GJM0335C1E200GB01D >
GJM0335C1E200GB01D
Murata Electronics
CAP CER 20PF 25V C0G/NP0 0201
20461 Pcs New Original In Stock
20 pF ±2% 25V Ceramic Capacitor C0G, NP0 0201 (0603 Metric)
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GJM0335C1E200GB01D Murata Electronics
5.0 / 5.0 - (409 Ratings)

GJM0335C1E200GB01D

Product Overview

3511036

DiGi Electronics Part Number

GJM0335C1E200GB01D-DG
GJM0335C1E200GB01D

Description

CAP CER 20PF 25V C0G/NP0 0201

Inventory

20461 Pcs New Original In Stock
20 pF ±2% 25V Ceramic Capacitor C0G, NP0 0201 (0603 Metric)
Quantity
Minimum 1

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In Stock (All prices are in USD)
  • QTY Target Price Total Price
  • 50 0.0120 0.6000
  • 500 0.0094 4.7000
  • 1500 0.0080 12.0000
  • 15000 0.0071 106.5000
  • 30000 0.0064 192.0000
  • 45000 0.0060 270.0000
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GJM0335C1E200GB01D Technical Specifications

Category Ceramic Capacitors

Manufacturer Murata Electronics

Packaging Tape & Reel (TR)

Series GJM

Product Status Active

Capacitance 20 pF

Tolerance ±2%

Voltage - Rated 25V

Temperature Coefficient C0G, NP0

Operating Temperature -55°C ~ 125°C

Features High Q, Low Loss

Ratings -

Applications RF, Microwave, High Frequency

Failure Rate -

Mounting Type Surface Mount, MLCC

Package / Case 0201 (0603 Metric)

Size / Dimension 0.024" L x 0.012" W (0.60mm x 0.30mm)

Height - Seated (Max) -

Thickness (Max) 0.013" (0.33mm)

Lead Spacing -

Lead Style -

Base Product Number GJM0335C1E

Datasheet & Documents

Part Numbering Guide

GCH188R71C474KE01-01.pdf

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8532.24.0020

Additional Information

Other Names
490-GJM0335C1E200GB01DDKR
490-GJM0335C1E200GB01DTR
490-GJM0335C1E200GB01DCT
Standard Package
15,000

Alternative Parts

PART NUMBER
MANUFACTURER
QUANTITY AVAILABLE
DiGi PART NUMBER
UNIT PRICE
SUBSTITUTE TYPE
CL03C200GA3GNNC
Samsung Electro-Mechanics
949
CL03C200GA3GNNC-DG
0.0060
Parametric Equivalent
C0603C0G1E200G
TDK Corporation
1164
C0603C0G1E200G-DG
0.0060
Parametric Equivalent
02013A200GAT2A
KYOCERA AVX
736
02013A200GAT2A-DG
0.0060
Parametric Equivalent
C0603C0G1E200G030BG
TDK Corporation
1054
C0603C0G1E200G030BG-DG
0.0060
Parametric Equivalent

Reviews

5.0/5.0-(Show up to 5 Ratings)
햇***짝임
Dec 02, 2025
5.0
포장 강도와 배송 정시성 모두 최고 수준입니다.
Camaïe***Fleurs
Dec 02, 2025
5.0
Expédition rapide et emballage robuste. Je suis très satisfait de ma première commande.
Lebe***icht
Dec 02, 2025
5.0
Die schnelle Versandzeit und die zuverlässige Qualität der Produkte bei DiGi Electronics sind hervorragend.
Gentl***isper
Dec 02, 2025
5.0
DiGi Electronics' efficient shipping and long-lasting products have consistently supported my professional needs.
Sere***yNow
Dec 02, 2025
5.0
Every time I contact their customer service, I feel valued and well taken care of.
Qui***torm
Dec 02, 2025
5.0
Shipping is always stable, and tracking updates are timely and accurate.
Wildfl***rTrail
Dec 02, 2025
5.0
Their responsive after-sales team provided assistance even during non-working hours, which was appreciated.
Gold***eadow
Dec 02, 2025
5.0
I highly recommend Di Digi Electronics for their superior quality and prices.
Fre***ibes
Dec 02, 2025
5.0
The secure packaging prevents any damages, ensuring our satisfaction.
Wint***loom
Dec 02, 2025
5.0
DiGi Electronics provides excellent value; their pricing beats many local competitors without compromising quality.
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Frequently Asked Questions (FAQ)

What are the key reliability risks when using the Murata GJM0335C1E200GB01D in high-vibration automotive RF applications, and how can I mitigate them?

The Murata GJM0335C1E200GB01D, while rated for -55°C to 125°C and RoHS3 compliant, is an ultra-miniature 0201 MLCC that can be susceptible to mechanical cracking under sustained vibration—common in under-hood or chassis-mounted automotive RF modules. Its small size (0.60mm x 0.30mm) offers limited mechanical robustness compared to larger packages like 0402 or 0603. To mitigate risk, avoid placing it near board edges or stiffeners, use conformal coating to reduce stress transfer, and consider strain-relief PCB layouts with teardrops or curved traces. For mission-critical paths, evaluate redundant parallel capacitors or switch to a more robust package if board space allows.

Can I replace the Murata GJM0335C1E200GB01D with a similar 20pF C0G 0201 capacitor from TDK or Samsung without redesigning my 5G mmWave matching network?

Direct replacement of the Murata GJM0335C1E200GB01D with parts like the TDK C0603C0G1E200J033BC or Samsung CL03B200JP3NNNC is possible in theory due to matching capacitance (20pF), tolerance (±2%), and C0G/NP0 tempco, but subtle differences in parasitic ESL and electrode construction can shift resonant frequency in mmWave circuits. Always validate impedance vs. frequency response using network analyzer measurements or EM simulation—especially above 6 GHz. Murata’s GJM series is optimized for minimal loss and high Q; deviations may degrade insertion loss or return loss in tight-tolerance RF front-ends. Re-characterization is strongly recommended before full production.

How does the Murata GJM0335C1E200GB01D perform under DC bias in a 12V-powered RF amplifier supply decoupling circuit, and could this affect stability?

Although the Murata GJM0335C1E200GB01D is a C0G/NP0 type—which typically exhibits minimal capacitance change under DC bias—its ultra-small 0201 form factor inherently limits electrode area, potentially leading to slightly higher effective series resistance (ESR) and inductance (ESL) than larger counterparts. In a 12V RF amplifier decoupling path, this may reduce high-frequency bypass effectiveness above 500 MHz. Ensure your PDN simulation includes manufacturer-provided S-parameter models (available from Murata’s SimSurfing tool) to verify impedance across frequency. If instability or ripple is observed, consider adding a secondary 100nF X7R in 0402 for mid-frequency support while retaining the GJM0335C1E200GB01D for GHz-range filtering.

Is the Murata GJM0335C1E200GB01D suitable for use in a satellite communication LNA input matching network operating at -40°C, given its -55°C rating?

Yes, the Murata GJM0335C1E200GB01D is technically suitable for -40°C operation—well within its -55°C to 125°C range—but thermal cycling in LEO (Low Earth Orbit) environments introduces additional concerns. C0G/NP0 dielectrics maintain stable capacitance over temperature, but coefficient of thermal expansion (CTE) mismatch between the ceramic body and PCB can induce microcracks during repeated thermal shocks. Mitigate this by using low-CTE substrates (e.g., Rogers RO4003C) and avoiding rapid thermal transitions. Also verify that your solder paste and reflow profile comply with MSL 1 requirements to prevent popcorning. For long-duration missions, consider derating voltage to ≤50% of the 25V rating (i.e., <12.5V) to enhance longevity.

What layout precautions should I take when placing the Murata GJM0335C1E200GB01D near a high-speed SerDes trace to avoid unintended coupling or signal integrity issues?

When routing high-speed differential pairs (e.g., PCIe Gen4/5 or USB4) near the Murata GJM0335C1E200GB01D, maintain at least 3x the capacitor’s body length (≥1.8mm) separation to minimize capacitive coupling. The 0201 package’s tiny size helps reduce parasitic effects, but improper grounding—such as sharing a noisy ground return path—can couple switching noise into sensitive RF sections. Always connect the capacitor’s ground terminal directly to a solid, unbroken ground plane using the shortest possible via (ideally co-located). Avoid placing vias between the capacitor pads, as this increases loop inductance. Use Murata’s recommended land pattern (from their packaging specs) to ensure optimal high-frequency performance and prevent tombstoning during reflow.

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