Murata Electronics GRM033R61E104KE14D

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  • Part Number:

    GRM033R61E104KE14D

  • Manufacturer:

    Murata Electronics

  • Category:

    Aluminum - Polymer Capacitors

  • RoHs:

    rohs RoHS Compliant

  • Datasheet:

    pdf GRM033R61E104KE14D_Datesheet

  • Description:

    CAP CER 0.1UF 25V X5R 0201

  • In stock 1,648,505

    Min: 1Mult: 1

  • Unit Price: $Subtotal: $

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Specifications
Type
Paramete
Type
Paramete
Operating Temperature
-55°C ~ 85°C
Temperature Coefficient
X5R
Voltage - Rated
25V
Failure Rate
-
Ratings
-
Applications
General Purpose
Capacitance
0.1 µF
Lead Style
-
Height - Seated (Max)
-
Mounting Type
Surface Mount
Thickness (Max)
0.013" (0.33mm)
Lead Spacing
-
Package / Case
0201 (0603 Metric)
Size / Dimension
0.024" L x 0.012" W (0.60mm x 0.30mm)
Features
-
Tolerance
±10%
Overview

Technical Specifications for GRM033R61E104KE14D

General Information

  • Part Number: GRM033R61E104KE14D
  • Description: Chip Monolithic Ceramic Capacitor
  • Manufacturer: Murata Manufacturing Co., Ltd.

Part Number Breakdown

  • GRM: Series identifier
  • 03: Length (0.6 mm)
  • 3: Width (0.3 mm)
  • R6: Temperature characteristic (X5R)
  • 1E: Rated voltage (25V DC)
  • 104: Nominal capacitance code (0.1 µF)
  • K: Capacitance tolerance (±10%)
  • E14: Packaging code
  • D: Reel packaging type (Φ180mm reel)

Dimensions

  • Length (L): 0.6 mm ± 0.03 mm
  • Width (W): 0.3 mm ± 0.03 mm
  • Height (T): 0.3 mm ± 0.03 mm
  • E: 0.1 mm to 0.2 mm
  • 9: 0.2 mm minimum

Rated Values

  • Temperature Characteristic: X5R (EIA standard)Temperature Coefficient: -15% to +15%Temperature Range: -55°C to +85°C (reference temperature 25°C)
  • Rated Voltage: 25V DC
  • Nominal Capacitance: 0.1 µF
  • Capacitance Tolerance: ±10%
  • Operating Temperature Range: -55°C to +85°C

Packaging

  • Mark: D
  • Packaging Type: Φ180mm reel
  • Packaging Unit: 15,000 pieces per reel

Specifications and Test Methods

Rated Voltage

  • Test Method: Measurement between terminations
  • Test Voltage: 250% of rated voltage
  • Applied Time: 1 to 5 seconds
  • Charge/Discharge Current: 50 mA max.

Insulation Resistance (I.R.)

  • Specification: More than 50 Ω·F
  • Measurement Point: Between the terminations
  • Measurement Voltage: DC rated voltage
  • Charging Time: 1 minute
  • Charge/Discharge Current: 50 mA max.
  • Measurement Temperature: Room temperature

Capacitance

  • Measurement Temperature: Room temperature

Dissipation Factor (D.F.)

  • Specification: 0.1 max. (for specified conditions)
  • Measurement Conditions:Frequency: 1.0 ± 0.1 kHzVoltage: 0.5 ± 0.1 Vrms

Temperature Characteristics of Capacitance

  • No Bias: Nominal values of the temperature coefficient are shown in rated values
  • Capacitance Change: Within specified limits
  • Capacitance Drift: 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

Adhesive Strength of Termination

  • Test Method: Solder the capacitor on the test substrate
  • Applied Force:GRM02: 1 NGRM03: 2 NGRM15/GRM18: 5 NGRM21/GRM31/GRM32: 10 N
  • Holding Time: 10 ± 1s
  • Applied Direction: In parallel with the test substrate and vertical with the capacitor side

Vibration

  • Appearance: No defects or abnormalities
  • Capacitance: Within specified initial value
  • D.F.: Within specified initial value
  • Kind of Vibration: Simple harmonic motion
  • Frequency: 10 Hz to 55 Hz to 10 Hz (1 minute)
  • Total Amplitude: 1.5 mm
  • Duration: 2 hours in each of 3 mutually perpendicular directions (total of 6 hours)

Substrate Bending Test

  • Appearance: No defects or abnormalities
  • Capacitance Change: Within ±10%
  • Pressurization Method: As shown in Fig.2
  • Flexure: 1 mm
  • Holding Time: 5 ± 1s
  • Soldering Method: Reflow soldering

Solderability

  • Appearance: 95% of the terminations should be soldered evenly and continuously
  • Test Method: Solder bath method
  • Flux: Solution of rojin ethanol 25% (wt)
  • Preheat: 80°C to 120°C for 10s to 30s
  • Solder: Sn-3.0Ag-0.5Cu
  • Solder Temp.: 245 ± 5°C
  • Immersion Time: 2 ± 0.5s

Resistance to Soldering Heat

  • Appearance: No defects or abnormalities
  • Capacitance Change: Within ±15%
  • Test Method: Solder bath method
  • Solder: Sn-3.0Ag-0.5Cu
  • Solder Temp.: 270 ± 5°C
  • Immersion Time: 10 ± 0.5s
  • Exposure Time: 24 ± 2h
  • Preheat: 120°C to 150°C for 1 minute

Temperature Sudden Change

  • Appearance: No defects or abnormalities
  • Capacitance Change: Within ±7.5%
  • D.F.: Within specified initial value
  • Test Method: Perform five cycles according to the four heat treatments shown in the table
  • Step:1: Min. Operating Temp. +0/-3°C, 30 ± 3 minutes2: Room Temp., 2 to 3 minutes3: Max. Operating Temp. +3/-0°C, 30 ± 3 minutes4: Room Temp., 2 to 3 minutes
  • Exposure Time: 24 ± 2h
  • Initial measurement: Perform a heat treatment at 150+0/-10°C for 1h and then let sit for 24+/-2h at room temperature, then measure.

High Temperature High Humidity (Steady)

  • Appearance: No defects or abnormalities
  • Capacitance Change: Within ±12.5%
  • D.F.: 0.2 max.
  • I.R.: More than 12.5 Ω·F
  • Test Method: Solder the capacitor on the test substrate
  • Test Temperature: 40 ± 2°C
  • Test Humidity: 90% RH to 95% RH
  • Test Time: 500 ± 12h
  • Applied Voltage: DC rated voltage
  • Charge/Discharge Current: 50 mA max
  • Exposure Time: 24 ± 2h
  • Initial measurement: Perform a heat treatment at 150+0/-10°C for 1h and then let sit for 24+/-2h at room temperature, then measure.

Durability

  • Capacitance Change: Within ±12.5%
  • D.F.: 0.2 max.
  • I.R.: More than 25 Ω·F
  • Test Method: Solder the capacitor on the test substrate
  • Test Temperature: Max. Operating Temp. ±3°C
  • Test Time: 1000 ± 12h
  • Applied Voltage: 150% of the rated voltage
  • Charge/Discharge Current: 50 mA max
  • Exposure Time: 24 ± 2h
  • Initial measurement: Perform a heat treatment at 150+0/-10°C for 1h and then let sit for 24+/-2h at room temperature, then measure.
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