CR2633C0G104J250B SAMWHA | Alldatasheet
Document overview
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Technical content
Features
This widely used ceramic capacitors includes both monolithic and multilayer types to provide a wide capacitance range of 1pF through 1ʈ in respectly one standard size and shape(Radial & Axial).
Applications
The class1 temperature compensating(C0G) products can be used in circuits to stabilize frequency and temperature characteristics. The X7R, Z5U, Y5V dielectrics are optimum for by pass capacitors. Radial & Axial 051B 5.5 5.5 3.2 6.4 5 0.5 Orange Ex) 104 077B 7.7 7.6 9.2 or Gold Shape and Dimensions Bulk Type 3BEJBM5ZQF Flat Type 3BEJBM5ZQF "YJBM5ZQF
XXXTBNXIBDPN Multi Layer Ceramic Capacitors Multi Layer Ceramic Capacitors SAMWHA CAPACITOR Co., Ltd. Radial & Axial CA 2633 Y5V 104 Z 500 F 䡔 䡕 䡖 䡗 䡘 䡙 䡚 How to Order(Product Identification) 䡔 5ZQF CR : Radial Lead Type CA : Axial Lead Type 䡗 $BQBDJUBODF$PEF 1JDP'BSBET First two digits are significant ; third digit denotes number of zeros. Ex.) 101 = 100ʆ 1R5 = 1.5ʆ 103 = 10,000ʆ 䡕 %JNFOTJPO$PEF The number shows the maximum length of "L" by 1/10 in millimeter, and the alphabet means lead difference.(Refer to above diagram) 䡖 5FNQFSBUVSF$PFGGJDJFOU$PEF Temperature Characteristice Temperature Range Capacitance Change or Temperature Coefficient C0G 55 to 125 030ppm/ X7R 55 to 125 15% Z5U 10 to 85 22, 56% Y5V 30 to 85 22, 82% Code Dimensions Tolerance Code Dimensions Tolerance Code Dimensions Tolerance H1 9 H2 0 2W 1 1 8 0.5 J =H 1.2 L 11 Max. W2 0 0.6 Max. K 0.8 Max. L1 1.5 Max. S 5 0.7 N 5 0.4 P 12.7 0.3 䤋 R 3.2 Min.No adhesive may be exposed 䡙 3BUFE7PMUBHF$PEF Code 250 500 101 Volt DC 25V DC 50V DC 100V 䡚 1BDLJOH$PEF Code B R F Packing Bulk Reel Pack Flat Pack 1. Operating Temperature C0G : 55 to 125 X7R : 55 to 125 Z5U : 10 to 85 Range Y5V : 30 to 85 2. Insulation Resistance More than 10,000 .ʃor 500ʃ'(whichever is smaller) Applied the rated voltage for 2 minute 3. Dielectric Strength No detects or abnormalities - C0G : The rated voltage 300% - X7R, Z5U, Y5V : l 250% 4. Capacitance Within the specified tolerance Temperature Compensating Type 5. Dissipation Factor 6. Terminal Strength No evidence of damage to body of device of looseness of terminals. No. Item Characteristic Temperature Compensating Type High Dielectric Constant Type Test Methods and Conditions Reliability and Test Conditions Char. 50V Min. 25V 16V 10V Z%V 4.0% 5% 9% Y5V (220ʇ)( 220ʇ) 30ʆ Min. : Q1,000(DF0.1%) 30ʆ Max. : Q400+20C (DF1/(400+20C)) Cap. Testing Testing Frequency Voltage C0G 10.1.ɾ 0.5 to (C1000pF) 5V rms C0G 10.1Lɾ 10.2V rms (C 1000pF) X7R, Z5U, Y5V (C10ʈ 10.1Lɾ 10.2V rms 10V Min.) A static load of 10N(1kgf) : applied to one terminal in the axial direction and acting in a direction away from the body for 1 to 5 secs. 䡘 $BQBDJUBODF5PMFSBODF$PEF Code Tolerance Remark J 5.0 % C0G K 10 % X7R, C0G M 20 % Z5U, X7R Z 80, 20% Z5U, Y5V
XXXTBNXIBDPN Multi Layer Ceramic Capacitors Multi Layer Ceramic Capacitors SAMWHA CAPACITOR Co., Ltd. Radial & Axial 7. Appearance No marked defect Capacitance Within 2.5% or 0.25pF X7R : 7.5% Change (whichever is larger) Z5U, Y5V : 20% Dissipation Factor(or Q) I.R. More than 10,000 .ʃor 500ʃ'(whichever & smaller) 8. Temperature Appearance No marking defects Cycle Capacitance Within2.5% or 0.25pF X7R : Within + 7.5% Change Z5U, Y5V : Within 20% Dissipation Factor(or Q) I.R. More than 10,000 .ʃor 500ʃ'(Whichever is smaller) 9. Humidity Appearance No marking defects Load Capacitance Within 7.5% or0.75ʆ X7R : Within 12.5% Change (whichever is larger) Z5U : Within 30% Y5V : Within 30%, 40% (Y5V/1.0ǺF, 2.2ǺF, 4.7ǺF/10V) Within 30% (others) Dissipation Factor(or Q) I.R. More than 500 .ʃor 25ʃ'(whichever is smaller) 10. Appearance No marked defect Capacitance Within 3% or0.3ʆ X7R : Within 12.5% , Z5U : Within 30% change (whichever is larger) Y5V : Within 30%(Cap. < 1.0ǺF) Within +30% , 40%(Cap. 1.0ǺF) No. Item Characteristic Temperature Compensating Type High Dielectric Constant Type Test Methods and Conditions Char. 50V Min. 25V 16V 10V Z5U 4.0% 5% 9% Y5V (<220ʇ) 7% (<220ʇ) 12.5%7% 12.5% (220ʇ)( 220ʇ) Char. 50V Min. 25V 16V 10V Z5U 4.0% 5% 9% Y5V (<220ʇ) 7% (<220ʇ) 12.5%7% 12.5% (220ʇ)( 220ʇ) Char. 50V Min. 25V 16V 10V Z5U 4.0% 10% Y5V 7.5% (<1ʈ) 12.5% 15%12.5% (1 ʈ) 30ʆ Min. : Q1,000 (DF0.1%) 30ʆ Max. : Q400 20C (DF1/(400 20C)) 30ʆ Min. : Q1,000 (DF0.1%) 30ʆ Max. : Q400 20C (DF1/(400 20C)) 30ʆ Min. : Q200 (DF0.5%) 30ʆ Max. : Q100 10/3C (DF1/(100 10/3C)) - Soldering Temp : 2605 - Immersion Time : 50.5sec - Take it out and set it for 242 hours(temperature compensating type)or 484hours(high dielectric constant type) then measure. Take it out and set it for 242 hours [tempeature compensating or 484 hours(high dielectric Type) at room temperature, than measure. - Temperature : 402 - Humidity : 90~95%RH - Hour : 50012hrs - Test Voltage : Tge rated voltage - Take it out and set it for 242 hours (temperature compensatig)or 484 hours(high dielectric constant type) at room temperature, then measure. The charge/discharge current is less than 50mA. Step 1 2 3 4 Min. Max. Temp. Operating Room Operating Room () Temp. Temp. 5emp. Temp. 0, 3 3, 0 Time 303 2 to 3 30 3 2 to 3(min) Resistance to Soldering Heat High Temperature Load - Testing Time : 100012hrs - Applied Voltage : Rated Voltage200% - Temperature : C0G, X7R ª1253 Z5U, Y5V ª853
10 Dissipation
Factor(or Q) I.R. More than 1000 .ʃor 50ʃ'(Whichever is smaller)
11 Capacitance Capacitance
12 The regulation of
13 The regulation about
No. Item Characteristic Temperature Compensating Type High Dielectric Constant Type Test Methods and Conditions 30ʆ Min. : Q350 (DF0.3%) 10ʆ$Q30ʆ Q275 5/2C (DF1/(275 5/2C)) 10ʆ Max. : Q200 10C (DF1/(200 10C)) Take it out and set it for 242 hours (temperature compensatig) or 484 hours(high dielectric constant type) at room temperature, then measure. The charge/discharge current is less than 50mA. (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. (SL: +25 to 85) the capacitance shall be with in the specified tolerance for the temperature coefficient. The capacitance drift is calculated dividing the difference between the maximum measured values in the step 1, 3 and 5 by Cap, value in step 3. Char. Temp. Reference Cap. Range Temp. Change X7R 55 to Within 125 15% Z5U 10 to Within 85 22% 56% Y5V 30 to Within 85 22% 82% Step Temperature 12 5 2 2- 5 5 3 32 5 2 4 125 3(for C0G) 52 5 2 (2) High Dielectric Constant Type : The ranges of capacitance change compared with the 25 value over the temperature range shown in the table shall be in the specified range. Temperature Coefficient Char. Temp. Temperature Range Coefficient C0G 55 to 30ppm/ 125 Never use materials mentioned below in leaded MLCC products regulated this document. Pb, Cd, Hg, Cr+6, PBB(polybromida biphenyl), PBDE(polybrominated diphenyl ethers), asbestos. Never use the ODS(ozone depleting substance) materials below in leaded MLCC products regulated this document. High Temperature Load Char. 50V Min. 25V 16V 10V Z5U 4.0% 10% (1ʈ) 25 Packing Quantity Radial Type Axial Type Inner Box Outer Box Remark Inner Box Outer Box Remark 2,500 15,000 Packing set on the basis of flat tapping 5,000 50,000 Packing set on the basis of flat tapping Unit : pcs
XXXTBNXIBDPN Multi Layer Ceramic Capacitors SAMWHA CAPACITOR Co., Ltd. Type Radial Axial Char. C0G X7R Z5U Y5V C0G X7R Z5U Y5V Cap(pF) Volt 50 100 50 100 50 16 50 50 50 50 50 100 120 150 180 220 270 330 390 470 560 680 820 1.000 1.200 1.500 1.800 2.200 2.700 3.300 3.900 4.700 5.600 6.800 8.200 10.000 15.000 22.000 33.000 47.000 68.000 100.000 150.000 220.000 330.000 470.000 680.000 1.000.000 Capacitance Range Chip Beads & Inductors $IJQ'FSSJUF#FBET $IJQ'FSSJUF#FBET"SSBZT $IJQ'FSSJUF*OEVDUPST $IJQ1PXFS*OEVDUPST