Chip Monolithic Ceramic Capacitors



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This PDF catalog is downloaded from the website of Murata Manufacturing co., ltd. Therefore, it s specifications are subject to change or our products in it may be discontinued without advance notice. Please check with our sales representatives or product engineers before ordering.!note Chip Monolithic Ceramic Capacitors Cat.No.C02E-16

o Part Numbering Chip Monolithic Ceramic Capacitors (Part Number) GR q M w 18 e 8 r B1 t 1H y 102 u K i A01 o D!0 qproduct ID wseries Product ID Code Series GR GQ GM GN LL GJ GA edimensions (LgW) Code 02 0 0 08 0D 0M 1 18 1M 21 22 1 2 42 4 2 J M 4 7 M A D M L R A M M 2 Dimensions (LgW) 0.4g0.2mm 0.6g0.mm 0.g0.mm 0.8g0.8mm 0.8g0.8mm 0.9g0.6mm 1.0g0.mm 1.6g0.8mm 1.7g1.0mm 2.0g1.2mm 2.8g2.8mm.2g1.6mm.2g2.mm 4.g2.0mm 4.g.2mm.7g2.8mm.7g.0mm Soft Termination Type Tin Plated Layer Only for Information Devices / Tip & Ring Only for Camera Flash Circuit for Flow/Reflow Soldering Capacitor Type Controlled ESR Type 8-termination Type 10-termination Type Low Loss Type For AC20V (r.m.s.) Safety Standard Certified Type 0100 0201 0202 00 0101 002 0402 060 004 080 1111 1206 1210 1808 1812 2211 2220 rdimension (T) (Except GNM) Code 2 6 7 8 9 A B C D E F M N Q R S X relements (GNM Only) Code 2 4 Dimension (T) 0.2mm 0.mm 0.mm 0.6mm 0.7mm 0.8mm 0.8mm 1.0mm 1.2mm 1.6mm 2.0mm 2.mm.2mm 1.1mm 1.mm 1.mm 1.8mm 2.8mm Depends on individual standards. Elements 2-elements 4-elements Continued on the following page. Please check the MURATA home page (http://www.murata.com/) if you cannot find the part number in the catalog. 2

Continued from the preceding page. ttemperature Characteristics Temperature Characteristic Codes Code 1X 2C 2P 2R 2S 2T C P R S T U 4C C G 6C 6P 6R 6S 6T 7U B1 B C7 C8 D7 D8 E7 F1 F L8 R1 R R6 R7 R9 W0 Public STD Code SL *1 CH *1 PH *1 RH *1 SH *1 TH *1 CJ *1 PJ *1 RJ *1 SJ *1 TJ *1 UJ *1 CK *1 C0G *1 X8G *1 C0H *1 P2H *1 R2H *1 S2H *1 T2H *1 U2J *1 B *2 B X7S X6S X7T X6T X7U F *2 YV X8L R *2 R XR X7R X8R - * - Reference Temperature 2 C 2 C 2 C 2 C 2 C 2 C 2 C 2 C 2 C 2 C 2 C 2 C 2 C 2 C 2 C 2 C 2 C 2 C 2 C Temperature Characteristics Temperature Change or Range Temperature Coefficient 20 to 8 C +0 to -1000ppm/ C 20 to 12 C 0±60ppm/ C 20 to 8 C -10±60ppm/ C 20 to 8 C -220±60ppm/ C 20 to 8 C -0±60ppm/ C 20 to 8 C -470±60ppm/ C 20 to 12 C 0±120ppm/ C 20 to 8 C -10±120ppm/ C 20 to 8 C -220±120ppm/ C 20 to 8 C -0±120ppm/ C 20 to 8 C -470±120ppm/ C 20 to 8 C -70±120ppm/ C 20 to 12 C 0±20ppm/ C 2 to 12 C 0±0ppm/ C 2 to 10 C 0±0ppm/ C 2 to 12 C 0±60ppm/ C 2 to 8 C -10±60ppm/ C 2 to 8 C -220±60ppm/ C 2 to 8 C -0±60ppm/ C 2 to 8 C -470±60ppm/ C 2 to 12 C *6-70±120ppm/ C -2 to 8 C ±10% -2 to 8 C ±10% - to 12 C ±22% - to 10 C ±22% - to 12 C +22, -% - to 10 C +22, -% - to 12 C +22, -6% -2 to 8 C -0 to 8 C - to 10 C - to 12 C - to 12 C - to 8 C - to 12 C - to 10 C - to 12 C *1 Please refer to table for Change under reference temperature. *2 change is specified with 0% rated voltage applied. * Murata Temperature Characteristic Code. *4 Apply DC0V bias. * No DC bias. *6 Rated Voltage 100Vdc max : 2 to 8 C +0, -80% +22, -82% +1, -40% ±1% ±1% ±1% ±1% ±1% ±10% *4 +22, -% * Operating Temperature Range - to 12 C - to 12 C -2 to 8 C -2 to 8 C -2 to 8 C -2 to 8 C - to 12 C -2 to 8 C -2 to 8 C -2 to 8 C -2 to 8 C -2 to 8 C - to 12 C - to 12 C - to 10 C - to 12 C - to 12 C - to 12 C - to 12 C - to 12 C - to 12 C -2 to 8 C -2 to 8 C - to 12 C - to 10 C - to 12 C - to 10 C - to 12 C -2 to 8 C -0 to 8 C - to 10 C - to 12 C - to 12 C - to 8 C - to 12 C - to 10 C - to 12 C Continued on the following page. Please check the MURATA home page (http://www.murata.com/) if you cannot find the part number in the catalog.

Continued from the preceding page. o Change from each temperature Code Change from (%) Murata Code C 2 C 10 C Max. Min. Max. Min. Max. Min. 1X 2C 0.82 0.4 0.49 0.27 0. 0.18 2P 1.2 0.41 0.88 0.27 2R 1.70 0.72 1.1 0.48 2S 2.0 1.22 1.4 0.81 2T.07 1.8 2.0 1.2 C 1.7 0.90 0.82 0.4 0. 0.6 P 1.6 0.14 1.10 0.09 R 2.0 0.4 1. 0.0 S 2.6 0.9 1.76 0.6 T.40 1.8 2.27 1.0 U 4.94 2.84.29 1.89 4C 2.6 1.88 1.4 1.1 1.02 0.7 Code Change from 2 C (%) Murata Code C 0 C 10 C Max. Min. Max. Min. Max. Min. C/G 0.8 0.24 0.40 0.17 0.2 0.11 6C 0.87 0.48 0.9 0. 0.8 0.21 6P 2. 0.72 1.61 0.0 1.02 0.2 6R.02 1.28 2.08 0.88 1.2 0.6 6S 4.09 2.16 2.81 1.49 1.79 0.9 6T.46.28.7 2.26 2.9 1.44 7U 8.78.04 6.04.47.84 2.21 yrated Voltage Code 0E 0G 0J 1A 1C 1E YA 1H 2A 2D 2E YD 2H 2J A D F BB E2 GC GF GD GB Rated Voltage DC2.V DC4V DC6.V DC10V DC16V DC2V DCV DC0V DC100V DC200V DC20V DC00V DC00V DC60V DC1kV DC2kV DC.1kV DC0V (for Camera Flash Circuit) AC20V X1/Y2; AC20V (Safety Standard Certified Type GC) Y2, X1/Y2; AC20V (Safety Standard Certified Type GF) Y; AC20V (Safety Standard Certified Type GD) X2; AC20V (Safety Standard Certified Type GB) u Expressed by three-digit alphanumerics. The unit is picofarad (pf). The first and second figures are significant digits, and the third figure expresses the number of zeros which follow the two numbers.if there is a decimal point, it is expressed by the capital letter "R." In this case, all figures are significant digits. Ex.) Code R0 1R0 100 10 0.pF 1.0pF 10pF 10000pF Continued on the following page. Please check the MURATA home page (http://www.murata.com/) if you cannot find the part number in the catalog. 4

Continued from the preceding page. i Tolerance Code Tolerance TC Series Step W ±0.0pF C GRM/GJM V9.9pF 0.1pF GRM/GJM V9.9pF 0.1pF B ±0.1pF C V1pF 0.1pF GQM 1.1 to 9.9pF 1pF Step and E24 Series C GRM/GJM V9.9pF 0.1pF except C GRM VpF * 1pF C ±0.2pF V1pF 0.1pF C GQM 1.1 to 9.9pF 1pF Step and E24 Series C GRM/GJM.1 to 9.9pF 0.1pF D ±0.pF except C GRM.1 to 9.9pF * 1pF C GQM.1 to 9.9pF 1pF Step and E24 Series G ±2% C GJM U10pF E12 Series C GQM U10pF E24 Series J ±% C, SL, U2J GRM/GA U10pF E12 Series C GQM/GJM U10pF E24 Series B, R, X7R, XR, ZLM GRJ/GRM/GR7/GA E6 Series K ±10% C0G GNM E6 Series B, R, X7R, XR, ZLM GR4, GMD E12 Series B, R, X7R, X7S GRM/GMA E6 Series M ±20% XR, X7R, X7S GNM E Series X7R GA2 E Series XR, X7R, X7S, X6S LLL/LLR/LLA/LLM E Series Z +80%, -20% F, YV GRM E Series R Depends on individual standards. * E24 series is also available. oindividual Specification Code (Except LLR) Expressed by three figures. oesr (LLR Only) Code ESR E01 100mΩ E0 220mΩ E0 470mΩ E07 1000mΩ!0Packaging Code L D E K J F B C T Packaging ø180mm Embossed Taping ø180mm Paper Taping ø180mm Paper Taping (LLL1) ø0mm Embossed Taping ø0mm Paper Taping ø0mm Paper Taping (LLL1) Bulk Bulk Case Bulk Tray Please check the MURATA home page (http://www.murata.com/) if you cannot find the part number in the catalog.

Chip Monolithic Ceramic Capacitors Type Features 1. Mobile Telecommunication and RF module, mainly 2. Improvement of telephone call quality, Low power Consumption, yield ratio improvement. Applications VCO, PA, Mobile Telecommunication Part Number GJM0 GJM1 e L W Dimensions (mm) T e g min. 0.6 ±0.0 0. ±0.0 0. ±0.0 0.1 to 0.2 0.2 1.0 ±0.0 0. ±0.0 0. ±0.0 0.1 to 0. 0. g L e W T 87

Table Temperature Compensating Type C0G(C)/C0H(6C) Characteristics ex.: T Dimension [mm] LxW [mm] Rated Voltage [Vdc] 0.1pF(R10) 0.2pF(R20) 0.pF(R0) 0.4pF(R40) 0.pF(R0) 0.6pF(R60) 0.7pF(R70) 0.8pF(R80) 0.9pF(R90) 1.0pF(1R0) 1.1pF(1R1) 1.2pF(1R2) 1.pF(1R) 1.4pF(1R4) 1.pF(1R) 1.6pF(1R6) 1.7pF(1R7) 1.8pF(1R8) 1.9pF(1R9) 2.0pF(2R0) 2.1pF(2R1) 2.2pF(2R2) 2.pF(2R) 2.4pF(2R4) 2.pF(2R) 2.6pF(2R6) 2.7pF(2R7) 2.8pF(2R8) 2.9pF(2R9).0pF(R0).1pF(R1).2pF(R2).pF(R).4pF(R4).pF(R).6pF(R6).7pF(R7).8pF(R8).9pF(R9) 4.0pF(4R0) 4.1pF(4R1) 4.2pF(4R2) 4.pF(4R) 4.4pF(4R4) 4.pF(4R) 4.6pF(4R6) 4.7pF(4R7) 4.8pF(4R8) 4.9pF(4R9) 0.6x0. (0) <0201> 2 (1E) 6. (0J) 1.0x0. (1) <0402> 0 (1H) The part number code is shown in ( ) and Unit is shown in [ ]. LxW [mm] Rated Voltage [Vdc].0pF(R0).1pF(R1).2pF(R2).pF(R).4pF(R4).pF(R).6pF(R6).7pF(R7).8pF(R8).9pF(R9) 6.0pF(6R0) 6.1pF(6R1) 6.2pF(6R2) 6.pF(6R) 6.4pF(6R4) 6.pF(6R) 6.6pF(6R6) 6.7pF(6R7) 6.8pF(6R8) 6.9pF(6R9) 7.0pF(7R0) 7.1pF(7R1) 7.2pF(7R2) 7.pF(7R) 7.4pF(7R4) 7.pF(7R) 7.6pF(7R6) 7.7pF(7R7) 7.8pF(7R8) 7.9pF(7R9) 8.0pF(8R0) 8.1pF(8R1) 8.2pF(8R2) 8.pF(8R) 8.4pF(8R4) 8.pF(8R) 8.6pF(8R6) 8.7pF(8R7) 8.8pF(8R8) 8.9pF(8R9) 9.0pF(9R0) 9.1pF(9R1) 9.2pF(9R2) 9.pF(9R) 9.4pF(9R4) 9.pF(9R) 9.6pF(9R6) 9.7pF(9R7) 9.8pF(9R8) < >: [inch] Code 0.6x0. (0) <0201> 2 (1E) 6. (0J) 1.0x0. (1) <0402> 0 (1H) LxW [mm] Rated Voltage [Vdc] 9.9pF(9R9) 10pF(100) 11pF(110) 12pF(120) 1pF(10) 1pF(10) 16pF(160) 18pF(180) 20pF(200) 22pF(220) 24pF(240) 27pF(270) 0pF(00) pf(0) 0.6x0. (0) <0201> 2 (1E) 6. (0J) 1.0x0. (1) <0402> 0 (1H) 88

Temperature Compensating Type C0G(C) Characteristics LxW [mm] Rated Volt. [Vdc] 0.6x0.(0)<0201> 2(1E) 1.0x0.(1)<0402> 0(1H) Tolerance Part Number 0.1pF(R10) 0.2pF(R20) 0.pF(R0) 0.4pF(R40) 0.pF(R0) 0.6pF(R60) 0.7pF(R70) 0.8pF(R80) 0.9pF(R90) 1.0pF(1R0) 1.1pF(1R1) 1.2pF(1R2) 1.pF(1R) 1.4pF(1R4) 1.pF(1R) 1.6pF(1R6) 1.7pF(1R7) 1.8pF(1R8) 1.9pF(1R9) ±0.0pF(W) ±0.0pF(W) ±0.0pF(W) ±0.0pF(W) ±0.0pF(W) ±0.0pF(W) ±0.0pF(W) ±0.0pF(W) ±0.0pF(W) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) GJM0C1ER20WB01D GJM0C1ER20BB01D GJM0C1ER0WB01D GJM0C1ER0BB01D GJM0C1ER40WB01D GJM0C1ER40BB01D GJM0C1ER0WB01D GJM0C1ER0BB01D GJM0C1ER60WB01D GJM0C1ER60BB01D GJM0C1ER70WB01D GJM0C1ER70BB01D GJM0C1ER80WB01D GJM0C1ER80BB01D GJM0C1ER90WB01D GJM0C1ER90BB01D GJM0C1E1R0WB01D GJM0C1E1R0BB01D GJM0C1E1R0CB01D GJM0C1E1R1WB01D GJM0C1E1R1BB01D GJM0C1E1R1CB01D GJM0C1E1R2WB01D GJM0C1E1R2BB01D GJM0C1E1R2CB01D GJM0C1E1RWB01D GJM0C1E1RBB01D GJM0C1E1RCB01D GJM0C1E1R4WB01D GJM0C1E1R4BB01D GJM0C1E1R4CB01D GJM0C1E1RWB01D GJM0C1E1RBB01D GJM0C1E1RCB01D GJM0C1E1R6WB01D GJM0C1E1R6BB01D GJM0C1E1R6CB01D GJM0C1E1R7WB01D GJM0C1E1R7BB01D GJM0C1E1R7CB01D GJM0C1E1R8WB01D GJM0C1E1R8BB01D GJM0C1E1R8CB01D GJM0C1E1R9WB01D GJM0C1E1R9BB01D GJM0C1E1R9CB01D The part number code is shown in ( ) and Unit is shown in [ ]. (Part Number) GJ M 0 C 1E R20 W B01 D q w e r t y u i o!0 Packaging Code in Part Number shows STD 180mm Reel Taping. GJM1C1HR10WB01D GJM1C1HR10BB01D GJM1C1HR20WB01D GJM1C1HR20BB01D GJM1C1HR0WB01D GJM1C1HR0BB01D GJM1C1HR40WB01D GJM1C1HR40BB01D GJM1C1HR0WB01D GJM1C1HR0BB01D GJM1C1HR60WB01D GJM1C1HR60BB01D GJM1C1HR70WB01D GJM1C1HR70BB01D GJM1C1HR80WB01D GJM1C1HR80BB01D GJM1C1HR90WB01D GJM1C1HR90BB01D GJM1C1H1R0WB01D GJM1C1H1R0BB01D GJM1C1H1R0CB01D GJM1C1H1R1WB01D GJM1C1H1R1BB01D GJM1C1H1R1CB01D GJM1C1H1R2WB01D GJM1C1H1R2BB01D GJM1C1H1R2CB01D GJM1C1H1RWB01D GJM1C1H1RBB01D GJM1C1H1RCB01D GJM1C1H1R4WB01D GJM1C1H1R4BB01D GJM1C1H1R4CB01D GJM1C1H1RWB01D GJM1C1H1RBB01D GJM1C1H1RCB01D GJM1C1H1R6WB01D GJM1C1H1R6BB01D GJM1C1H1R6CB01D GJM1C1H1R7WB01D GJM1C1H1R7BB01D GJM1C1H1R7CB01D GJM1C1H1R8WB01D GJM1C1H1R8BB01D GJM1C1H1R8CB01D GJM1C1H1R9WB01D GJM1C1H1R9BB01D GJM1C1H1R9CB01D < >: [inch] Code qproduct ID wseries edimensions (LxW) rdimension (T) ttemperature Characteristics yrated Voltage u i Tolerance oindividual Specification Code!0Packaging 89

Temperature Compensating Type C0G(C) Characteristics LxW [mm] Rated Volt. [Vdc] 0.6x0.(0)<0201> 2(1E) 1.0x0.(1)<0402> 0(1H) Tolerance Part Number 2.0pF(2R0) 2.1pF(2R1) 2.2pF(2R2) 2.pF(2R) 2.4pF(2R4) 2.pF(2R) 2.6pF(2R6) 2.7pF(2R7) 2.8pF(2R8) 2.9pF(2R9).0pF(R0).1pF(R1).2pF(R2).pF(R).4pF(R4).pF(R) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) GJM0C1E2R0WB01D GJM0C1E2R0BB01D GJM0C1E2R0CB01D GJM0C1E2R1WB01D GJM0C1E2R1BB01D GJM0C1E2R1CB01D GJM0C1E2R2WB01D GJM0C1E2R2BB01D GJM0C1E2R2CB01D GJM0C1E2RWB01D GJM0C1E2RBB01D GJM0C1E2RCB01D GJM0C1E2R4WB01D GJM0C1E2R4BB01D GJM0C1E2R4CB01D GJM0C1E2RWB01D GJM0C1E2RBB01D GJM0C1E2RCB01D GJM0C1E2R6WB01D GJM0C1E2R6BB01D GJM0C1E2R6CB01D GJM0C1E2R7WB01D GJM0C1E2R7BB01D GJM0C1E2R7CB01D GJM0C1E2R8WB01D GJM0C1E2R8BB01D GJM0C1E2R8CB01D GJM0C1E2R9WB01D GJM0C1E2R9BB01D GJM0C1E2R9CB01D GJM0C1ER0WB01D GJM0C1ER0BB01D GJM0C1ER0CB01D GJM0C1ER1WB01D GJM0C1ER1BB01D GJM0C1ER1CB01D GJM0C1ER2WB01D GJM0C1ER2BB01D GJM0C1ER2CB01D GJM0C1ERWB01D GJM0C1ERBB01D GJM0C1ERCB01D GJM0C1ER4WB01D GJM0C1ER4BB01D GJM0C1ER4CB01D GJM0C1ERWB01D GJM0C1ERBB01D GJM0C1ERCB01D The part number code is shown in ( ) and Unit is shown in [ ]. (Part Number) GJ M 0 C 1E 2R0 W B01 D q w e r t y u i o!0 Packaging Code in Part Number shows STD 180mm Reel Taping. GJM1C1H2R0WB01D GJM1C1H2R0BB01D GJM1C1H2R0CB01D GJM1C1H2R1WB01D GJM1C1H2R1BB01D GJM1C1H2R1CB01D GJM1C1H2R2WB01D GJM1C1H2R2BB01D GJM1C1H2R2CB01D GJM1C1H2RWB01D GJM1C1H2RBB01D GJM1C1H2RCB01D GJM1C1H2R4WB01D GJM1C1H2R4BB01D GJM1C1H2R4CB01D GJM1C1H2RWB01D GJM1C1H2RBB01D GJM1C1H2RCB01D GJM1C1H2R6WB01D GJM1C1H2R6BB01D GJM1C1H2R6CB01D GJM1C1H2R7WB01D GJM1C1H2R7BB01D GJM1C1H2R7CB01D GJM1C1H2R8WB01D GJM1C1H2R8BB01D GJM1C1H2R8CB01D GJM1C1H2R9WB01D GJM1C1H2R9BB01D GJM1C1H2R9CB01D GJM1C1HR0WB01D GJM1C1HR0BB01D GJM1C1HR0CB01D GJM1C1HR1WB01D GJM1C1HR1BB01D GJM1C1HR1CB01D GJM1C1HR2WB01D GJM1C1HR2BB01D GJM1C1HR2CB01D GJM1C1HRWB01D GJM1C1HRBB01D GJM1C1HRCB01D GJM1C1HR4WB01D GJM1C1HR4BB01D GJM1C1HR4CB01D GJM1C1HRWB01D GJM1C1HRBB01D GJM1C1HRCB01D < >: [inch] Code qproduct ID wseries edimensions (LxW) rdimension (T) ttemperature Characteristics yrated Voltage u i Tolerance oindividual Specification Code!0Packaging 90

Temperature Compensating Type C0G(C) Characteristics LxW [mm] 0.6x0.(0)<0201> 1.0x0.(1)<0402> Rated Volt. [Vdc] 2(1E) 0(1H) Tolerance Part Number.6pF(R6) ±0.0pF(W) GJM0C1ER6WB01D GJM1C1HR6WB01D GJM0C1ER6BB01D GJM1C1HR6BB01D ±0.2pF(C) GJM0C1ER6CB01D GJM1C1HR6CB01D.7pF(R7).8pF(R8).9pF(R9) 4.0pF(4R0) 4.1pF(4R1) 4.2pF(4R2) 4.pF(4R) 4.4pF(4R4) 4.pF(4R) 4.6pF(4R6) 4.7pF(4R7) 4.8pF(4R8) 4.9pF(4R9).0pF(R0).1pF(R1) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) GJM0C1ER7WB01D GJM0C1ER7BB01D GJM0C1ER7CB01D GJM0C1ER8WB01D GJM0C1ER8BB01D GJM0C1ER8CB01D GJM0C1ER9WB01D GJM0C1ER9BB01D GJM0C1ER9CB01D GJM0C1E4R0WB01D GJM0C1E4R0BB01D GJM0C1E4R0CB01D GJM0C1E4R1WB01D GJM0C1E4R1BB01D GJM0C1E4R1CB01D GJM0C1E4R2WB01D GJM0C1E4R2BB01D GJM0C1E4R2CB01D GJM0C1E4RWB01D GJM0C1E4RBB01D GJM0C1E4RCB01D GJM0C1E4R4WB01D GJM0C1E4R4BB01D GJM0C1E4R4CB01D GJM0C1E4RWB01D GJM0C1E4RBB01D GJM0C1E4RCB01D GJM0C1E4R6WB01D GJM0C1E4R6BB01D GJM0C1E4R6CB01D GJM0C1E4R7WB01D GJM0C1E4R7BB01D GJM0C1E4R7CB01D GJM0C1E4R8WB01D GJM0C1E4R8BB01D GJM0C1E4R8CB01D GJM0C1E4R9WB01D GJM0C1E4R9BB01D GJM0C1E4R9CB01D GJM0C1ER0WB01D GJM0C1ER0BB01D GJM0C1ER0CB01D GJM0C1ER1WB01D GJM0C1ER1BB01D GJM0C1ER1CB01D GJM0C1ER1DB01D GJM1C1HR7WB01D GJM1C1HR7BB01D GJM1C1HR7CB01D GJM1C1HR8WB01D GJM1C1HR8BB01D GJM1C1HR8CB01D GJM1C1HR9WB01D GJM1C1HR9BB01D GJM1C1HR9CB01D GJM1C1H4R0WB01D GJM1C1H4R0BB01D GJM1C1H4R0CB01D GJM1C1H4R1WB01D GJM1C1H4R1BB01D GJM1C1H4R1CB01D GJM1C1H4R2WB01D GJM1C1H4R2BB01D GJM1C1H4R2CB01D GJM1C1H4RWB01D GJM1C1H4RBB01D GJM1C1H4RCB01D GJM1C1H4R4WB01D GJM1C1H4R4BB01D GJM1C1H4R4CB01D GJM1C1H4RWB01D GJM1C1H4RBB01D GJM1C1H4RCB01D GJM1C1H4R6WB01D GJM1C1H4R6BB01D GJM1C1H4R6CB01D GJM1C1H4R7WB01D GJM1C1H4R7BB01D GJM1C1H4R7CB01D GJM1C1H4R8WB01D GJM1C1H4R8BB01D GJM1C1H4R8CB01D GJM1C1H4R9WB01D GJM1C1H4R9BB01D GJM1C1H4R9CB01D GJM1C1HR0WB01D GJM1C1HR0BB01D GJM1C1HR0CB01D GJM1C1HR1WB01D GJM1C1HR1BB01D GJM1C1HR1CB01D GJM1C1HR1DB01D The part number code is shown in ( ) and Unit is shown in [ ]. < >: [inch] Code 91

Temperature Compensating Type C0G(C) Characteristics LxW [mm] Rated Volt. [Vdc] 0.6x0.(0)<0201> 2(1E) 1.0x0.(1)<0402> 0(1H) Tolerance Part Number.2pF(R2).pF(R).4pF(R4).pF(R).6pF(R6).7pF(R7).8pF(R8).9pF(R9) 6.0pF(6R0) 6.1pF(6R1) 6.2pF(6R2) 6.pF(6R) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) GJM0C1ER2WB01D GJM0C1ER2BB01D GJM0C1ER2CB01D GJM0C1ER2DB01D GJM0C1ERWB01D GJM0C1ERBB01D GJM0C1ERCB01D GJM0C1ERDB01D GJM0C1ER4WB01D GJM0C1ER4BB01D GJM0C1ER4CB01D GJM0C1ER4DB01D GJM0C1ERWB01D GJM0C1ERBB01D GJM0C1ERCB01D GJM0C1ERDB01D GJM0C1ER6WB01D GJM0C1ER6BB01D GJM0C1ER6CB01D GJM0C1ER6DB01D GJM0C1ER7WB01D GJM0C1ER7BB01D GJM0C1ER7CB01D GJM0C1ER7DB01D GJM0C1ER8WB01D GJM0C1ER8BB01D GJM0C1ER8CB01D GJM0C1ER8DB01D GJM0C1ER9WB01D GJM0C1ER9BB01D GJM0C1ER9CB01D GJM0C1ER9DB01D GJM0C1E6R0WB01D GJM0C1E6R0BB01D GJM0C1E6R0CB01D GJM0C1E6R0DB01D GJM0C1E6R1WB01D GJM0C1E6R1BB01D GJM0C1E6R1CB01D GJM0C1E6R1DB01D GJM0C1E6R2WB01D GJM0C1E6R2BB01D GJM0C1E6R2CB01D GJM0C1E6R2DB01D GJM0C1E6RWB01D GJM0C1E6RBB01D GJM0C1E6RCB01D GJM0C1E6RDB01D The part number code is shown in ( ) and Unit is shown in [ ]. (Part Number) GJ M 0 C 1E R2 W B01 D q w e r t y u i o!0 Packaging Code in Part Number shows STD 180mm Reel Taping. GJM1C1HR2WB01D GJM1C1HR2BB01D GJM1C1HR2CB01D GJM1C1HR2DB01D GJM1C1HRWB01D GJM1C1HRBB01D GJM1C1HRCB01D GJM1C1HRDB01D GJM1C1HR4WB01D GJM1C1HR4BB01D GJM1C1HR4CB01D GJM1C1HR4DB01D GJM1C1HRWB01D GJM1C1HRBB01D GJM1C1HRCB01D GJM1C1HRDB01D GJM1C1HR6WB01D GJM1C1HR6BB01D GJM1C1HR6CB01D GJM1C1HR6DB01D GJM1C1HR7WB01D GJM1C1HR7BB01D GJM1C1HR7CB01D GJM1C1HR7DB01D GJM1C1HR8WB01D GJM1C1HR8BB01D GJM1C1HR8CB01D GJM1C1HR8DB01D GJM1C1HR9WB01D GJM1C1HR9BB01D GJM1C1HR9CB01D GJM1C1HR9DB01D GJM1C1H6R0WB01D GJM1C1H6R0BB01D GJM1C1H6R0CB01D GJM1C1H6R0DB01D GJM1C1H6R1WB01D GJM1C1H6R1BB01D GJM1C1H6R1CB01D GJM1C1H6R1DB01D GJM1C1H6R2WB01D GJM1C1H6R2BB01D GJM1C1H6R2CB01D GJM1C1H6R2DB01D GJM1C1H6RWB01D GJM1C1H6RBB01D GJM1C1H6RCB01D GJM1C1H6RDB01D < >: [inch] Code qproduct ID wseries edimensions (LxW) rdimension (T) ttemperature Characteristics yrated Voltage u i Tolerance oindividual Specification Code!0Packaging 92

Temperature Compensating Type C0G(C)/C0H(6C) Characteristics LxW [mm] 0.6x0.(0)<0201> 1.0x0.(1)<0402> Rated Volt. [Vdc] 2(1E) 0(1H) Tolerance Part Number 6.4pF(6R4) ±0.0pF(W) GJM0C1E6R4WB01D GJM1C1H6R4WB01D GJM0C1E6R4BB01D GJM1C1H6R4BB01D ±0.2pF(C) GJM0C1E6R4CB01D GJM1C1H6R4CB01D ±0.pF(D) GJM0C1E6R4DB01D GJM1C1H6R4DB01D 6.pF(6R) 6.6pF(6R6) 6.7pF(6R7) 6.8pF(6R8) 6.9pF(6R9) 7.0pF(7R0) 7.1pF(7R1) 7.2pF(7R2) 7.pF(7R) 7.4pF(7R4) 7.pF(7R) 7.6pF(7R6) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) GJM0C1E6RWB01D GJM0C1E6RBB01D GJM0C1E6RCB01D GJM0C1E6RDB01D GJM0C1E6R6WB01D GJM0C1E6R6BB01D GJM0C1E6R6CB01D GJM0C1E6R6DB01D GJM0C1E6R7WB01D GJM0C1E6R7BB01D GJM0C1E6R7CB01D GJM0C1E6R7DB01D GJM0C1E6R8WB01D GJM0C1E6R8BB01D GJM0C1E6R8CB01D GJM0C1E6R8DB01D GJM06C1E6R9WB01D GJM06C1E6R9BB01D GJM06C1E6R9CB01D GJM06C1E6R9DB01D GJM06C1E7R0WB01D GJM06C1E7R0BB01D GJM06C1E7R0CB01D GJM06C1E7R0DB01D GJM06C1E7R1WB01D GJM06C1E7R1BB01D GJM06C1E7R1CB01D GJM06C1E7R1DB01D GJM06C1E7R2WB01D GJM06C1E7R2BB01D GJM06C1E7R2CB01D GJM06C1E7R2DB01D GJM06C1E7RWB01D GJM06C1E7RBB01D GJM06C1E7RCB01D GJM06C1E7RDB01D GJM06C1E7R4WB01D GJM06C1E7R4BB01D GJM06C1E7R4CB01D GJM06C1E7R4DB01D GJM06C1E7RWB01D GJM06C1E7RBB01D GJM06C1E7RCB01D GJM06C1E7RDB01D GJM06C1E7R6WB01D GJM06C1E7R6BB01D GJM06C1E7R6CB01D GJM06C1E7R6DB01D GJM1C1H6RWB01D GJM1C1H6RBB01D GJM1C1H6RCB01D GJM1C1H6RDB01D GJM1C1H6R6WB01D GJM1C1H6R6BB01D GJM1C1H6R6CB01D GJM1C1H6R6DB01D GJM1C1H6R7WB01D GJM1C1H6R7BB01D GJM1C1H6R7CB01D GJM1C1H6R7DB01D GJM1C1H6R8WB01D GJM1C1H6R8BB01D GJM1C1H6R8CB01D GJM1C1H6R8DB01D GJM1C1H6R9WB01D GJM1C1H6R9BB01D GJM1C1H6R9CB01D GJM1C1H6R9DB01D GJM1C1H7R0WB01D GJM1C1H7R0BB01D GJM1C1H7R0CB01D GJM1C1H7R0DB01D GJM1C1H7R1WB01D GJM1C1H7R1BB01D GJM1C1H7R1CB01D GJM1C1H7R1DB01D GJM1C1H7R2WB01D GJM1C1H7R2BB01D GJM1C1H7R2CB01D GJM1C1H7R2DB01D GJM1C1H7RWB01D GJM1C1H7RBB01D GJM1C1H7RCB01D GJM1C1H7RDB01D GJM1C1H7R4WB01D GJM1C1H7R4BB01D GJM1C1H7R4CB01D GJM1C1H7R4DB01D GJM1C1H7RWB01D GJM1C1H7RBB01D GJM1C1H7RCB01D GJM1C1H7RDB01D GJM1C1H7R6WB01D GJM1C1H7R6BB01D GJM1C1H7R6CB01D GJM1C1H7R6DB01D The part number code is shown in ( ) and Unit is shown in [ ]. < >: [inch] Code 9

Temperature Compensating Type C0G(C)/C0H(6C) Characteristics LxW [mm] Rated Volt. [Vdc] 0.6x0.(0)<0201> 2(1E) 1.0x0.(1)<0402> 0(1H) Tolerance Part Number 7.7pF(7R7) 7.8pF(7R8) 7.9pF(7R9) 8.0pF(8R0) 8.1pF(8R1) 8.2pF(8R2) 8.pF(8R) 8.4pF(8R4) 8.pF(8R) 8.6pF(8R6) 8.7pF(8R7) 8.8pF(8R8) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) GJM06C1E7R7WB01D GJM06C1E7R7BB01D GJM06C1E7R7CB01D GJM06C1E7R7DB01D GJM06C1E7R8WB01D GJM06C1E7R8BB01D GJM06C1E7R8CB01D GJM06C1E7R8DB01D GJM06C1E7R9WB01D GJM06C1E7R9BB01D GJM06C1E7R9CB01D GJM06C1E7R9DB01D GJM06C1E8R0WB01D GJM06C1E8R0BB01D GJM06C1E8R0CB01D GJM06C1E8R0DB01D GJM06C1E8R1WB01D GJM06C1E8R1BB01D GJM06C1E8R1CB01D GJM06C1E8R1DB01D GJM06C1E8R2WB01D GJM06C1E8R2BB01D GJM06C1E8R2CB01D GJM06C1E8R2DB01D GJM06C1E8RWB01D GJM06C1E8RBB01D GJM06C1E8RCB01D GJM06C1E8RDB01D GJM06C1E8R4WB01D GJM06C1E8R4BB01D GJM06C1E8R4CB01D GJM06C1E8R4DB01D GJM06C1E8RWB01D GJM06C1E8RBB01D GJM06C1E8RCB01D GJM06C1E8RDB01D GJM06C1E8R6WB01D GJM06C1E8R6BB01D GJM06C1E8R6CB01D GJM06C1E8R6DB01D GJM06C1E8R7WB01D GJM06C1E8R7BB01D GJM06C1E8R7CB01D GJM06C1E8R7DB01D GJM06C1E8R8WB01D GJM06C1E8R8BB01D GJM06C1E8R8CB01D GJM06C1E8R8DB01D The part number code is shown in ( ) and Unit is shown in [ ]. (Part Number) GJ M 0 6C 1E 7R7 W B01 D q w e r t y u i o!0 Packaging Code in Part Number shows STD 180mm Reel Taping. GJM1C1H7R7WB01D GJM1C1H7R7BB01D GJM1C1H7R7CB01D GJM1C1H7R7DB01D GJM1C1H7R8WB01D GJM1C1H7R8BB01D GJM1C1H7R8CB01D GJM1C1H7R8DB01D GJM1C1H7R9WB01D GJM1C1H7R9BB01D GJM1C1H7R9CB01D GJM1C1H7R9DB01D GJM1C1H8R0WB01D GJM1C1H8R0BB01D GJM1C1H8R0CB01D GJM1C1H8R0DB01D GJM1C1H8R1WB01D GJM1C1H8R1BB01D GJM1C1H8R1CB01D GJM1C1H8R1DB01D GJM1C1H8R2WB01D GJM1C1H8R2BB01D GJM1C1H8R2CB01D GJM1C1H8R2DB01D GJM1C1H8RWB01D GJM1C1H8RBB01D GJM1C1H8RCB01D GJM1C1H8RDB01D GJM1C1H8R4WB01D GJM1C1H8R4BB01D GJM1C1H8R4CB01D GJM1C1H8R4DB01D GJM1C1H8RWB01D GJM1C1H8RBB01D GJM1C1H8RCB01D GJM1C1H8RDB01D GJM1C1H8R6WB01D GJM1C1H8R6BB01D GJM1C1H8R6CB01D GJM1C1H8R6DB01D GJM1C1H8R7WB01D GJM1C1H8R7BB01D GJM1C1H8R7CB01D GJM1C1H8R7DB01D GJM1C1H8R8WB01D GJM1C1H8R8BB01D GJM1C1H8R8CB01D GJM1C1H8R8DB01D < >: [inch] Code qproduct ID wseries edimensions (LxW) rdimension (T) ttemperature Characteristics yrated Voltage u i Tolerance oindividual Specification Code!0Packaging 94

Temperature Compensating Type C0G(C)/C0H(6C) Characteristics LxW [mm] 0.6x0.(0)<0201> 1.0x0.(1)<0402> Rated Volt. [Vdc] 2(1E) 0(1H) Tolerance Part Number 8.9pF(8R9) ±0.0pF(W) GJM06C1E8R9WB01D GJM1C1H8R9WB01D GJM06C1E8R9BB01D GJM1C1H8R9BB01D ±0.2pF(C) GJM06C1E8R9CB01D GJM1C1H8R9CB01D ±0.pF(D) GJM06C1E8R9DB01D GJM1C1H8R9DB01D 9.0pF(9R0) 9.1pF(9R1) 9.2pF(9R2) 9.pF(9R) 9.4pF(9R4) 9.pF(9R) 9.6pF(9R6) 9.7pF(9R7) 9.8pF(9R8) 9.9pF(9R9) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) ±0.0pF(W) ±0.2pF(C) ±0.pF(D) GJM06C1E9R0WB01D GJM06C1E9R0BB01D GJM06C1E9R0CB01D GJM06C1E9R0DB01D GJM06C1E9R1WB01D GJM06C1E9R1BB01D GJM06C1E9R1CB01D GJM06C1E9R1DB01D GJM06C1E9R2WB01D GJM06C1E9R2BB01D GJM06C1E9R2CB01D GJM06C1E9R2DB01D GJM06C1E9RWB01D GJM06C1E9RBB01D GJM06C1E9RCB01D GJM06C1E9RDB01D GJM06C1E9R4WB01D GJM06C1E9R4BB01D GJM06C1E9R4CB01D GJM06C1E9R4DB01D GJM06C1E9RWB01D GJM06C1E9RBB01D GJM06C1E9RCB01D GJM06C1E9RDB01D GJM06C1E9R6WB01D GJM06C1E9R6BB01D GJM06C1E9R6CB01D GJM06C1E9R6DB01D GJM06C1E9R7WB01D GJM06C1E9R7BB01D GJM06C1E9R7CB01D GJM06C1E9R7DB01D GJM06C1E9R8WB01D GJM06C1E9R8BB01D GJM06C1E9R8CB01D GJM06C1E9R8DB01D GJM06C1E9R9WB01D GJM06C1E9R9BB01D GJM06C1E9R9CB01D GJM06C1E9R9DB01D GJM1C1H9R0WB01D GJM1C1H9R0BB01D GJM1C1H9R0CB01D GJM1C1H9R0DB01D GJM1C1H9R1WB01D GJM1C1H9R1BB01D GJM1C1H9R1CB01D GJM1C1H9R1DB01D GJM1C1H9R2WB01D GJM1C1H9R2BB01D GJM1C1H9R2CB01D GJM1C1H9R2DB01D GJM1C1H9RWB01D GJM1C1H9RBB01D GJM1C1H9RCB01D GJM1C1H9RDB01D GJM1C1H9R4WB01D GJM1C1H9R4BB01D GJM1C1H9R4CB01D GJM1C1H9R4DB01D GJM1C1H9RWB01D GJM1C1H9RBB01D GJM1C1H9RCB01D GJM1C1H9RDB01D GJM1C1H9R6WB01D GJM1C1H9R6BB01D GJM1C1H9R6CB01D GJM1C1H9R6DB01D GJM1C1H9R7WB01D GJM1C1H9R7BB01D GJM1C1H9R7CB01D GJM1C1H9R7DB01D GJM1C1H9R8WB01D GJM1C1H9R8BB01D GJM1C1H9R8CB01D GJM1C1H9R8DB01D GJM1C1H9R9WB01D GJM1C1H9R9BB01D GJM1C1H9R9CB01D GJM1C1H9R9DB01D The part number code is shown in ( ) and Unit is shown in [ ]. < >: [inch] Code 9

Temperature Compensating Type C0G(C)/C0H(6C) Characteristics LxW [mm] 0.6x0.(0)<0201> 1.0x0.(1)<0402> Rated Volt. [Vdc] 2(1E) 6.(0J) 0(1H) Tolerance Part Number 10pF(100) 11pF(110) 12pF(120) 1pF(10) 1pF(10) 16pF(160) 18pF(180) 20pF(200) ±%(J) ±%(J) ±%(J) ±%(J) ±%(J) ±%(J) ±%(J) ±%(J) GJM06C1E100GB01D GJM06C1E100JB01D GJM06C1E110GB01D GJM06C1E110JB01D GJM06C1E120GB01D GJM06C1E120JB01D GJM06C1E10GB01D GJM06C1E10JB01D GJM06C1E10GB01D GJM06C1E10JB01D GJM06C1E160GB01D GJM06C1E160JB01D GJM06C1E180GB01D GJM06C1E180JB01D GJM06C1E200GB01D GJM06C1E200JB01D GJM1C1H100GB01D GJM1C1H100JB01D GJM1C1H110GB01D GJM1C1H110JB01D GJM1C1H120GB01D GJM1C1H120JB01D GJM1C1H10GB01D GJM1C1H10JB01D GJM1C1H10GB01D GJM1C1H10JB01D GJM1C1H160GB01D GJM1C1H160JB01D GJM1C1H180GB01D GJM1C1H180JB01D GJM1C1H200GB01D GJM1C1H200JB01D 22pF(220) 24pF(240) 27pF(270) 0pF(00) pf(0) ±%(J) ±%(J) ±%(J) ±%(J) ±%(J) GJM0C0J220GB01D GJM0C0J220JB01D GJM0C0J240GB01D GJM0C0J240JB01D GJM0C0J270GB01D GJM0C0J270JB01D GJM0C0J00GB01D GJM0C0J00JB01D GJM0C0J0GB01D GJM0C0J0JB01D The part number code is shown in ( ) and Unit is shown in [ ]. < >: [inch] Code (Part Number) GJ M 0 6C 1E 100 G B01 D q w e r t y u i o!0 Packaging Code in Part Number shows STD 180mm Reel Taping. qproduct ID wseries edimensions (LxW) rdimension (T) ttemperature Characteristics yrated Voltage u i Tolerance oindividual Specification Code!0Packaging 96

b!note This!Note PDF catalog 1. Please This is Specifications downloaded read rating and from and!caution the Test website Methods (for of is Murata storage, downloaded Manufacturing operating, from the rating, co., website ltd. soldering, Therefore, of Murata mounting it s Manufacturing specifications and handling) co.,ltd. are in subject this Therefore, catalog to change it's to specifications prevent or our smoking products are and/or subject in it may burning, to be change discontinued etc. or our products without advance in it may notice. be discontinued Please check without with advance our notice. sales representatives 0. This Please catalog or check product has with only engineers our typical sales specifications representatives before ordering. because or product there engineers is no space before detailed ordering. specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. This PDF catalog 2. This has Specifications only typical and specifications Test Methods because has only there typical is no space specifications for detailed because specifications. there is no Therefore, space please detailed approve specifications. our product Therefore, specifications please approve or transact our the product approval specifications sheet for product or transact specifications the approval before sheet ordering. for product 0. specifications before ordering. Specifications and Test Methods (1) Specifications and Test Methods No. Item Specifications Temperature Compensating Type Test Method 1 Operating Temperature Range Y to W12D Reference Temperature: 2D (2C, C, 4C: 20D) 2 Rated Voltage Appearance See the previous pages. No defects or abnormalities The rated voltage is defined as the maximum voltage that may be applied continuously to the capacitor. When AC voltage is superimposed on DC voltage, V P-P or V O-P, whichever is larger, should be maintained within the rated voltage range. Visual inspection 4 Dimensions Within the specified dimensions Using calipers Dielectric Strength No defects or abnormalities No failure should be observed when 00% of the rated voltage is applied between the terminations for 1 to seconds, provided the charge/discharge current is less than 0mA. 6 7 8 Insulation Resistance (I.R.) Q 10,000MΩ min. or 00Ω F min. (whichever is smaller) Within the specified tolerance 0pF and over: QU1000 0pF and below: QU400W20C C: Nominal (pf) The insulation resistance should be measured with a DC voltage not exceeding the rated voltage at 2D and 7%RH max. and within 2 minutes of charging. The capacitance/q should be measured at 2D at the frequency and voltage shown in the table. Frequency Voltage 1T0.1MHz 0. to Vrms 9 Temperature Characteristics Temperature Coefficient Drift Within the specified tolerance (Table A) Within T0.2% or T0.0pF (whichever is larger.) The capacitance change should be measured after min. at each specified temperature stage. Temperature Compensating Type The temperature coefficient is determined using the capacitance measured in step as a reference. When cycling the temperature sequentially from step 1 through, (C: W2 to 12D: other temp. coeffs.: W20 to 12D) the capacitance should be within the specified tolerance for the temperature coefficient and capacitance change as in Table A. The capacitance drift is calculated by dividing the differences between the maximum and minimum measured values in steps 1, and by the capacitance value in step. Step Temperature (D) 1 Reference Temp. T2 2 YT Reference Temp. T2 4 12T Reference Temp. T2 Solder the capacitor to the test jig (glass epoxy board) shown in Fig. 1 using a eutectic solder. Then apply a N* force in parallel with the test jig for 10T1 sec. 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 (GJM0) c 10 Adhesive Strength of Termination No removal of the terminations or other defect should occur. Solder resist Baked electrode or copper foil Type a b c GJM0 GJM1 0. 0.4 Fig. 1 0.9 1. a 0. 0. (in mm) Continued on the following page. 97

!Note This!Note PDF catalog 1. Please This is Specifications downloaded read rating and from and!caution the Test website Methods (for of is Murata storage, downloaded Manufacturing operating, from the rating, co., website ltd. soldering, Therefore, of Murata mounting it s Manufacturing specifications and handling) co.,ltd. are in subject this Therefore, catalog to change it's to specifications prevent or our smoking products are and/or subject in it may burning, to be change discontinued etc. or our products without advance in it may notice. be discontinued Please check without with advance our notice. sales representatives 0. This Please catalog or check product has with only engineers our typical sales specifications representatives before ordering. because or product there engineers is no space before detailed ordering. specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. This PDF catalog 2. This has Specifications only typical and specifications Test Methods because has only there typical is no space specifications for detailed because specifications. there is no Therefore, space please detailed approve specifications. our product Therefore, specifications please approve or transact our the product approval specifications sheet for product or transact specifications the approval before sheet ordering. for product 0. specifications before ordering. Specifications and Test Methods (1) No. Continued from the preceding page. Item Specifications Temperature Compensating Type Test Method 11 Vibration Resistance Appearance Q No defects or abnormalities Within the specified tolerance 0pF and over: QU1000 0pF and below: QU400W20C C: Nominal (pf) 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.mm, the frequency being varied uniformly between the approximate limits of 10 and Hz. The frequency range, from 10 to Hz 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 mutually perpendicular directions (total of 6 hours). 12 1 Deflection Appearance Change Solderability of Termination No marking defects TU WXYZ [\] _` ª«±, TU X, VWZ[ «Q TU YZ^ª«VZ[ «QRSUVWZ ]^ «Z]^«STW Y]^ª Within T% or T0.pF (whichever is larger) U UY ªc a 100 t: 0.8mm Type a b c GJM0 GJM1 0. 0.4 0.9 1. 0. 0. Fig. 2 7% of the terminations are to be soldered evenly and continuously. b φ4. 40 (in mm) Solder the capacitor to the test jig (glass epoxy boards) shown in Fig. 2 using a eutectic solder. Then apply a force in the direction shown in Fig.. The soldering should be done by the reflow method and should be conducted with care so that the soldering is uniform and free of defects such as heat shock. R20 20 0 Pressurizing speed: 1.0mm/sec. Pressurize meter 4 4 Fig. Flexure : V1 (in mm) Immerse the capacitor in a solution of ethanol (-K-8101) and rosin (-K-902) (2% rosin in weight proportion). Preheat at 80 to 120D for 10 to 0 seconds. After preheating, immerse in eutectic solder solution for 2T0. seconds at 20TD or Sn-.0Ag-0.Cu solder solution for 2±0. seconds at 24± C. 14 1 Resistance to Soldering Heat Temperature Cycle Appearance Change Q I.R. Dielectric Strength Appearance Change Q I.R. Dielectric Strength The measured and observed characteristics should satisfy the specifications in the following table. No marking defects Within T2.% or T0.2pF (whichever is larger) 0pF and over: QU1000 0pF and below: QU400W20C C: Nominal (pf) More than 10,000MΩ or 00Ω F (whichever is smaller) No failure The measured and observed characteristics should satisfy the specifications in the following table. No marking defects Within T2.% or T0.2pF (whichever is larger) 0pF and over: QU1000 0pF and below: QU400W20C C: Nominal (pf) More than 10,000MΩ or 00Ω F (whichever is smaller) No failure Preheat the capacitor at 120 to 10D for 1 minute. Immerse the capacitor in a eutectic solder or Sn-.0Ag-0.Cu solder solution at 270TD for 10T0. seconds. Let sit at room temperature for 24T2 hours. 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 at room temperature, then measure. Step 1 2 4 Min. Operating Room Max. Operating Room Temp. (D) Temp.W0/Y Temp. Temp.W/Y0 Temp. Time (min.) 0T 2 to 0T 2 to The measured and observed characteristics should satisfy the specifications in the following table. 16 Humidity, Steady State Appearance Change Q No marking defects Within T% or T0.pF (whichever is larger) 0pF and below: QU0 10pF and over, 0pF and below: QU27W 2 C 10pF and below: QU200W10C C: Nominal (pf) Let the capacitor sit at 40T2D and 90 to 9% humidity for 00T12 hours. Remove and let sit for 24T2 hours (temperature compensating type) at room temperature, then measure. I.R. More than 10,000MΩ or 00Ω F (whichever is smaller) Continued on the following page. 98

!Note This!Note PDF catalog 1. Please This is Specifications downloaded read rating and from and!caution the Test website Methods (for of is Murata storage, downloaded Manufacturing operating, from the rating, co., website ltd. soldering, Therefore, of Murata mounting it s Manufacturing specifications and handling) co.,ltd. are in subject this Therefore, catalog to change it's to specifications prevent or our smoking products are and/or subject in it may burning, to be change discontinued etc. or our products without advance in it may notice. be discontinued Please check without with advance our notice. sales representatives 0. This Please catalog or check product has with only engineers our typical sales specifications representatives before ordering. because or product there engineers is no space before detailed ordering. specifications. Therefore, please approve our product specifications or transact the approval sheet for product specifications before ordering. This PDF catalog 2. This has Specifications only typical and specifications Test Methods because has only there typical is no space specifications for detailed because specifications. there is no Therefore, space please detailed approve specifications. our product Therefore, specifications please approve or transact our the product approval specifications sheet for product or transact specifications the approval before sheet ordering. for product 0. specifications before ordering. Specifications and Test Methods (1) Specifications and Test Methods No. Continued from the preceding page. Item Specifications Temperature Compensating Type Test Method The measured and observed characteristics should satisfy the specifications in the following table. 17 Humidity Load Appearance Change Q No marking defects Within T7.% or T0.7pF (whichever is larger) 0pF and over: QU200 10 0pF and below: QU100W C C: Nominal (pf) Apply the rated voltage at 40T2D and 90 to 9% humidity for 00T12 hours. Remove and let sit for 24T2 hours at room temperature, then measure. The charge/discharge current is less than 0mA. I.R. More than 00MΩ or 2Ω F (whichever is smaller) The measured and observed characteristics should satisfy the specifications in the following table. 18 High Temperature Load Appearance Change Q No marking defects Within T% or T0.pF (whichever is larger) 0pF and over: QU0 10pF and over, 0pF and below: QU27W 2 C 10pF and below: QU200W10C C: Nominal (pf) Apply 200% of the rated voltage for 1000T12 hours at the maximum operating temperature TD. Let sit for 24T2 hours (temperature compensating type) at room temperature, then measure. The charge/discharge current is less than 0mA. I.R. More than 1,000MΩ or 0Ω F (whichever is smaller) 19 ESR 0.1pFVCV1pF: 0mΩ pf below 1pFFCVpF: 00mΩ below pffcv10pf: 20mΩ below 10pFFCVpF: 400mΩ below The ESR should be measured at room temperature, and frequency 1T0.2GHz with the equivalent of BOONTON Model 4A. The ESR should be measured at room temperature, and frequency 00T0MHz with the equivalent of HP87B. Table A (1) Char. Code C 6C Temp. Coeff. (ppm/d) *1 0T0 0T60 Max. 0.8 0.87 YD Min. Y0.24 Y0.48 *1: Nominal values denote the temperature coefficient within a range of 2 to 12D. Change from 2D Value (%) Max. 0.40 0.60 Y0D Min. Y0.17 Y0. Max. 0.2 0.8 Y10D Min. Y0.11 Y0.21 (2) Char. 2C C 4C Nominal Values (ppm/d) *2 0T60 0T120 0T20 Max. 0.82 1.7 2.6 YD Min. Y0.4 Y0.90 Y1.88 *2: Nominal values denote the temperature coefficient within a range of 20 to 12D. Change from 20D Value (%) Max. 0.49 0.82 1.4 Y2D Min. Y0.27 Y0.4 Y1.1 Max. 0. 0. 1.02 Y10D Min. Y0.18 Y0.6 Y0.7 99