Product Information

GJM0225C1C120GB01L

GJM0225C1C120GB01L electronic component of Murata

Datasheet
Multilayer Ceramic Capacitors MLCC - SMDSMT

Manufacturer: Murata
This product is classified as Large/Heavy, additional shipping charges may apply. A customer service representative may contact you after ordering to confirm exact shipping charges



Price (USD)

40000: USD 0.0282 ea
Line Total: USD 1128

0 - Global Stock
MOQ: 40000  Multiples: 40000
Pack Size: 40000
Availability Price Quantity
0 - WHS 1


Ships to you between Thu. 16 May to Mon. 20 May

MOQ : 40000
Multiples : 40000
40000 : USD 0.0207
80000 : USD 0.0195

     
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Only Reflow Soldering Chip Monolithic Ceramic Capacitor High-Q Type for General GJM0225C1C120GB01 (01005, C0G:EIA, 12pF, DC16V) : packaging code Reference Sheet 1.Scope This product specification is applied to Chip Monolithic Ceramic Capacitor High-Q Type used for General Electronic equipment. This product is applied for Only Reflow Soldering. 2.MURATA Part NO. System (Ex.) GJM 02 2 5C 1C 120 G B01 L (1)L/W (2)T (3)Temperature (4)Rated (5)Nominal (6)Capacitance (7)Muratas Control (8)Packaging Code Dimensions Dimensions Characteristics Voltage Capacitance Tolerance Code 3. Type & Dimensions (Unit:mm) (1)-1 L (1)-2 W (2) T e g 0.40.02 0.20.02 0.20.02 0.07 to 0.14 0.13 min. 4.Rated value (3) Temperature Characteristics Specifications and Test (4) (6) (Public STD Code):C0G(EIA) (5) Nominal Methods Rated Capacitance Temp. coeff Temp. Range Capacitance (Operating Voltage Tolerance Temp. Range) orCap. Change (Ref.Temp.) 25 to 125 C 030 ppm/C DC 16 V 12 pF 2 % -55 to 125 C (25 C) 5.Package mark (8) Packaging Packaging Unit f180mm Reel L 40000 pcs./Reel EMBOSSED W4P1 Product specifications in this catalog are as of Mar.10,2017,and are subject to change or obsolescence without notice. Please consult the approval sheet before ordering. Please read rating and Cautions first. GJM0225C1C120GB01-01 1 Specifications and Test Methods Test Method No Item Specification (Ref. Standard:JIS C 5101, IEC60384 1 Rated Voltage Shown in Rated value. 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, P-P O-P V or V , whichever is larger, should be maintained within the rated voltage range. 2 Appearance No defects or abnormalities. Visual inspection. 3 Dimension Within the specified dimensions. Using Measuring instrument of dimension. 4 Voltage proof No defects or abnormalities. Measurement Point : Between the terminations Test Voltage : 300% of the rated voltage Applied Time : 1s to 5 s Charge/discharge current : 50mA max. 5 Insulation Resistance(I.R.) C0.047F:More than 10000M Measurement Point : Between the terminations C0.047F:More than 500F Measurement Voltage : DC Rated Voltage C:Nominal Capacitance Charging Time : 2 min Charge/discharge current : 50mA max. Measurement Temperature : Room Temperature 6 Capacitance Shown in Rated value. Measurement Temperature : Room Temperature Capacitance Frequency Voltage 7 Q 30pF and over:Q 1000 C1000pF 1.0+/-0.1MHz 0.5 to 5.0Vrms 30pF and below:Q 400+20C C:Nominal Capacitance(pF) 8 Temperature Characteristics Nominal values of the temperature coefficient is shown in Rated value. The capacitance change should be measured after 5 minutes of Capacitance But,the Capacitance Change under 20 is shown in Table A. at each specified temp. stage. Capacitance value as a reference is the value in step 3. Capacitance Drift Within +/-0.2% or +/-0.05pF The capacitance drift is calculated by dividing the differences (Whichever is larger.) between the maximum and minimum measured values in the step 1,3 and 5 by the cap. value in step 3. Step Temperature( C) 1 Reference Temp.+/-2 2 Min. Operating Temp.+/-3 3 Reference Temp.+/-2 Step Temperature(C) 4 Max. Operating Temp.+/-3 1 Reference Temp.+/-2 5 Reference Temp.+/-2 2 Min. Operating Temp.+/-3 3 Reference Temp.+/-2 4 Max. Operating Temp.+/-3 5 Reference Temp.+/-2 9 Adhesive Strength No removal of the terminations or other defect Solder the capacitor on the test substrate shown in Fig.3. of Termination should occur. Type Applied Force(N) GJM02 1 GJM03 2 GJM15 5 Holding Time : 10+/-1s Applied Direction : In parallel with the test substrate and vertical with the capacitor side. 10 Vibration Appearance No defects or abnormalities. Solder the capacitor on the test substrate shown in Fig.3. Capacitance Within the specified initial value. Kind of Vibration : A simple harmonic motion 10Hz to 55Hz to 10Hz (1min) Q Within the specified initial value. Total amplitude : 1.5mm This motion should be applied for a period of 2h in each 3 mutually perpendicular directions(total of 6h). 11 Substrate Appearance No defects or abnormalities. Solder the capacitor on the test substrate shown in Fig.1. Bending test Capacitance Within +/-5% or +/-0.5pF Pressurization method : Shown in Fig.2 Change (Whichever is larger) Flexure : 1mm Holding Time : 5+/-1s Soldering Method : Reflow soldering 12 Solderability Test Method : Solder bath method 95% of the terminations is to be soldered evenly and continuously. Flux Solution of rosin ethanol 25(mass)% Preheat : 80 to 120 for 10s to 30s Solder : Sn-3.0Ag-0.5Cu Solder Temp. : 245+/-5 Immersion time : 2+/-0.5s JEMCGS-0004M 2

Tariff Desc

8532.24.00 43 no --Ceramic dielectric, multilayer Free

ELECTRICAL CAPACITORS, FIXED, VARIABLE OR ADJUSTABLE (PRE-SET)
IPDiA
MU2
MUP
MUR
MURATA
Murata - TOKO
Murata / IPDiA
Murata Electronics
Murata Electronics N
Murata Electronics North America
MURATA MANUFACTURING
Murata Manufacturing Co.
Murata Power Solutio
Murata Power Solutions
Murata Power Solutions Inc
Murata Power Solutions Inc.
Toko
TOKO AMERICA
Toko America Inc.
TOKO, Inc.
TOKYO PARTS INDUSTRIAL
Tokyo Parts Industrial Group

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