25(B)
0.60(6)
1500pF(152)
1.25(B)
0.85(9)
1.25(B)
0.85(9)
1.25(B)
0.85(9)
1.25(B)
0.85(9)
1800pF(182)
0.60(6)
2200pF(222)
0.60(6)
2700pF(272)
0.60(6)
3300pF(332)
3900pF(392)
4700pF(472)
0.60(6)
0.85(9)
5600pF(562)
0.85(9)
1.25(B)
6800pF(682)
0.85(9)
1.25(B)
8200pF(822)
0.85(9)
10000pF(103)
0.85(9)
0.85(9)
0.85(9)
1.25(B)
1.25(B)
1.25(B)
0.60(6)
1.25(B)
1.25(B)
0.60(6)
1.25(B)
1.25(B)
0.85(9)
0.60(6)
0.60(6)
12000pF(123)
0.60(6)
0.60(6)
15000pF(153)
0.60(6)
0.60(6)
18000pF(183)
0.60(6)
0.60(6)
22000pF(223)
0.85(9)
0.85(9)
27000pF(273)
0.85(9)
0.85(9)
33000pF(333)
1.00(A)
1.00(A)
39000pF(393)
1.25(B)
1.25(B)
47000pF(473)
1.25(B)
1.25(B)
The part numbering code is shown in ( ).
Dimensions are shown in mm and Rated Voltage in Vdc.
Temperature Compensating Type GRM31 Series (3.20x1.60 mm) 500V/200V/100V/50V/25V
GRM31
Part Number
3.20x1.60 [1206]
L x W [EIA]
C0G
(5C)
TC
Rated Volt.
500
(2H)
200
(2D)
50
(1H)
25
(1E)
C0H
(6C)
P2H
(6P)
R2H
(6R)
S2H
(6S)
25
(1E)
50
(1H)
50
(1H)
50
(1H)
SL
(1X)
200
(2D)
100
(2A)
50
(1H)
25
(1E)
T2H
(6T)
U2J
(7U)
50
(1H)
50
(1H)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
1.0pF(1R0)
1.15(M)
2.0pF(2R0)
1.15(M)
3.0pF(3R0)
1.15(M)
4.0pF(4R0)
1.15(M)
5.0pF(5R0)
1.15(M)
6.0pF(6R0)
1.15(M)
7.0pF(7R0)
1.15(M)
8.0pF(8R0)
1.15(M)
9.0pF(9R0)
1.15(M)
10pF(100)
1.15(M)
12pF(120)
1.15(M)
15pF(150)
1.15(M)
18pF(180)
1.15(M)
22pF(220)
1.15(M)
Continued on the following page.
10
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transact the approval
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Continued from the preceding page.
GRM31
Part Number
C0G
(5C)
TC
Rated Volt.
1
3.20x1.60 [1206]
L x W [EIA]
500
(2H)
200
(2D)
50
(1H)
25
(1E)
C0H
(6C)
P2H
(6P)
R2H
(6R)
S2H
(6S)
25
(1E)
50
(1H)
50
(1H)
50
(1H)
SL
(1X)
200
(2D)
100
(2A)
50
(1H)
25
(1E)
T2H
(6T)
U2J
(7U)
50
(1H)
50
(1H)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
27pF(270)
1.15(M)
33pF(330)
1.15(M)
39pF(390)
1.15(M)
47pF(470)
1.15(M)
56pF(560)
1.15(M)
68pF(680)
1.15(M)
82pF(820)
1.15(M)
270pF(271)
1.15(M)
330pF(331)
1.15(M)
390pF(391)
1.15(M)
470pF(471)
1.15(M)
560pF(561)
1.15(M)
680pF(681)
0.85(9)
820pF(821)
0.85(9)
1.15(M)
0.85(9)
1.15(M)
1000pF(102)
1.15(M) 1.15(M)
0.85(9)
1.15(M)
1200pF(122)
1.15(M) 1.15(M) 1.15(M) 1.15(M)
1500pF(152)
1.15(M) 1.15(M) 1.15(M)
1800pF(182)
1.15(M)
2200pF(222)
1.15(M)
1.15(M)
2700pF(272)
1.15(M)
1.15(M)
3300pF(332)
1.15(M)
3900pF(392)
1.15(M)
0.85(9)
4700pF(472)
1.15(M)
0.85(9)
5600pF(562)
0.85(9)
6800pF(682)
0.85(9)
8200pF(822)
0.85(9)
10000pF(103)
0.85(9)
1.15(M)
1.15(M)
0.85(9)
0.85(9)
0.85(9)
0.85(9)
0.85(9)
1.15(M)
1.15(M)
1.15(M)
1.15(M)
1.15(M)
1.15(M)
12000pF(123)
1.15(M)
15000pF(153)
1.15(M)
27000pF(273)
0.85(9)
33000pF(333)
0.85(9)
47000pF(473)
1.15(M)
56000pF(563)
0.85(9)
0.85(9)
68000pF(683)
1.15(M)
1.15(M)
1.15(M)
1.15(M)
1.15(M)
1.15(M)
82000pF(823)
0.10µF(104)
1.60(C)
The part numbering code is shown in ( ).
Dimensions are shown in mm and Rated Voltage in Vdc.
High Dielectric Constant Type X5R (R6) Characteristics
X5R
(R6)
TC
GRM15
GRM18
GRM21
GRM31
1.00x0.50 [0402]
1.60x0.80 [0603]
2.00x1.25 [0805]
3.20x1.60 [1206]
Part Number
L x W [EIA]
Rated Volt.
16
(1C)
10
(1A)
10
(1A)
6.3
(0J)
10
(1A)
6.3
(0J)
10
(1A)
6.3
(0J)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
68000pF(683)
0.10µF(104)
0.33µF(334)
0.50(5)
0.50(5)
0.50(5)
0.80(8)
Continued on the following page.
11
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Continued from the preceding page.
1
X5R
(R6)
TC
GRM15
GRM18
GRM21
GRM31
1.00x0.50 [0402]
1.60x0.80 [0603]
2.00x1.25 [0805]
3.20x1.60 [1206]
Part Number
L x W [EIA]
16
(1C)
Rated Volt.
10
(1A)
10
(1A)
6.3
(0J)
10
(1A)
6.3
(0J)
10
(1A)
6.3
(0J)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
0.47µF(474)
0.80(8)
0.68µF(684)
0.80(8)
1.0µF(105)
0.80(8)
0.80(8)
0.85(9)
1.5µF(155)
0.85(9)
2.2µF(225)
1.25(B)
0.85(9)
3.3µF(335)
1.25(B)
1.25(B)
1.30(X)
4.7µF(475)
1.25(B)
1.60(C)
1.15(M)
1.60(C)
1.60(C)
10µF(106)
The part numbering code is shown in each ( ).
3.3µF and 4.7µF, 6.3V rated are GRM21 series of L: 2±0.15, W: 1.25±0.15, T: 1.25±0.15.
T: 1.15±0.1mm is also available for GRM31 1.0µF for 16V.
L: 3.2±0.2, W: 1.6±0.2 for GRM31 16V 1.0µF type. Also L: 3.2±0.2, W: 1.6±0.2, T: 1.15±0.15 for GRM31 16V 1.5µF and 2.2µF type.
Dimensions are shown in mm and Rated Voltage in Vdc.
High Dielectric Constant Type X7R (R7) Characteristics
X7R
(R7)
TC
Part Number
L x W [EIA]
Rated Volt.
50
(1H)
GRM15
GRM18
GRM21
GRM31
1.00x0.50 [0402]
1.60x0.80 [0603]
2.00x1.25 [0805]
3.20x1.60 [1206]
25
(1E)
16
(1C)
10
(1A)
100
(2A)
50
(1H)
25
(1E)
16
(1C)
10
(1A)
100
(2A)
50
(1H)
25
(1E)
16
(1C)
100
(2A)
50
(1H)
25
(1E)
16
(1C)
10
(1A)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
220pF
(221)
0.50
(5)
0.80
(8)
330pF
(331)
0.50
(5)
0.80
(8)
470pF
(471)
0.50
(5)
0.80
(8)
680pF
(681)
0.50
(5)
0.80
(8)
1000pF
(102)
0.50
(5)
0.80
(8)
1500pF
(152)
0.50
(5)
0.80
(8)
2200pF
(222)
0.50
(5)
0.80
(8)
0.80
(8)
3300pF
(332)
0.50
(5)
0.80
(8)
0.80
(8)
4700pF
(472)
0.50
(5)
0.80
(8)
0.85
(9)
6800pF
(682)
0.50
(5)
0.80
(8)
0.85
(9)
10000pF
(103)
0.50
(5)
0.80
(8)
1.25
(B)
15000pF
(153)
0.50
(5)
0.80
(8)
22000pF
(223)
0.50
(5)
0.80
(8)
33000pF
(333)
0.50
(5)
0.80
(8)
0.80
(8)
0.85
(9)
1.15
(M)
Continued on the following page.
12
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Continued from the preceding page.
X7R
(R7)
TC
GRM15
GRM18
GRM21
GRM31
1.00x0.50 [0402]
1.60x0.80 [0603]
2.00x1.25 [0805]
3.20x1.60 [1206]
Part Number
L x W [EIA]
Rated Volt.
1
50
(1H)
25
(1E)
16
(1C)
10
(1A)
100
(2A)
50
(1H)
25
(1E)
16
(1C)
10
(1A)
100
(2A)
50
(1H)
25
(1E)
16
(1C)
100
(2A)
50
(1H)
25
(1E)
16
(1C)
10
(1A)
0.85
(9)
0.85
(9)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
47000pF
(473)
0.50
(5)
68000pF
(683)
0.10µF
(104)
0.50
(5)
0.50
(5)
0.80
(8)
0.80
(8)
1.25
(B)
0.80
(8)
0.80
(8)
1.25
(B)
0.80
(8)
0.80
(8)
1.25
(B)
1.25
(B)
0.80
(8)
1.25
(B)
1.25
(B)
0.80
(8)
1.25
(B)
0.85
(9)
0.33µF
(334)
0.85
(9)
1.25
(B)
0.47µF
(474)
1.25
(B)
1.25
(B)
0.15µF
(154)
0.80
(8)
1.15
(M)
0.80
(8)
0.22µF
(224)
0.80
(8)
0.85
(9)
0.85
(9)
0.68µF
(684)
0.85
(9)
1.0µF
(105)
1.25
(B)
1.15
(M)
0.85
(9)
1.15
(M)
1.15
(M)
1.5µF
(155)
1.60
(C)
1.15
(M)
2.2µF
(225)
1.60
(C)
1.15
(M)
3.3µF
(335)
1.60
(C)
4.7µF
(475)
1.60
(C)
0.85
(9)
The part numbering code is shown in each ( ).
The tolerance will be changed to L: 3.2±0.2, W: 1.6±0.2 for GRM31 16V 1.0µF type. Also L: 3.2±0.2, W: 1.6±0.2, T: 1.15±0.15 for GRM31 16V 1.5µF and 2.2µF type.
Dimensions are shown in mm and Rated Voltage in Vdc.
High Dielectric Constant Type Y5V (F5) Characteristics
Y5V
(F5)
TC
GRM15
Part Number
L x W [EIA]
Rated Volt.
GRM18
1.00x0.50 [0402]
50
(1H)
25
(1E)
16
(1C)
GRM21
1.60x0.80 [0603]
100
(2A)
50
(1H)
25
(1E)
16
(1C)
GRM31
2.00x1.25 [0805]
10
(1A)
50
(1H)
25
(1E)
16
(1C)
3.20x1.60 [1206]
10
(1A)
50
(1H)
25
(1E)
16
(1C)
10
(1A)
6.3
(0J)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
2200pF
(222)
0.50
(5)
4700pF
(472)
0.50
(5)
10000pF
(103)
0.50
(5)
22000pF
(223)
0.80
(8)
0.80
(8)
0.50
(5)
47000pF
(473)
0.10µF
(104)
0.50
(5)
0.80
(8)
0.50
(5)
0.80
(8)
0.50
(5)
0.80
(8)
0.80
(8)
0.85
(9)
Continued on the following page.
13
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Continued from the preceding page.
1
Y5V
(F5)
TC
GRM15
GRM18
GRM21
GRM31
1.00x0.50 [0402]
1.60x0.80 [0603]
2.00x1.25 [0805]
3.20x1.60 [1206]
Part Number
L x W [EIA]
Rated Volt.
50
(1H)
25
(1E)
16
(1C)
100
(2A)
50
(1H)
25
(1E)
16
(1C)
10
(1A)
50
(1H)
25
(1E)
16
(1C)
10
(1A)
50
(1H)
25
(1E)
16
(1C)
1.15
(M)
0.85
(9)
10
(1A)
6.3
(0J)
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
0.22µF
(224)
0.80
(8)
1.25
(B)
0.47µF
(474)
0.80
(8)
0.80
(8)
1.25
(B)
1.0µF
(105)
0.80
(8)
0.80
(8)
0.85
(9)
0.85
(9)
0.85
(9)
1.25
(B)
1.25
(B)
1.25
(B)
2.2µF
(225)
0.85
(9)
4.7µF
(475)
1.15
(M)
1.25
(B)
10µF
(106)
1.15
(M)
1.15
(M)
0.85
(9)
1.15
(M)
1.15
(M)
1.60
(C)
1.15
(M)
The part numbering code is shown in each ( ).
T: 1.25±0.1mm is also available for GRM21 25V or 16V 1.0µF type.
Dimensions are shown in mm and Rated Voltage in Vdc.
High Dielectric Constant Type Z5U (E4) Characteristics
Z5U
(E4)
TC
GRM18
GRM21
GRM31
L x W [EIA]
1.60x0.80 [0603]
2.00x1.25 [0805]
3.20x1.60 [1206]
Rated Volt.
50
(1H)
50
(1H)
50
(1H)
Part Number
Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code)
10000pF(103)
0.80(8)
22000pF(223)
0.80(8)
47000pF(473)
0.60(6)
0.10µF(104)
0.85(9)
0.22µF(224)
The part numbering code is shown in ( ).
Dimensions are shown in mm and Rated Voltage in Vdc.
14
0.85(9)
1.15
(M)
C02E10.pdf 04.1.20
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GRM Series Specifications and Test Methods
Specifications
No.
1
Item
Operating
Temperature
Temperature
Compensating Type
Y55 to W125D
4
Test Method
High Dielectric Type
R6 : Y55 to W85D
R7 : Y55 to W125D
E4 : W10 to W85D
F5 : Y30 to W85D
The rated voltage is defined as the maximum voltage which
may be applied continuously to the capacitor.
When AC voltage is superimposed on DC voltage, VP-P or VO-P,
whichever is larger, should be maintained within the rated
voltage range.
See the previous page.
2
Rated Voltage
3
Appearance
No defects or abnormalities
Visual inspection
4
Dimensions
Within the specified dimensions
Using calipers on micrometer
5
Dielectric Strength
No defects or abnormalities
No failure should be observed when *300% of the rated voltage
(C0∆ to U2J and SL) or *250% of the rated voltage (X5R, X7R,
Z5U and Y5V) is applied between the terminations for 1 to 5
seconds, provided the charge/discharge current is less than
50mA. *200% for 500V
6
Insulation
Resistance
More than 10,000MΩ or 500Ω • F (Whichever is smaller)
The insulation resistance should be measured with a DC
voltage not exceeding the rated voltage at 25D and 75%RH
max. and within 2 minutes of charging.
7
Capacitance
Within the specified tolerance
8
Q/
Dissipation Factor
(D.F.)
30pFmin. : Q U1000
30pFmax. : Q U400+20C
C : Nominal Capacitance (pF)
The capacitance/Q/D.F. should be measured at 25D at the
frequency and voltage shown in the table.
[R6, R7]
W.V. : 25Vmin. : 0.025max.
W.V. : 16/10V : 0.035max.
W.V. : 6.3V
0.05max.(CF3.3µF)
0.1max.(CU3.3µF)
[E4]
W.V. : 25Vmin. : 0.025max.
[F5]
W.V. : 25Vmin.
: 0.05max.(CF0.10µF)
: 0.09max.(CU0.10µF)
W.V. : 16V/10V : 0.125max.
W.V. : 6.3Vmax. : 0.15max.
9
Capacitance
Temperature
Characteristics
Capacitance
Change
Within the specified tolerance
(Table A)
Temperature
Coefficient
Within the specified tolerance
(Table A)
Capacitance
Drift
Within T0.2% or T0.05pF
(Whichever is larger.)
*Does not apply to 1X/25V
R6 : WithinT15%
(Y55 to W85D)
R7 : Within±15%
(Y55 to W125D)
E4 : Within W22/Y56%
(W10 to W85D)
F5 : Within W22/Y82%
(Y30 to W85D)
Char.
Item
∆C to 7U, 1X
(1000pF and
below)
Frequency
Voltage
1T0.1MHz
0.5 to 5Vrms
∆C to 7U, 1X
(more than
1000pF)
1T0.1kHz
1T0.2Vrms
R6, R7, F5
(10µF and below)
1T0.1kHz
1T0.2Vrms
R6, R7, F5
(more than 10µF)
120T24Hz
0.5T0.1Vrms
E4
1T0.1kHz
0.5T0.05Vrms
The capacitance change should be measured after 5 min. at
each specified temperature stage.
(1) Temperature Compensating Type
The temperature coefficient is determined using the
Capacitance measured in step 3 as a reference.
When cycling the temperature sequentially from step 1 through
5 (C0∆ : W25D to W125D : other temp. coeffs. : W25D to
W85D) the capacitance should be within the specified tolerance
for the temperature coefficient and capacitance change as
Table A.
The capacitance drift is calculated by dividing the differences
between the maximum and minimum measured values in steps
1, 3 and 5 by the capacitance value in step 3.
Step
1
Temperature(D)
25T2
2
Y55T3 (for ∆C to 7U/1X/R6/R7)
Y30T3 (for F5)
10T3 (for E4)
3
25T2
4
125T3 (for ∆C/R7)
85T3 (for other TC)
5
25T2
(2) High Dielectric Constant Type
The ranges of capacitance change compared with the above
25D value over the temperature ranges shown in the table
should be within the specified ranges.
Continued on the following page.
22
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GRM Series Specifications and Test Methods
Continued from the preceding page.
Specifications
No.
Item
Test Method
Temperature
Compensating Type
High Dielectric Type
Solder the capacitor to the test jig (glass epoxy board) shown in
Fig. 1 using a eutectic solder. Then apply 10N* force in parallel
with the test jig for 10T1sec. The soldering should be done
either with an iron or using the reflow method and should be
conducted with care so that the soldering is uniform and free of
defects such as heat shock. *2N (GRp03) 5N (GRp15,
GRM18)
10
Adhesive Strength
of Termination
a
b
c
Solder resist
No removal of the terminations or other defect should occur.
Baked electrode or
copper foil
Type
GRp03
GRp15
GRM18
GRM21
GRM31
GRM32
GRM43
GRM55
a
0.3
0.4
1.0
1.2
2.2
2.2
3.5
4.5
b
0.9
1.5
3.0
4.0
5.0
5.0
7.0
8.0
c
0.3
0.5
1.2
1.65
2.0
2.9
3.7
5.6
(in mm)
Fig. 1
11
Appearance
No defects or abnormalities
Capacitance
Within the specified tolerance
Vibration
Resistance
Q/D.F.
[R6, R7]
W.V. : 25Vmin. : 0.025max.
W.V. : 16/10V : 0.035max.
W.V. : 6.3V :
0.05max. (CF3.3µF)
0.1max. (C U3.3µF)
30pFmin. : QU1000
30pFmax. : QU400W20C
C : Nominal Capacitance (pF)
[E4]
W.V. : 25Vmin. : 0.025max.
[F5]
W.V. : 25Vmin.
: 0.05max. (CF0.10µF)
: 0.09max. (C U0.10µF)
W.V. : 16V/10V : 0.125max.
W.V. : 6.3Vmax. : 0.15max.
Solder the capacitor on the test jig (glass epoxy board) shown
in Fig. 2 using a eutectic solder. Then apply a force in the
direction shown in Fig. 3. The soldering should be done either
with an iron or using the reflow method and should be
conducted with care so that the soldering is uniform and free of
defects such as heat shock.
No crack or marked defect should occur.
φ4.5
40
QRST¢£¤¥,,QR¢£S¤T¥
S¤T¥
b
Solder the capacitor to the test jig (glass epoxy board) in the
same manner and under the same conditions as (10). 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 55Hz. The
frequency range, from 10 to 55Hz and return to 10Hz, should
be traversed in approximately 1 minute. This motion should be
applied for a period of 2 hours in each of 3 mutually perpendicular directions (total of 6 hours).
c
20
a
12
100
Deflection
50 Pressurizing
speed : 1.0mm/sec.
Pressurize
R230
t : 1.6mm (GRp03/15 : 0.8mm)
Type
GRp03
GRp15
GRM18
GRM21
GRM31
GRM32
GRM43
GRM55
a
0.3
0.4
1.0
1.2
2.2
2.2
3.5
4.5
b
0.9
1.5
3.0
4.0
5.0
5.0
7.0
8.0
c
0.3
0.5
1.2
1.65
2.0
2.9
3.7
5.6
Flexure : V1
Capacitance meter
45
45
Fig. 3
(in mm)
Fig. 2
Continued on the following page.
23
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GRM Series Specifications and Test Methods
Continued from the preceding page.
Specifications
No.
13
Item
Solderability of
Termination
Temperature
Compensating Type
Test Method
High Dielectric Type
75% of the terminations are to be soldered evenly and
continuously.
4
Immerse the capacitor in a solution of ethanol (JIS-K-8101) and
rosin (JIS-K-5902) (25% rosin in weight proportion).
Preheat at 80 to 120D for 10 to 30 seconds. After preheating,
immerse in eutectic solder solution for 2T0.5 seconds at
230T5D.
The measured and observed characteristics should satisfy the
specifications in the following table.
14
Appearance
No marking defects
Capacitance
Change
Within T2.5% or T0.25pF
(Whichever is larger)
Resistance
to
Soldering
Q/D.F.
Heat
30pFmin. : Q U1000
30pFmax. : Q U400W20C
C : Nominal Capacitance (pF)
R6, R7 : Within T7.5%
E4, F5 : Within T20%
[R6, R7]
W.V. : 25Vmin. : 0.025max.
W.V. : 16/10V : 0.035max.
W.V. : 6.3V :
0.05max. (CF3.3µF)
0.1max. (C U3.3µF)
[E4]
W.V. : 25Vmin. : 0.025max.
[F5]
W.V. : 25Vmin.
: 0.05max. (CF0.10µF)
: 0.09max. (C U0.10µF)
W.V. : 16V/10V : 0.125max.
W.V. : 6.3Vmax. : 0.15max.
I.R.
More than 10,000MΩ or 500Ω • F (Whichever is smaller)
Dielectric
Strength
No failure
Preheat the capacitor at 120 to 150D for 1 minute.
Immerse the capacitor in a eutectic solder solution at 270T5D
for 10T0.5 seconds. Let sit at room temperature for 24T2 hours
(temperature compensating type) or 48T4 hours (high dielectric
constant type), then measure.
#Initial measurement for high dielectric constant type
W 0
Perform a heat treatment at 150 Y10
D for one hour and then
let sit for 48T4 hours at room temperature.
Perform the initial measurement.
*Preheating for GRM32/43/55
Step
1
2
Temperature
100D to 120D
170D to 200D
Time
1 min.
1 min.
The measured and observed characteristics should satisfy the
specifications in the following table.
15
Appearance
No marking defects
Capacitance
Change
Within T2.5% or T0.25pF
(Whichever is larger)
Temperature
Cycle
Q/D.F.
30pFmin. : Q U1000
30pFmax. : Q U400W20C
C : Nominal Capacitance (pF)
R6, R7 : Within T7.5%
E4, F5 : Within T20%
[R6, R7]
W.V. : 25Vmin. : 0.025max.
W.V. : 16/10V : 0.035max.
W.V. : 6.3V
0.05max. (CF3.3µF)
0.1max. (C U3.3µF)
Fix the capacitor to the supporting jig in the same manner and
under the same conditions as (10). Perform the five cycles
according to the four heat treatments listed in the following
table. Let sit for 24T2 hours (temperature compensating type)
or 48T4 hour (high dielectric constant type) at room
temperature, then measure.
Step
[E4]
W.V. : 25Vmin. : 0.025max.
Temp. (D)
[F5]
W.V. : 25Vmin.
: 0.05max. (CF0.10µF)
: 0.09max. (C U0.10µF)
W.V. : 16V/10V : 0.125max.
W.V. : 6.3Vmax. : 0.15max.
Time (min.)
I.R.
More than 10,000MΩ or 500Ω • F (Whichever is smaller)
Dielectric
Strength
No failure
1
2
3
4
Max.
Min.
Room
Room
Operating
Operating
Temp.
Temp.
Temp.W3/Y0
Temp.W0/Y3
30T3
2 to 3
30T3
2 to 3
#Initial measurement for high dielectric constant type
W 0
Perform a heat treatment at 150 Y10
D for one hour and then
let sit for 48T4 hours at room temperature.
Perform the initial measurement.
Continued on the following page.
24
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GRM Series Specifications and Test Methods
Continued from the preceding page.
Specifications
No.
Item
Temperature
Compensating Type
Test Method
High Dielectric Type
The measured and observed characteristics should satisfy the
specifications in the following table.
16
Humidity
Steady
State
Appearance
No marking defects
Capacitance
Change
Within T5% or T0.5pF
(Whichever is larger)
Q/D.F.
30pF and over : QU350
10pF and over
30pF and below :
QU275W5C/2
10pF and below :
QU200W10C
C : Nominal Capacitance (pF)
4
R6, R7 : Within T12.5%
E4, F5 : Within T30%
[R6, R7]
W.V. : 25Vmin. : 0.05max.
W.V. : 16/10V : 0.05max.
W.V. : 6.3V
0.075max. (CF3.3µF)
0.125max. (CU3.3µF)
[E4]
W.V. : 25Vmin. : 0.05max.
Let the capacitor sit at 40T2D and 90 to 95% humidity for
500T12 hours.
Remove and let sit for 24T2 hours (temperature compensating
type) or 48T4 hours (high dielectric constant type) at room temperature, then measure.
[F5]
W.V. : 25Vmin.
: 0.075max. (CF0.10µF)
: 0.125max. (CU0.10µF)
W.V. : 16V/10V : 0.15max.
W.V. : 6.3Vmax. : 0.2max.
I.R.
More than 1,000MΩ or 50Ω • F (Whichever is smaller)
Dielectric
Strength
No failure
The measured and observed characteristics should satisfy the
specifications in the following table.
Appearance
Capacitance
Change
17
Humidity
Load
Q/D.F.
No marking defects
Within T7.5% or T0.75pF
(Whichever is larger)
30pF and over : QU200
30pF and below :
QU100+10C/3
C : Nominal Capacitance (pF)
R6, R7 : Within T12.5%
E4 : Within T30%
F5 : Within T30%
[W.V. : 10Vmax.]
F5 : Within W30/Y40%
[R6, R7]
W.V. : 25Vmin. : 0.05max.
W.V. : 16/10V : 0.05max.
W.V. : 6.3V
0.075max. (CF3.3µF)
0.125max. (CU3.3µF)
[E4]
W.V. : 25Vmin. : 0.05max.
[F5]
W.V. : 25Vmin.
: 0.075max. (CF0.10µF)
: 0.125max. (CU0.10µF)
W.V. : 16V/10V : 0.15max.
W.V. : 6.3Vmax. : 0.2max.
I.R.
More than 500MΩ or 25Ω • F (Whichever is smaller)
Dielectric
Strength
No failure
Apply the rated voltage at 40T2D and 90 to 95% humidity for
500T12 hours. Remove and let sit for 24T2 hours (temperature
compensating type) or 48T4 hours (high dielectric constant
type) at room temperature, then measure. The charge/discharge
current is less than 50mA.
#Initial measurement for F5/10V max.
Apply the rated DC voltage for 1 hour at 40T2D.
Remove and let sit for 48T4 hours at room temperature.
Perform initial measurement.
Continued on the following page.
25
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GRM Series Specifications and Test Methods
Continued from the preceding page.
Specifications
No.
Item
Temperature
Compensating Type
Test Method
High Dielectric Type
The measured and observed characteristics should satisfy the
specifications in the following table.
Appearance
No marking defects
4
Capacitance
Change
18
High
Temperature
Load
Q/D.F.
Within T3% or T0.3pF
(Whichever is larger)
30pF and over : QU350
10pF and over
30pF and below :
QU275+5C/2
10pF and below :
QU200+10C
C : Nominal Capacitance (pF)
R6, R7 : Within T12.5%
E4 : Within T30%
F5 : Within T30%
(CapF1.0µF)
F5 : Within
W30/Y40% (CapU1.0µF)
[R6, R7]
W.V. : 25Vmin. : 0.05max.
W.V. : 16/10V : 0.05max.
W.V. : 6.3V
0.075max. (CF3.3µF)
0.125max. (CU3.3µF)
[E4]
W.V. : 25Vmin. : 0.05max
[F5]
W.V. : 25Vmin.
: 0.075max. (CF0.10µF)
: 0.125max. (CU0.10µF)
W.V. : 16V/10V : 0.15max.
W.V. : 6.3Vmax. : 0.2max.
I.R.
More than 1,000MΩ or 50Ω #F (Whichever is smaller)
Dielectric
Strength
No failure
Apply 200% of the rated voltage for 1000T12 hours at the
maximum operating temperature T3D. Let sit for 24T2 hours
(temperature compensating type) or 48T4 hours (high dielectric
constant type) at room temperature, then measure.
The charge/discharge current is less than 50mA.
#Initial measurement for high dielectric constant type.
Apply 200% of the rated DC voltage for one hour at the
maximum operating temperature T3D. Remove and let sit for
48T4 hours at room temperature. Perform initial measurement.
*150% for 500V and CU10µF
Table A
Capacitance Change from 25D (%)
Char. Code
Nominal Values (ppm/D)*
Y55
Y30
Max.
Min.
Max.
Min.
Y0.24
Y0.17
0.58
0.40
Y000 T030
5C
Y0.48
Y0.33
0.87
0.59
Y000 T060
6C
0.72
0.50
2.33
1.61
Y150 T060
6P
1.28
0.88
3.02
2.08
Y220 T060
6R
2.16
1.49
4.09
2.81
Y330 T060
6S
3.28
2.26
5.46
3.75
Y470 T060
6T
5.04
3.47
8.78
6.04
Y750 T120
7U
Y
Y
Y
Y
W350 to Y1000
1X
*Nominal values denote the temperature coefficient within a range of 25D to 125D (for ∆C)/85D (for other TC).
26
Y10
Max.
0.25
0.38
1.02
1.32
1.79
2.39
3.84
Y
Min.
Y0.11
Y0.21
0.32
0.56
0.95
1.44
2.21
Y
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