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簡介 Brief Introduction MLCC簡介: 片式多層陶瓷電容器(MLCC)是適合于表面貼裝技術(SMT)的小尺寸、高比容、高精度陶瓷介質電容器,可貼裝于印刷線路板(PCB)、混合集成電路(HIC)基片,有效地縮小電子信息終端產品(尤其是便攜式產品)的體積和重量,提高產品可靠性。順應了IT產業(yè)小型化、輕量化、高性能、多功能的發(fā)展方向。 General Introduction Multi-layer ceramic chip capacitor is a kind of ceramic dielectric capacitor with small size, high capacitance per volume, high accuracy, suited surface mounted technology (SMT). It is widely used in electronic circuitry, mounted printed circuit board, and hybrid IC. These different functions require specific capacitor properties. MLCC的分類:根據(jù)所采用陶瓷介質材料的類型,MLCC可劃分為兩大類:1類陶瓷介質MLCC具有極高的穩(wěn)定性,其電容量幾乎不隨時間、交流信號、外加直流偏壓的變化而改變,同時具有極低介質損耗,即高Q值。適用于對容量精度和應用頻率要求較高的諧振電路。根據(jù)電容量的溫度系數(shù)又可分為溫度穩(wěn)定型與溫度補償型兩種。、2類陶瓷介質MLCC具有很高的比體積電容量,適合用于旁路、耦合、濾波以及對容量穩(wěn)定性要求不高的鑒頻電路。在DC-DC(AC)變換器和開關電源濾波電路正逐步取代鉭電解電容器、鋁電解電容器。 MLCC can be divided into two classes:Class 1Dielectrics are used with very high Q and linear temperature coefficient in these capacitors. They can be distinguished into temperature compensating type and temperature stable type.They can be used in such applications as oscillators and filters where low losses, low capacitance drift or temperature compensation and high stability are required.Class 2These capacitors have a very high capacitance per volume and non-linear temperature characteristics. They are used for by-passing, coupling, filter and de-coupling. For instance, they can be substituted for the Ta, Al electrolytic capacitors in DC-DC(AC) converters and switching power suppliers. MLCC的制造工藝將化學組成和微觀晶相結構符合設計要求的陶瓷原粉和有機粘合劑進行充分混合成為陶瓷料漿,通過流延或噴涂等方式制得所需厚度的生坯膜片。在膜片上印刷內電極后進行疊壓、切割成為單個電容器生坯后于10001400之間進行多層共燒,在所得瓷坯兩端進行端電極金屬化處理后即制成MLCC成品。最后經電性能測試和檢驗合格,即可包裝入庫,并交付使用。Manufacture process of MLCC Ceramic powders, which formulation and crystal phase fitted the demand of designing, are carefully mixed with solvent and binder, and then finely milled as slurry. The very thin green sheets can be obtained by casting or spraying the slurry. After this, electrode is printed on the sheets which then be stacked, pressed and cut into chips. The green chip is co-fired at temperatures between 1000 and 1400 to become a monolithic block.The final product can be formed by metalizing the termination of the compact ceramic chip. MLCC的結構MLCC的電容量與內電極交疊面積A、介質層數(shù)n和陶瓷介質材料的相對介電常數(shù)r呈正比,與單層介質厚度T呈反比關系。C = r0An / T額定工作電壓主要依賴于介質材料抗電強度、介質厚度以及電容器的結構設計。如圖1所示。Structure of MLCC The capacitance of a MLCC depends on the area of the electrodes (A), the thickness of the ceramic dielectric (T) and the dielectric constant of the ceramic material (r) , and the number of dielectric layers (n) with multi-layer ceramic capacitors:C = r0An / TThe rated voltage depends on the structure of the device, the thickness and strength of the dielectric Figure 1 shows the structure of a multi-layer capacitor. 結構與外形尺寸Structure & Dimension鎳 Ni銀/銅 Ag/Cu錫 SnCeramic DielectricElectrode陶瓷介質內電極 L2L1WHL圖1 片式多層陶瓷電容器外形與內部結構Figure 1 Dimension and Cross-section of MLCC尺寸代碼GB/IEC/EIA(JIS/EIAJ)長度L/mm寬度W/mm厚度(最小值/最大值)H(Min/Max)/mm端頭寬度(最小值/最大值)L1(Min/Max)/mm0201(0603)0.60.030.30.030.27/0.330.10/0.200402(1005)1.00.050.50.050.45/0.550.15/0.350603(1608)1.60.100.80.100.70/0.900.20/0.600805(2012)2.00.20 1.250.200.75/1.350.25/0.75+0.30 1.25 -0.101.15/1.551206(3216)3.20.201.60.200.50/1.800.25/0.75產品型號規(guī)格及代碼定義Part Number System C 0402 C0G 101 J 500 N T B產品代碼Product CodeC表示片式多層陶瓷電容器MLCC尺寸規(guī)格Size Type Code(GB/IEC/EIA代碼)0201;0402;0603;0805;1206;1210溫度系數(shù)或溫度特性T. C. C0G/C0H/NPO: 030ppm/ /060ppm/ -55 +125X7R: 15% -55 +125X5R: 15% -55 +85Y5V: +22/-82% -30 +85標稱電容量代碼Capacitance Code表示標稱電容量(單位:pF),前兩位數(shù)碼為有效數(shù)字,后一位數(shù)碼為10的冪數(shù);當標稱電容量小于10pF時,以字母R表示小數(shù)點;如:104=100000pF;4R7=4.7pF;0R5=0.5pF;The capacitance code is expressed in pico-farads and identified by a three-digit number. The first two digits represent significant figures. The last digit specifies the number of zeros.(Example:104=100000pF; 4R7=4.7pF;0R5=0.5pF;)標稱電容量的允許偏差代碼Tolerance Code B:0.1pF F:1% K:10% C:0.25pF G:2% M:20% D:0.5pF J:5% Z:+80/-20%額定電壓代碼Rate Voltage Code表示額定電壓(單位:),前兩位數(shù)碼為有效數(shù)字,后一位數(shù)碼為10的冪數(shù);6R3=6.3V;100=10V;160=16V;250=25V;500=50V;101=100V端電極類型TerminationN表示Ag(或Cu)/Ni/Sn三層結構(Nickel Barrier);S表示全銀端頭(Silver);包裝代碼Packaging CodeT:紙帶包裝(7英寸膠盤) T: Paper tape reel 180mm (7inch)H:紙帶規(guī)格(7英寸膠盤) H: Paper tape reel 180mm (7 inch)P:膠帶規(guī)格(7英寸膠盤) P: Plastic tape reel 180mm (7 inch)A:紙帶包裝(13英寸膠盤) A: Paper tape reel 330mm (13 inch)E:膠帶規(guī)格(13英寸膠盤) E: Plastic tape reel 330mm (13 inch)B:散包裝 B: Brick, Loosed in bag C:塑料盒散包裝 C: Bulk cassette厚度代碼Thickness Code表示產品厚度,見產品電容量范圍與厚度規(guī)格表。對于0201、0402、0603等規(guī)格只有一種厚度時,該項可以空缺。產品范圍、尺寸、厚度 Product Range、Size & Thickness類別CLASS2類陶瓷介質MLCC / Class2TCY5V尺寸規(guī)格SIZE0402060308051206額定電壓VOLTAGE6.31016256.3101625506.3101625506.3101625470pF680pF1.0nF1.5nF2.2nF3.3nF4.7nF6.8nF10nFBBDDC15nFBBDDC22nFBBDDC33nFBDDC47nFBDDCCCC68nFBDDCCCC100nFBBBDDDDDCCCCC150nFBBDDDDDCEECC220nFBBDDDDDCCCEECC330nFBBDDDDCCEGGCC470nFBBDDDDCCEGGEE680nFBDDDCEEGGEE820nFBDDDCEGGGEE1.0FBDDDEEGGMFEF1.5FDDEGGGFFEF2.2FDDEGGMFFFF3.3FDEGGFFFL4.7FDGGMFFLL6.8FGGFFL8.2FGGFLL10FMMFLL15FMLL22FMLL33FL47FL68F標稱電容量符合E6系列 Rated capacitance meet E6 service .厚度代碼ThicknessCode厚度Thicknessmm厚度代碼ThicknessCode厚度ThicknessmmA0.300.03G1.250.20B0.50.05H1.500.15C0.60.10M1.25+0.3/-0.1D0.80.10K0.9-1.30E0.850.20L1.600.20F1.150.20包裝 Package 產品厚度和包裝數(shù)量 Thickness and Packing amount厚度Thickness每卷數(shù)量 Amount per reel180mm(7”)180mm(7”)330mm(13”)代號Code類別Class紙帶膠帶紙帶膠帶紙帶膠帶A0.300.0315KB0.500.0510K50KC0.600.104K15KD0.800.104K10K15KE0.850.104K4K/3K15KF1.050.104K/3KG1.250.103K/2KH1.500.152KK0.901.302KL1.600.202K 帶式圓盤包裝 Tape and reel package帶式圓盤包裝在高速的生產中被認可.典型的直徑為180mm(7英寸)的圓盤可以包裝1500-15000粒電容, 直徑為330mm(13英寸)的圓盤可以包裝10000-50000粒電容.帶式圓盤包裝包括紙帶包裝、膠帶包裝兩種方式。Tape and reel packaging is currently the most promising system forhigh-speed production, A typical 180mm(7inch)diameter reel contains 2,000 to 15,000 capacitors,330mm(13inch)diameter reel contains 10,000 to 50,000 capacitors, Tape and reel packaging comprises paper tapes and plastic tapes. 紙帶標準 Paper tape specifications 單位:mm4.00.11.50.1代號MAXClass產品尺寸代號 Product Size Code單位Unit02010402060308051206尺寸Size尺寸Size尺寸Size尺寸Size尺寸SizeA0.370.030.700.051.00.21.60.22.00.2mmB0.670.031.200.051.80.22.40.23.60.2mmFF3.500.053.500.053.50.053.50.053.5.005mmP2.000.102.000.104.00.12.00.14.00.14.00.1mmW8.000.208.000.208.00.28.00.28.00.2mm1.750.051.10(Max)A2.00.05FWPB上蓋帶 Top tape 圓盤標準:Reel Specification 單位:mm2.0T具體尺寸參見下表For dimensions please see next table130.5210.8D50Tape Width(mm)G(mm)T(max)(mm)D(mm)810.014.4180810.014.4330Full RadiusG 紙帶規(guī)格: Taping Figure:膠帶規(guī)格: Plastic Figure: Trailer Worker Unseal Leader Feeding DirectionPacking包裝Minimum length of Empty compartments預留空格的最短長度TapeTrailerUnsealLeaderPaperorPlastic160 mm160mm160 mm 紙帶性能 Performance of Taping 紙帶和上蓋帶的剝離強度.Strength of Carrier Tape and Top Cover Tape 紙帶 Carrier Tape紙帶在伸直狀態(tài)下應該能經受1.02kg的壓力。When a tensile force 1.02kgf is applied in the direction of unreeling the tape, the tape shall withstand this force. 上蓋帶 Top cover Tape上蓋帶應該能經受1.02kg的壓力。When a tensile force 1.02kgf is applied to the tape, the tape shall withsand this force. 上蓋帶剝離強度 Peel Force of Top Cover Tape除非有特殊規(guī)定,上蓋帶以300mm/min的速度,165180的角度(如下圖)剝離紙帶時,剝離強度應該在1060g之間。Unless otherwise specified, the peel force of top cover tape shall be 10. to 60 gf when the top cover tape is pulled at a speed of 300mm/min with the angle between the taped during peel and the direction of unreeling maintained at 165 to 180as illustrated in Fig. 上蓋帶165 to 180Top cover tapeDirection of unreelingRectangularly punched carrier tape拉力方向Direction of pull 紙帶方孔拉開方向Bottom cover tape下蓋帶產品技術指標和試驗方法序號項目技術指標試驗方法2類瓷1類別溫度范圍Y5V:-30 +852額定電壓UR參照前頁在下限類別溫度和額定溫度之間的任一溫度下,可以連續(xù)施加在電容器上的最大直流電壓或脈沖電壓的峰值。注:電容器所施加的直流電壓和交流峰值電壓之和應不超過額定電壓,交流電壓峰值不應超過允許無功功率所額定的值。3外觀無損傷和異常10倍顯微鏡下目測4外形尺寸標準尺寸精度范圍采用精度不低于0.01 mm的千分尺5耐電壓2.5UR,1min,無擊穿或飛弧在產品兩端施加2.5倍額定電壓、1分鐘6絕緣電阻RiC 0.025F , Ri 4000M;C 0.025F , Ri C 100MF額定電壓;測試溫度:1535;相對濕度:25%80%;1分鐘 5秒 7電容量500小時后在標稱電容量允許偏差范圍內電容量/損耗角正切值測試條件:相對溫度:1535;相對濕度:25%80%測試頻率:Y5V:C100pF,f=1MHz10%;C100pF,f=1KHz10%;測試電壓:1.00.2V(有效值)8損耗角正切值Y5V: UR =50V tg50010-4UR =25V tg70010-4UR =16V tg100010-4UR10V tg125010-49電容量溫度系數(shù)或溫度特性Y5V:-82% +22%150、1小時專門預處理后放置24小時(Y5V),分別在1、25、2下測量電容量Y5V:1=-30,2=85,符合相應的電容量變化特性10端電極的結合強度無可見損傷40b1004.5bct:0.8mm 圖a將樣品安裝在試驗基板上(如a圖所示),然后如圖b施加垂直方向力。45452050容量測試儀速度:1.0mm/秒壓力彎曲度1圖:bR23011可焊性上錫良好,端頭潤濕率大于90%將測試電容浸入含松香的乙醇溶液3-5秒,在150-180預熱2-3分鐘,浸入2355的熔融錫液2.00.5秒12耐焊接熱外觀無明顯缺陷150、1小時專門預處理(Y5V)后放置24小時;將測試電容在120-150預熱1分鐘,浸入2605的錫槽中101秒,然后在室溫放置484小時(Y5V)后進行外觀檢查與電性能測試。電容量變化Y5V:20%13溫度快速變化外觀無可見損傷150、1小時專門預處理(Y5V)后放置24小時;將電容器固定在夾具上,按GB/T9324第4.12條進行試驗。Y5V:1=-30,2=85t1=30分鐘,5次循環(huán),恢復242小時。電容量變化Y5V: 20%14附著力外觀無可見損傷按GB/T9324第4.8條F=5N ,t=101秒15氣候順序外觀無可見損傷根據(jù)IEC 384 -10第4.13條進行試驗。150、1小時專門預處理(Y5V)后放置24小時;干熱(IEC68-2-2試驗Ba):將試驗箱的溫度升至規(guī)定的上限類別溫度后,立即將試驗樣品放入箱內試驗: 85(Y5V),t=16小時;循環(huán)濕熱(IEC68-2-30試驗Db):第一個循環(huán),24小時為一個循環(huán),恢復之后立即承受寒冷試驗;寒冷(IEC68-2-1試驗Aa):將試驗箱的溫度調至規(guī)定的下限類別溫度后,立即將試驗樣品放入箱內試驗: -30(Y5V),t=2小時;循環(huán)濕熱(IEC68-2-30試驗Db):其余的9個循環(huán),24小時為一個循環(huán)。然后在室溫放置484小時(Y5V)后進行外觀檢查與電性能測試。電容量變化Y5V: 20%損耗角正切值Y5V:tg100010-4 (UR25V)tg160010-4 (UR16V)絕緣電阻Y5V:Ri1000M或RiC5MF 取較小者16穩(wěn)態(tài)濕熱外觀無可見損傷150、1小時專門預處理(Y5V)后放置24小時;按GB/T9324第4.14條溫度:402相對濕度:RH90%95%持續(xù)時間:21天,恢復242小時電容量變化Y5V:30%損耗角正切值Y5V:tg100010-4 (UR25V)tg160010-4 (UR16V)絕緣電阻Y5V:Ri1000M或RiC5MF 取較小者17振 動外觀無可見損傷樣品安裝在試驗基板上,按照IEC60068-2-6試驗Fc,振幅1.5mm,頻率范圍1055Hz,簡諧振動均勻變化,掃頻周期1分鐘,三個方向各持續(xù)2小時,總計6小時。 電容量變化Y5V: 20%損耗角正切值符合第8項之初始值。18耐久性外觀無可見損傷150、1小時專門預處理(Y5V)后放置24小時;按GB/T9324第4.15條溫度: 85(Y5V)持續(xù)時間:1000小時試驗電壓:1.5UR,恢復242小時。電容量變化Y5V: 30%損耗角正切值Y5V:tg100010-4 (UR25V)tg160010-4 (UR16V)絕緣電阻Y5V:Ri2000M或RiC5 MF取較小者Specifications and Test MethodsNoItem SpecificationTest MethodClass21Category temperature rangeY5V: -30 +852Rated Voltage (UR)See the previousThe rated voltage is defined as the maximum voltage which may be applied continuously to the capacitor at the rated temperature. (The sum of the DC voltage and the AC voltage applied to the capacitor should not exceed the rated voltage. The peak of the AC voltage should not exceed the value defined as the reactive power.3Visual ExaminationNo defects or abnormalitiesVisual Inspection4Dimensions Within the specified dimension.Using calipers 5Voltage Proof2.5UR, 1min, No breakdown or flashoverNo failure shall be observed when 250% of the rated voltage is applied between the terminations for 1 minute6Insulation Resistances (Ri)C 0.025F , Ri 4000MC 0.025F , RiC 100 MFThe insulation resistance shall be measured with DC rated voltage at 1535and RH 25% 80%, and within 1min 5sof charging. 7CapacitanceWithin the specified tolerance at 500 hoursTest Condition:1535; RH25% 80%Frequency:Y5V:C100pF, f=1MHz10%;C100pF, f=1KHz10%Voltage: 1.00.2Vrms8Tangent of Loss AngleY5V: UR =50V tg50010-4UR =25V tg70010-4UR =16V tg100010-4UR10V tg125010-49Capacitance Temperature Coefficient or Temperature CharacteristicsY5V: -82%+22% Special preconditioning 1hr at 150 followed by 24hrs (Y5V).The ranges of capacitance change compared with the temperature ranges (1, 25, 2) shall be within the specified ranges.Y5V:1=-30,2=85,10Bond strength of the termination No visible damageSolder the capacitor to the test jig(glass epoxy boards)shown in Fig .a using a eutectic solder. Then apply a force in the direction shown in Fig .b. The soldering shall be done with the reflow method and 40b1004.5bcshall be conducted with care so that the soldering is uniform and free of defects such as heat shock.t:0.8mm Fig: apressurizingspeed:1.0mm/secpressurizeFlexure1Capacitance meter metterFig. b5020R230454511Solderability 90% of the terminations is to be soldered evenly and continuously.Immerse the test capacitor into a methanol solution containing rosin for 3 to 5 seconds, preheat it 150 to 180 for 2 to 3 minutes and immerse it into molten solder of 2355 for 2 0.5s.12Resistance to Soldering HeatVisual No visible damageSpecial preconditioning 1hr at 150 followed by 24hrs (Y5V).Preheat the capacitor at 150for 1 minute. Immerse the capacitor in an eutectic solder solution at 2605 for 101seconds. Recovery it, let sit at room temperature for 484hrs(Y5V)Cap.ChangeY5V: 20%13Rapid change of temperatureVisualNo visible damageSpecial preconditioning 1hr at 150 followed by 24hrs (Y5V).Fix the capacitor to supporting jig. According to sub-clause 4.12 of GB/T9324. Y5V: 1=-30, 2=85t1=30min, 5 cycles, recovery 242hrs.Cap. ChangeY5V: 20%14AdhesionNo visible damageAccording to sub-clause 4.8 of GB/T9324F=5N, t=101s15Climatic SequenceVisualNo visible damage Special pre-conditioning 1hr at 150 followed by 24hrs (Y5V).Dry Heat (IEC68-2-2 test Ba): When reaching the maximum operating temperature, the sample should be put into the test chamber immediately:85( Y5V), t=16hrs;Damp Heat, The First Cycle (IEC68-2-30 test Db): t=24hrs, then endure the cold test at once;Cold (IEC68-2-1 test Aa): When reaching the minimum operating temperature, the sample should be put into the test chamber i
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