GNM314F51C683ZD01D

GNM314F51C683ZD01D

  • 厂商:

    MURATA-PS(村田)

  • 封装:

    1206

  • 描述:

    排容 1206 4 68nF -20~+80% 3.20 x 1.60mm 16V

  • 数据手册
  • 价格&库存
GNM314F51C683ZD01D 数据手册
C02E10.pdf 04.1.20 catalog to prevent smoking and/or burning, Pleaseread readrating ratingand and!CAUTION !CAUTION(for (forstorage, storage,operating, 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. Chip Monolithic Ceramic Capacitors Capacitor Arrays GNM1M2/212 P GNM214/314 P ■ Features ■ Applications L Part Number GNM314 8 L W General electronic equipment GNM1M2 GNM212 GNM214 T T 1. High density mounting due to mounting space saving 2. Mounting cost saving L 1.37 ±0.15 2.0 ±0.15 3.2 ±0.15 Dimensions (mm) W T 1.0 ±0.15 0.6 ±0.1 0.85 ±0.1 1.25 ±0.15 0.6 ±0.1 0.8 ±0.1 1.6 ±0.15 1.0 ±0.1 W P 0.64 ±0.05 1.0 ±0.1 0.5 ±0.05 0.8 ±0.1 Temperature Compensating Type Part Number GNM31 LxW 3.2x1.6 C0G (5C) TC Rated Volt. 100 (2A) 50 (1H) Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code) 10pF(100) 0.8(4) 0.8(4) 11pF(110) 0.8(4) 0.8(4) 12pF(120) 0.8(4) 0.8(4) 13pF(130) 0.8(4) 0.8(4) 15pF(150) 0.8(4) 0.8(4) 16pF(160) 0.8(4) 0.8(4) 18pF(180) 0.8(4) 0.8(4) 20pF(200) 0.8(4) 0.8(4) 22pF(220) 0.8(4) 0.8(4) 24pF(240) 0.8(4) 0.8(4) 27pF(270) 0.8(4) 0.8(4) 30pF(300) 0.8(4) 0.8(4) 33pF(330) 0.8(4) 0.8(4) 36pF(360) 0.8(4) 0.8(4) 39pF(390) 0.8(4) 0.8(4) 43pF(430) 0.8(4) 0.8(4) 47pF(470) 0.8(4) 0.8(4) 51pF(510) 0.8(4) 0.8(4) 56pF(560) 0.8(4) 0.8(4) 62pF(620) 0.8(4) 0.8(4) 68pF(680) 0.8(4) 0.8(4) 75pF(750) 0.8(4) 0.8(4) 82pF(820) 0.8(4) 0.8(4) 91pF(910) 0.8(4) 0.8(4) 100pF(101) 0.8(4) 0.8(4) 110pF(111) 0.8(4) 0.8(4) 120pF(121) 0.8(4) 0.8(4) 130pF(131) 0.8(4) 0.8(4) 150pF(151) 0.8(4) 0.8(4) 160pF(161) 0.8(4) 180pF(181) 0.8(4) Continued on the following page. 42 C02E10.pdf 04.1.20 catalog to prevent smoking and/or burning, Pleaseread readrating ratingand and!CAUTION !CAUTION(for (forstorage, storage,operating, 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. Part Number GNM31 LxW 3.2x1.6 C0G (5C) TC 100 (2A) Rated Volt. 50 (1H) Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code) 200pF(201) 0.8(4) 220pF(221) 0.8(4) 240pF(241) 0.8(4) 270pF(271) 0.8(4) 300pF(301) 0.8(4) 330pF(331) 0.8(4) 360pF(361) 0.8(4) The part numbering code is shown in each ( ). The (4) code in T(mm) means number of elements (four). Dimensions are shown in mm and Rated Voltage in Vdc. High Dielectric Constant Type GNM1 Series 8 GNM1M Part Number 1.37x1.00 LxW X7R (R7) TC 16 (1C) Rated Volt. 10 (1A) Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code) 22000pF(223) 0.6(2) 47000pF(473) 0.6(2) 0.10µF(104) 0.6(2) The part numbering code is shown in each ( ). The (2) code in T(mm) means number of elements (two). Dimensions are shown in mm and Rated Voltage in Vdc. High Dielectric Constant Type GNM2 Series GNM21 Part Number 2.0x1.25 LxW TC X7R (R7) Rated Volt. 50 (1H) Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code) 1000pF(102) 0.6(4) 10000pF(103) 0.6(4) The part numbering code is shown in each ( ). The (4) code in T(mm) means number of elements (four). Dimensions are shown in mm and Rated Voltage in Vdc. High Dielectric Constant Type GNM3 Series Part Number GNM31 LxW 3.2x1.6 X7R (R7) TC Rated Volt. 100 (2A) 50 (1H) Y5V (F5) 25 (1E) 16 (1C) 100 (2A) 50 (1H) 16 (1C) Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code) 220pF(221) 0.8(4) Continued on the following page. 43 C02E10.pdf 04.1.20 catalog to prevent smoking and/or burning, Pleaseread readrating ratingand and!CAUTION !CAUTION(for (forstorage, storage,operating, 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. GNM31 Part Number 3.2x1.6 LxW X7R (R7) TC Rated Volt. 100 (2A) 50 (1H) Y5V (F5) 25 (1E) 16 (1C) 100 (2A) 50 (1H) 16 (1C) Capacitance (Capacitance part numbering code) and T (mm) Dimension (T Dimension part numbering code) 8 270pF(271) 0.8(4) 330pF(331) 0.8(4) 390pF(391) 0.8(4) 0.8(4) 470pF(471) 0.8(4) 0.8(4) 560pF(561) 0.8(4) 0.8(4) 680pF(681) 0.8(4) 0.8(4) 820pF(821) 0.8(4) 0.8(4) 1000pF(102) 0.8(4) 0.8(4) 1200pF(122) 0.8(4) 0.8(4) 1500pF(152) 0.8(4) 0.8(4) 1800pF(182) 0.8(4) 0.8(4) 2200pF(222) 0.8(4) 0.8(4) 2700pF(272) 0.8(4) 0.8(4) 3300pF(332) 0.8(4) 0.8(4) 3900pF(392) 0.8(4) 0.8(4) 4700pF(472) 0.8(4) 0.8(4) 5600pF(562) 0.8(4) 6800pF(682) 0.8(4) 8200pF(822) 0.8(4) 10000pF(103) 0.8(4) 12000pF(123) 0.8(4) 15000pF(153) 0.8(4) 18000pF(183) 0.8(4) 0.8(4) 0.8(4) 0.8(4) 22000pF(223) 0.8(4) 27000pF(273) 0.8(4) 33000pF(333) 0.8(4) 39000pF(393) 0.8(4) 47000pF(473) 1.0(4) 68000pF(683) 1.0(4) 0.8(4) 0.10µF(104) 1.0(4) 0.8(4) 0.15µF(154) The part numbering code is shown in each ( ). The (4) code in T(mm) means number of elements (four). Dimensions are shown in mm and Rated Voltage in Vdc. 44 0.8(4) 0.8(4) 0.8(4) 0.8(4) C02E10.pdf 04.1.20 catalog to prevent smoking and/or burning, Pleaseread readrating ratingand and!CAUTION !CAUTION(for (forstorage, storage,operating, 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. Specifications and Test Methods Specifications No. 1 Item Operating Temperature Range Test Method Temperature Compensating Type High Dielectric Type R7 : Y55D to +125D F5 : Y30D to +85D 5C : Y55D to +125D 2 Rated Voltage See the previous pages. 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. 3 Appearance No defects or abnormalities Visual inspection 4 Dimension Within the specified dimensions Using calipers 5 Dielectric Strength No defects or abnormalities No failure should be observed when 300% of the rated voltage (5C) or 250% of the rated voltage (R7, F5) is applied between the terminations for 1 to 5 seconds, provided the charge/discharge current is less than 50mA. 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 9 Q/Dissipation Factor (D.F.) 30pF min. : QU1000 30pF max. : QU400+20C C : Nominal Capacitance (pF) Capacitance Change Within the specified tolerance (Table A) Temperature Coefficient Within the specified tolerance (Table A) The capacitance/Q/D.F. should be measured at 25D at the frequency and voltage shown in the table. 16V 10V Char. 25V min. R7 0.025 max. 0.035 max. 0.035 max. Y F5 0.05 max. 0.07 max. Temp. Reference Cap. Range Temp. Change WithinT15% R7 Y55 to W125D 25D W22 WithinT F5 Y30 to W85D Y82 % Char. Capacitance Temperature Characteristics Capacitance Drift Within T0.2% or T0.05 pF (Whichever is larger) Char. Item Frequency Voltage 5C 1T0.1MHz R7, F5 1T0.1kHz 0.5 to 5Vr.m.s. 1.0T0.2Vr.m.s. 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 step1 through 5, 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 5C/ R7), Y30T3 (for F5) 3 25T2 4 125T3 (for 5C/R7), 85T3 (F5) 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. No removal of the terminations or other defect should occur. b Adhesive Strength of Termination d 10 c a Solder the capacitor to the test jig (glass epoxy board) shown in Fig. 1 using a eutectic solder. Then apply 5N 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. Solder resist Copper foil Type GNM1M GNM21 GNM31 a 0.5 0.4 0.8 b Y 1.6 2.5 c 0.32 0.25 0.4 d 0.32 0.5 0.8 (in mm) Fig. 1 Continued on the following page. 45 8 C02E10.pdf 04.1.20 catalog to prevent smoking and/or burning, Pleaseread readrating ratingand and!CAUTION !CAUTION(for (forstorage, storage,operating, 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. Specifications and Test Methods Continued from the preceding page. Specifications No. 11 Item Test Method Temperature Compensating Type High Dielectric Type Appearance No defects or abnormalities Capacitance Within the specified tolerance 30pF min. : QU1000 30pF max. : QU400W20C Vibration Resistance Q/D.F. C : Nominal Capacitance (pF) 16V 10V Char. 25V min. R7 0.025 max. 0.035 max. 0.035 max. Y F5 0.05 max. 0.07 max. No cracking or marking defects should occur. 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 for 5T1 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. 40 #GNMpp2 40 #GNMpp4 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). 8 T¥ T¥ 20 12 5.0 a b Deflection 100 5.0 a b c 1.0 c d Type GNM1M GNM21 GNM31 100 50 Pressurizing speed : 1.0mm/sec. Pressurize R230 1.0 Flexure : V1 d a 2.0T0.05 2.0T0.05 2.5T0.05 b 0.5T0.05 0.7T0.05 0.8T0.05 c 0.32T0.05 0.3T0.05 0.4T0.05 d 0.32T0.05 0.2T0.05 0.4T0.05 Capacitance meter 45 45 (in mm) Fig. 3 (in mm) t=0.8mm (GNM21), 1.6mm (GNM31) Fig. 2 13 Solderability of Termination 75% of the terminations are to be soldered evenly and continuously. 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. Resistance 14 to Soldering Heat Appearance No marking defects Capacitance Change Within T2.5% or T0.25pF (Whichever is larger) 30pF min. : QU1000 30pF max. : QU400+20C Q/D.F. C : Nominal Capacitance (pF) R7 : Within T7.5% F5 : Within T20% 16V 10V Char. 25V min. R7 0.025 max. 0.035 max. 0.035 max. Y F5 0.05 max. 0.07 max. I.R. More than 10,000MΩ or 500Ω • F (Whichever is smaller) Dielectric Strength No failure 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) 30pF min. : QU1000 30pF max. : QU400+20C Temperature Cycle Q/D.F. C : Nominal Capacitance (pF) R7 : Within T7.5% F5 : Within T20% 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 Perform a heat treatment at 150 W0 Y10 D for one hour and then let sit for 48T4 hours at room temperature. Perform the initial measurement. 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 hours (high dielectric constant type) at room temperature, then measure Step 16V 10V Char. 25V min. R7 0.025 max. 0.035 max. 0.035 max. Y F5 0.05 max. 0.07 max. I.R. More than 10,000MΩ or 500Ω • F (Whichever is smaller) Dielectric Strength No failure 1 2 3 4 Min. Operating Room Max. Operating Room Temp. (D) Temp. W0 Temp. W3 Y3 Y0 Temp. Temp. Time (min.) 30T3 2 to 3 30T3 2 to 3 # Initial measurement for high dielectric constant type Perform a heat treatment at 150 W0 Y10 D for one hour and then let sit for 48T4 hours at room temperature. Perform the initial measurement. Continued on the following page. 46 C02E10.pdf 04.1.20 catalog to prevent smoking and/or burning, Pleaseread readrating ratingand and!CAUTION !CAUTION(for (forstorage, storage,operating, 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. 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) R7 : Within T12.5% F5 : Within T30% Q/D.F. 30pF and over : QU350 10pF and over, 30pF and below : QU275+5C/2 10pF and below : QU200+10C C : Nominal Capacitance (pF) 16V 10V Char. 25V min. R7 0.025 max. 0.035 max. 0.035 max. Y F5 0.05 max. 0.07 max. I.R. More than 1,000MΩ or 50Ω • F (Whichever is smaller) Dielectric Strength No failure 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. 8 The measured and observed characteristics should satisfy the specifications in the following table. 17 Appearance No marking defects Capacitance Change Within T7.5% or T0.75pF (Whichever is larger) Humidity Load Q/D.F. 30pF and over : QU200 30pF and below : QU100+10C/3 C : Nominal Capacitance (pF) R7 : Within T12.5% F5 : Within T30% 10V 16V Char. 25V min. R7 0.025 max. 0.035 max. 0.035 max. Y F5 0.05 max. 0.07 max. 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. The measured and observed characteristics should satisfy the specifications in the following table. 18 High Temperature Load Appearance No marking defects Capacitance Change Within T3% or T0.3pF (Whichever is larger) R7 : Within T12.5% F5 : Within T30% 30pF and over : QU350 10pF and over, 30pF and below : QU275+5C/2 10pF and below : QU200+10C 16V 10V Char. 25V min. R7 0.025 max. 0.035 max. 0.035 max. Y F5 0.05 max. 0.07 max. Q/D.F. C : Nominal Capacitance (pF) 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. Table A Capacitance Change from 25D (%) Char. Nominal Values (ppm/D) Note 1 Y55 Max. Min. 0T30 Y0.24 0.58 5C Note 1 : Nominal values denote the temperature coefficient within a range of 25D to 125D. Y30 Max. 0.40 Y10 Min. Y0.17 Max. 0.25 Min. Y0.11 47
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