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C0402C0G1C910G

In Stock 624223 pcs Reference Price(In US Dollars)
1+
$0.259
10+
$0.1434
50+
$0.1001
100+
$0.0864
500+
$0.0617
1000+
$0.0535
2500+
$0.0442
5000+
$0.0382
Manufacturer Part Number:
C0402C0G1C910G
Manufacturer / Brand
TDK Corporation
Part of Description:
CAP CER 91PF 16V C0G 01005
Datasheets:
C0402C0G1C910G(1).pdfC0402C0G1C910G(2).pdfC0402C0G1C910G(3).pdf
Lead Free Status / RoHS Status:
RoHS Compliant
Stock Condition:
New original, 624223 pcs Stock Available.
ECAD Model:
Ship From:
Hong Kong
Shipment Way:
DHL/Fedex/TNT/UPS

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Part Number C0402C0G1C910G
Manufacturer / Brand TDK Corporation
Stock Quantity 624223 pcs Stock
Category Capacitors > Ceramic Capacitors
Description CAP CER 91PF 16V C0G 01005
Lead Free Status / RoHS Status: RoHS Compliant
RFQ C0402C0G1C910G Datasheets C0402C0G1C910G Details PDF
C0402C0G1C910G Details PDF for FR.pdf
C0402C0G1C910G Details PDF for KR.pdf
C0402C0G1C910G Details PDF for IT.pdf
C0402C0G1C910G Details PDF for ES.pdf
C0402C0G1C910G Details PDF for DE.pdf
Voltage - Rated 16V
Tolerance ±2%
Thickness (Max) 0.009" (0.22mm)
Temperature Coefficient C0G, NP0
Size / Dimension 0.016" L x 0.008" W (0.40mm x 0.20mm)
Series C
Ratings -
Package / Case 01005 (0402 Metric)
Package Tape & Reel (TR)
Operating Temperature -55°C ~ 125°C
Mounting Type Surface Mount, MLCC
Lead Style -
Lead Spacing -
Height - Seated (Max) -
Features -
Failure Rate -
Capacitance 91 pF
Applications General Purpose

Packaging & ESD

Industry-standard static shielding packaging is used for electronic components.Anti-static, light-transparent materials allow easy identification of ICs and PCB assemblies.
The packaging structure provides electrostatic protection based on Faraday cage principles.This helps protect sensitive components from static discharge during handling and transportation.


All products are packed in ESD-safe anti-static packaging. Outer packaging labels include part number, brand, and quantity for clear identification. Goods are inspected prior to shipment to ensure proper condition and authenticity.

ESD protection is maintained throughout packing, handling, and global transportation. Secure packaging provides reliable sealing and resistance during transit. Additional cushioning materials are applied when required to protect sensitive components.

QC(Part Testing by IC Components)Quality Warranty

We can offer worldwide express delivery service, such as DHLor FedEx or TNT or UPS or other forwarder for shipment.

Global Shipment by DHL/FedEx/TNT/UPS

Shipping Fees reference DHL/FedEx
1). You can offer your express delivery account for shipment, ifyou haven’t any express account for shipment, we can offer our account inadvance.
2). Use our account for shipment, Shipment charges(Reference DHL/FedEx, Different Countries has different price.)
Shipment charges: (Reference DHL and FedEX)
Weight(KG): 0.00kg-1.00kg Price(USD$) : USD$60.00
Weight(KG): 1.00kg-2.00kg Price(USD$) : USD$80.00
* The price of cost is reference with DHL/FedEx. The detail charges, please contact us. Different country the express charges are different.



We accept the payment terms: Telegraphic Transfer(T/T), Credit Card, PayPal and Western Union.

PayPal:

PayPal Bank Information:
Company Name : IC COMPONENTS LTD
Paypal ID: PayPal@IC-Components.com

BANK TRANSFAR (Telegraphic Transfer)

Payment For Telegraphic Transfers:
Company Name : IC COMPONENTS LTD Beneficiary Account Number : 549-100669-701
Beneficiary Bank name : Bank of Communications (Hong Kong) Ltd Beneficiary Bank Code : 382 (for local payment)
Beneficiary Bank SWIFT : COMMHKHK
Beneficiary Bank Address : Tsuen Wan Market Street Branch 53 Market Street, Tsuen Wan N.T., Hong Kong

Any inquires or questions, please kindly contact us Email: Info@IC-Components.com


C0402C0G1C910G Product Details:

The TDK Corporation C0402C0G1C910G is a high-precision ceramic multilayer capacitor (MLCC) designed for versatile electronic applications. This compact surface-mount component offers exceptional performance in a remarkably small form factor, measuring just 0.016" x 0.008" (0.40mm x 0.20mm), making it ideal for modern miniaturized electronic devices that demand space-efficient solutions.

Engineered with a C0G/NP0 temperature coefficient, this capacitor provides exceptional stability across a wide operating temperature range from -55°C to 125°C, ensuring consistent electrical characteristics in diverse environmental conditions. The component features a 91 pF capacitance rating with a tight ±2% tolerance, delivering precise and reliable electrical performance critical for sophisticated electronic circuits.

Rated at 16V, this MLCC is particularly suited for general-purpose applications in telecommunications, consumer electronics, automotive systems, and industrial equipment. Its robust design and surface-mount packaging allow for easy integration into compact electronic assemblies, supporting the ongoing trend of miniaturization in electronic design.

The capacitor's tape and reel packaging facilitates automated assembly processes, enhancing manufacturing efficiency. Its exceptional temperature stability, compact dimensions, and high-reliability specifications make it a preferred choice for engineers seeking dependable passive components in demanding electronic environments.

Equivalent models in the market include similar MLCC capacitors from manufacturers like Murata, Samsung Electro-Mechanics, and Yageo, offering comparable specifications in the 0402 metric package size with C0G/NP0 characteristics.

C0402C0G1C910G Image
C0402C0G1C910G (1)

C0402C0G1C910G Key Technical Attributes

Capacitance: 91 pF

Rated Voltage: 16V

Tolerance: ±2%

C0402C0G1C910G Packing Size

This product is packaged using Tape & Reel (TR) for automated assembly processes, ensuring consistent and efficient use in high-volume production. The component follows a 01005 (0402 Metric) size with extremely compact dimensions of 0.016" length × 0.008" width (0.40mm × 0.20mm) and a maximum thickness of 0.009" (0.22mm). The pin configuration is designed for Surface Mount Technology (SMT) with multilayer ceramic construction, which provides robust mechanical strength and stable electrical performance even under thermal stress. The package material offers excellent thermal characteristics to support reliable operation within the specified temperature range.

C0402C0G1C910G Application

The C0402C0G1C910G is specifically designed for general purpose applications in compact electronic circuits. It is ideal for use in power supply lines, filtering, signal coupling and decoupling, oscillator circuits, and timing components in a wide array of consumer, industrial, and automotive electronic devices where space efficiency and precise capacitance are critical.

C0402C0G1C910G Features

This multilayer ceramic capacitor (MLCC) utilizes a C0G (NP0) dielectric, offering an ultra-stable temperature coefficient with minimal change in capacitance over the full operating temperature range from -55°C to 125°C. It delivers low dielectric loss, ensuring high-frequency performance and very low equivalent series resistance (ESR). The device holds a very tight capacitance tolerance of ±2%, making it ideal for frequency-determining circuits and applications where precision is paramount. Its robust surface mount design supports high-density PCB layouts, while the compact 01005 (0402 metric) footprint suits next-generation miniaturized electronics. Additionally, the component's ceramic material offers high insulation resistance and superior reliability against mechanical stress, humidity, and voltage fluctuations.

C0402C0G1C910G Quality and Safety Features

Produced by TDK Corporation, this component meets stringent quality control and environmental standards. It is manufactured using premium grade raw materials and undergoes comprehensive electrical and mechanical testing. The capacitor complies with major safety certifications, with high insulation resistance, long operating life, and stable electrical properties even in demanding environments. The multilayer construction provides inherent self-healing capabilities and minimizes the risk of short-circuit failures, ensuring safety and durability in mission-critical designs.

C0402C0G1C910G Compatibility

The C0402C0G1C910G capacitor demonstrates full compatibility with industry-standard SMT assembly processes, making it suitable for integration into automated pick-and-place systems. Its universal 01005 (0402 Metric) form factor and electrical characteristics allow seamless replacement or design-in for a broad spectrum of PCB designs, especially in applications demanding miniaturization and high reliability.

C0402C0G1C910G Datasheet PDF

For authoritative and comprehensive technical details, customers are strongly encouraged to download the official datasheet for the C0402C0G1C910G from our website. Our datasheet is the most up-to-date and detailed resource available for this product model. Please visit this page to access the latest information and ensure optimal performance in your application.

Quality Distributor

IC-Components is proud to be a premium distributor of TDK Corporation products. We offer authentic, high-quality components with full traceability and competitive pricing. For the C0402C0G1C910G and other leading products, we invite customers to request a quote directly on our website. Experience reliable sourcing, expert support, and fast service—choose IC-Components for your trusted electronic component supply needs.

Frequently Asked Questions

When designing a 16V system, what are the real-world implications of using the TDK C0402C0G1C910G capacitor, especially concerning derating and potential transient overvoltages?
The TDK C0402C0G1C910G capacitor is rated for 16V. In a 16V system, it is crucial to implement voltage derating. A common practice is to operate capacitors at no more than 50-80% of their rated voltage, meaning for this 16V part, aiming for a maximum operating voltage of around 8V to 12.8V would be prudent. This accounts for potential voltage spikes or transients that can exceed the nominal operating voltage, especially during switching events or power-up sequences. Operating consistently at the maximum rated voltage without derating significantly reduces the capacitor's lifespan and increases the risk of premature failure, particularly in industrial applications with fluctuating power conditions.
For engineers considering replacing a ceramic capacitor in an existing circuit, what are the key trade-offs and potential design challenges when migrating from a different brand or series, specifically when looking at a 91pF, 16V component like the C0402C0G1C910G?
When replacing a ceramic capacitor with a component like the TDK C0402C0G1C910G, the primary trade-offs involve ensuring equivalent or superior performance across all relevant parameters. While the capacitance (91pF), voltage rating (16V), and temperature coefficient (C0G/NP0) might match, subtle differences in Equivalent Series Resistance (ESR), Equivalent Series Inductance (ESL), dielectric quality, and long-term capacitance drift can impact circuit performance. For instance, a higher ESL in a replacement part could affect high-frequency filtering. It's also important to verify the encapsulation material and thermal characteristics to ensure compatibility with the existing PCB's thermal management. Always cross-reference datasheets carefully, not just for stated parameters but also for implied performance in the target application.
In a high-reliability industrial setting requiring stable performance over a wide temperature range, how does the C0G temperature coefficient of the TDK C0402C0G1C910G capacitor contribute to its suitability compared to other dielectric types?
The C0G (also known as NP0) temperature coefficient is highly desirable for industrial applications because it offers the most stable capacitance across temperature variations. Unlike X7R or Y5V dielectrics, the capacitance of a C0G capacitor changes by only ±30 ppm/°C (or ±0.03%) from -55°C to +125°C. This makes the TDK C0402C0G1C910G exceptionally suitable for applications where precise filtering, timing, or impedance matching are critical and cannot tolerate significant capacitance shifts due to environmental temperature changes. This inherent stability reduces the need for compensatory circuit designs, simplifying the overall system.
What are the practical considerations and potential risks when integrating the TDK C0402C0G1C910G capacitor into a high-speed digital circuit where its low inductance and small form factor are advantageous, specifically regarding parasitic effects?
While the TDK C0402C0G1C910G's 01005 (0402 Metric) size and C0G dielectric offer low ESL and stable performance beneficial for high-speed digital circuits, engineers must still be mindful of parasitic effects. The extremely small size means very short lead lengths, which inherently minimizes ESL. However, the layout of the PCB, including trace lengths and proximity to other components, can still introduce parasitic inductance and capacitance. For critical high-speed interfaces, ensure the bypass capacitor (like the C0402C0G1C910G) is placed as close as possible to the power and ground pins of the IC to minimize trace impedance and effectively decouple noise. Also, consider the impact of the capacitor's own self-resonant frequency (SRF) relative to the operating frequencies of the digital signals.
For a power supply input filtering application requiring robust performance at 16V, are there alternative capacitor technologies or TDK part numbers that might offer advantages over the C0402C0G1C910G, and what are the trade-offs?
While the TDK C0402C0G1C910G is a suitable 91pF, 16V C0G capacitor, for input filtering in a 16V power supply, depending on the specific filtering requirements (e.g., frequency range of noise, required ripple reduction), alternative technologies might offer advantages. If higher capacitance density is needed for bulk decoupling, ceramic capacitors with higher dielectric constants (like X7R) in larger case sizes might be considered, but with the trade-off of greater capacitance variation with temperature and voltage. Alternatively, if extremely low ESR is paramount for handling high ripple currents, a tantalum or polymer capacitor could be an option, though they often come with higher voltage derating requirements and different failure modes. For a direct TDK alternative with similar stability, one might look for a C0G capacitor with a higher voltage rating for increased headroom or a larger case size for potentially lower ESR.
What are the critical environmental factors engineers should consider for long-term reliability when using the TDK C0402C0G1C910G capacitor in an outdoor or harsh industrial environment, beyond its specified operating temperature?
Beyond the specified operating temperature range of -55°C to +125°C, the TDK C0402C0G1C910G capacitor's long-term reliability in harsh industrial environments hinges on several factors. Humidity and moisture ingress can lead to dielectric degradation or corrosion of terminations, especially in MLCCs. Exposure to corrosive chemicals or salt spray can also degrade the capacitor's metallization. Mechanical stress, such as vibration or shock, can cause cracking in the ceramic body or solder joint failure, particularly with such a small package. Proper conformal coating of the PCB assembly can mitigate some of these environmental risks. Furthermore, ensure that the chosen solder alloy and assembly process are robust enough for the intended environment.
How would the choice of the C0402C0G1C910G capacitor impact the design of a resonant tank circuit requiring precise tuning at a specific frequency, considering its fixed capacitance value and tolerance?
In a resonant tank circuit requiring precise tuning, the TDK C0402C0G1C910G's fixed capacitance of 91pF and ±2% tolerance are primary design parameters. The C0G dielectric's excellent stability over temperature ensures that the resonant frequency will remain remarkably consistent. However, the ±2% tolerance means the exact resonant frequency will vary slightly from unit to unit. For applications demanding extremely tight frequency control, designers might need to incorporate a parallel variable capacitor or a trimmer capacitor to fine-tune the resonant frequency after assembly. The capacitor's own parasitic inductance (ESL) and resistance (ESR) also contribute to the overall Q factor of the tank circuit and can slightly shift the resonant frequency, so these must be considered in the detailed design calculations.

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