Choose your country or region.

KYOCERA AVX
TAP SCS SERIES 10.0H,6.0D.jpg ImageView larger image
Image may be representation.
See specs for product details.

TAP336M016SRW

In Stock 50000 pcs Reference Price(In US Dollars)
1+
$1.7351
10+
$1.4029
50+
$1.2248
100+
$1.0717
500+
$0.8165
Manufacturer Part Number:
TAP336M016SRW
Manufacturer / Brand
KYOCERA AVX
Part of Description:
CAP TANT 33UF 20% 16V RADIAL
Datasheets:
TAP336M016SRW(1).pdfTAP336M016SRW(2).pdf
Lead Free Status / RoHS Status:
ROHS3 Compliant
Stock Condition:
New original, 50000 pcs Stock Available.
ECAD Model:
Ship From:
Hong Kong
Shipment Way:
DHL/Fedex/TNT/UPS

Inquiry Online

Please complete all required fields with your contact information.Click "SUBMIT REQUEST" we will contact you shortly by email. Or Email us: Info@IC-Components.com
Part Number
Manufacturer
Require Quantity
Target Price(USD)
Company Name
Contact Name
E-mail
Phone
Message
Please enter Verify Code and click "Submit"
Part Number TAP336M016SRW
Manufacturer / Brand KYOCERA AVX
Stock Quantity 50000 pcs Stock
Category Capacitors > Tantalum Capacitors
Description CAP TANT 33UF 20% 16V RADIAL
Lead Free Status / RoHS Status: ROHS3 Compliant
RFQ TAP336M016SRW Datasheets TAP336M016SRW Details PDF
TAP336M016SRW Details PDF for FR.pdf
TAP336M016SRW Details PDF for KR.pdf
TAP336M016SRW Details PDF for DE.pdf
TAP336M016SRW Details PDF for IT.pdf
TAP336M016SRW Details PDF for ES.pdf
Voltage - Rated 16 V
Type Conformal Coated
Tolerance ±20%
Size / Dimension 0.236' Dia (6.00mm)
Series TAP
Package / Case Radial
Package Tape & Reel (TR)
Operating Temperature -55°C ~ 125°C
Mounting Type Through Hole
Manufacturer Size Code F
Lifetime @ Temp. 1000 Hrs @ 85°C
Lead Spacing 0.098' (2.50mm)
Height - Seated (Max) 0.394' (10.00mm)
Features General Purpose
Failure Rate -
ESR (Equivalent Series Resistance) 1.6Ohm
Capacitance 33 µF

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


TAP336M016SRW Product Details:

The AVX TAP336M016SRW is a high-performance tantalum capacitor designed for versatile electronic applications, offering robust electrical characteristics and reliable performance across a wide temperature range. This through-hole mounted capacitor features a 33µF capacitance with a ±20% tolerance, rated for 16V operations, making it suitable for various electronic circuit designs requiring stable and consistent energy storage.

Engineered with precision, the capacitor addresses critical design challenges by providing excellent reliability with a 1000-hour operational lifetime at 85°C and an impressive operating temperature range from -55°C to 125°C. Its radial package configuration, measuring 0.236" in diameter and 0.394" in height, ensures compact integration into electronic systems while maintaining low equivalent series resistance (ESR) of 1.6Ohm.

The device is generously conformal coated, enhancing its durability and resistance to environmental factors, which makes it ideal for automotive, industrial, telecommunications, and consumer electronics applications. Its 0.098" (2.50mm) lead spacing facilitates straightforward PCB mounting, and the tape and reel packaging supports efficient manufacturing processes.

Key advantages include its consistent performance, broad temperature tolerance, low ESR, and RoHS compliance. The capacitor is particularly well-suited for power supply circuits, signal filtering, decoupling, and energy storage in compact electronic designs requiring reliable, high-performance components.

Equivalent or alternative models in the AVX product line include similar tantalum capacitors within the TAP series with varying capacitance values and voltage ratings, such as TAP226M016SRW, TAP476M016SRW, and TAP106M016SRW, offering designers flexible options for their specific circuit requirements.

TAP336M016SRW Key Technical Attributes

Capacitance: 33µF

Voltage Rating: 16V

Tolerance: ±20%

Encapsulation: 8144

Series: TAP

ESR: 1.6 Ohm

Lead Spacing: 2.50mm

Mounting Type: Through Hole

TAP336M016SRW Packing Size

The product is packaged in Tape & Reel (TR) format, suitable for high-volume and automated assembly lines. The physical case style is radial, with a diameter of 0.236 inches (6.00mm) and a maximum seated height of 0.394 inches (10.00mm). The lead spacing is 0.098 inches (2.50mm), ensuring compatibility with standard PCB layouts. The device is conformal coated for durability and enhanced thermal stability. This product comes with a manufacturer size code of F, which helps ensure correct selection for automated equipment and consistent manufacturing processes.

TAP336M016SRW Application

This capacitor is designed for general-purpose use in electronic circuits, especially where stable capacitance and moderate voltage levels are required. Typical applications include power supply filtering, decoupling, timing circuits, and noise reduction in both consumer electronics and industrial devices. The wide operating temperature range from -55°C to 125°C further extends its utility in automotive, industrial, and communication equipment.

TAP336M016SRW Features

The AVX (KYOCERA AVX) TAP336M016SRW brings several notable features. It has a capacitance value of 33 microfarads (µF) with a tolerance of ±20%, making it flexible enough to handle various circuit needs while maintaining reliable performance. The rated voltage of 16V ensures safe operation in low to moderate voltage conditions. The capacitor uses a radial package type, offering easy through-hole mounting and robust mechanical connection. Its conformal coating provides superior resistance to environmental stress, such as moisture and contaminants, prolonging operational life. The product is rated for 1000 hours lifetime at 85°C, is RoHS compliant depending on inventory checks, and boasts a 1.6 Ohm equivalent series resistance (ESR), optimizing energy efficiency in filtering applications. Furthermore, the packaging in Tape & Reel aligns perfectly with automated placement systems for high-volume production.

TAP336M016SRW Quality and Safety Features

Manufactured to the strict standards of AVX (KYOCERA AVX), this capacitor is engineered for stable, safe, and long-term operation. The conformal coating serves not only as a protective shield but also enhances safety by minimizing risks of short-circuit and environmental degradation. The product’s endurance at elevated temperatures and the broad operational range (from -55°C to 125°C) reflect high-quality material selection and rigorous testing. RoHS directives are considered, with compliance dependent on inventory verification, supporting global environmental safety initiatives.

TAP336M016SRW Compatibility

The TAP336M016SRW is compatible with a broad assortment of through-hole PCB designs due to its standard radial form factor, 6.00mm diameter, and 2.50mm lead spacing. The 16V voltage rating and 33µF capacitance make it suitable for integration in both new designs and as a replacement part for existing equipment from a wide array of manufacturers, especially where general-purpose tantalum capacitors are needed.

TAP336M016SRW Datasheet PDF

Detailed and authoritative technical documentation is available for the TAP336M016SRW capacitor. To fully understand all technical nuances, performance graphs, and recommended usage guidelines, we strongly recommend that customers download the official datasheet directly from our website. The datasheet provides the latest and most comprehensive information, guaranteeing accuracy and currency beyond any other source.

Quality Distributor

IC-Components is your premier and trusted distributor of AVX (KYOCERA AVX) products. We guarantee genuine parts, competitive pricing, and expert support for all your electronic component needs. Take advantage of our large stock—including 50,000 units of the TAP336M016SRW—and request your quote today at IC-Components. Experience premium service and reliability directly from a top-tier supplier.

Frequently Asked Questions

What are the practical implications of using the AVX TAP336M016SRW tantalum capacitor in a noisy analog circuit operating near its 16V rating, considering its 1.6 Ohm ESR?
When using the AVX TAP336M016SRW tantalum capacitor in a noisy analog circuit, especially close to its 16V rating, the 1.6 Ohm ESR becomes a significant factor. This ESR will contribute to ripple voltage across the capacitor, which can couple noise into sensitive signal paths. For applications requiring very low noise, engineers may need to consider parallel filtering with lower ESR components, or explore alternative capacitor technologies with significantly lower ESR values, such as ceramic capacitors or specialized low-ESR electrolytic capacitors, while carefully managing their voltage and temperature derating. The 1000 Hrs @ 85°C lifetime rating also suggests this capacitor is not ideal for continuous high-stress operation at elevated temperatures.
When designing a power supply filter for a microcontroller that requires stable decoupling and has transient current demands, how does the AVX TAP336M016SRW's 33µF capacitance and 16V rating compare to other common through-hole decoupling capacitors like ceramic or aluminum electrolytic for this specific application?
The AVX TAP336M016SRW offers a good balance of capacitance and volumetric efficiency for decoupling. However, for high-frequency transient current demands typical of microcontrollers, its ESR of 1.6 Ohms can be a limitation, potentially leading to insufficient voltage regulation during peaks. While ceramic capacitors offer much lower ESR and better high-frequency performance, they might require higher capacitance values to achieve similar bulk decoupling. Aluminum electrolytic capacitors offer high capacitance at lower cost but generally have higher ESR and poorer high-frequency response than the TAP336M016SRW. For critical microcontroller decoupling, a hybrid approach combining the AVX TAP336M016SRW for bulk capacitance with smaller, lower-ESR ceramic capacitors placed very close to the MCU's power pins is often the most effective design strategy to mitigate voltage droop and noise.
I need to replace an older generation of AVX tantalum capacitors in an industrial control system that has been operating for years. Can the AVX TAP336M016SRW be a direct drop-in replacement for a similar voltage and capacitance part, and what potential design risks should I evaluate?
While the AVX TAP336M016SRW shares radial form factor and capacitance/voltage ratings with older AVX tantalum parts, it's crucial to evaluate potential design risks before considering it a direct drop-in replacement. The TAP336M016SRW's "Conformal Coated" type, compared to potentially different encapsulation in older parts, might have slightly different environmental sealing characteristics. More importantly, verify the original part's ESR and temperature rating. If the older part had significantly lower ESR or a higher temperature rating, the TAP336M016SRW might not offer equivalent performance, especially under load or at higher operating temperatures (up to 125°C for the TAP336M016SRW, but its lifetime is rated at 1000 Hrs @ 85°C). Ensure the existing circuit’s power dissipation capabilities can accommodate the TAP336M016SRW’s ESR and the application's expected operating conditions.
For applications that require long-term reliability in harsh industrial environments with temperature cycling between -40°C and 85°C, what are the key considerations when selecting the AVX TAP336M016SRW, given its -55°C to 125°C operating temperature range but 1000 Hrs @ 85°C lifetime?
The AVX TAP336M016SRW's stated operating temperature range of -55°C to 125°C indicates its capability to function across a wide spectrum. However, the crucial detail for long-term industrial reliability is the "1000 Hrs @ 85°C" lifetime rating. This implies that while the component can *operate* at temperatures up to 125°C, its expected operational lifespan is significantly reduced at temperatures above 85°C. For continuous operation in a -40°C to 85°C industrial environment, the capacitor is likely suitable, but designers must account for potential aging effects, especially if the circuit frequently operates at the higher end of this range. Monitoring key parameters like capacitance drift and ESR increase over time would be prudent. For applications demanding very long operational life at elevated temperatures (e.g., >85°C), alternative capacitor technologies or components with higher temperature/lifetime ratings for the AVX TAP336M016SRW series might be necessary.
If a design calls for a higher voltage rating than 16V, and I'm considering using multiple AVX TAP336M016SRW capacitors in series for increased voltage handling, what are the practical challenges and potential failure modes to anticipate?
When connecting multiple AVX TAP336M016SRW capacitors in series to achieve a higher voltage rating, the primary challenge is ensuring uniform voltage distribution across each individual capacitor. Even minor differences in leakage current or capacitance can lead to one capacitor taking a disproportionately higher voltage, accelerating its failure. This can be mitigated by using balancing resistors in parallel with each capacitor, though this adds complexity and cost. Another significant consideration is the impact on total ESR; series connection increases the total ESR, which can affect ripple current handling and power dissipation. Furthermore, if one capacitor fails open, the entire series string will fail. Series configurations are generally less desirable than using a single capacitor with a sufficient voltage rating due to these complexities and the increased risk of premature failure.
My design requires a 33µF capacitor for an audio coupling application where a smooth frequency response is critical. How does the AVX TAP336M016SRW's ±20% tolerance and 1.6 Ohm ESR compare to alternatives like film capacitors or high-quality electrolytic capacitors for this specific performance requirement?
For audio coupling, where a smooth frequency response is critical, the AVX TAP336M016SRW's ±20% capacitance tolerance means the actual capacitance can deviate significantly from the nominal 33µF, potentially affecting the cutoff frequency of your coupling network. More importantly, its 1.6 Ohm ESR will introduce losses in the audio signal path and can influence the damping of the circuit, potentially leading to a less "flat" frequency response or coloration. Film capacitors, with their very tight tolerances (often ±5% or better) and extremely low ESR, are generally preferred for high-fidelity audio coupling. High-quality electrolytic capacitors can offer better ESR than the TAP336M016SRW but may still exhibit higher ESR and less predictable performance compared to film types. The TAP336M016SRW is more suited for general-purpose filtering or decoupling where these tighter audio performance parameters are less critical.
I am migrating a legacy design that uses through-hole radial tantalum capacitors from a specific manufacturer's older part number to the AVX TAP336M016SRW. What specific electrical and physical differences, beyond capacitance and voltage, should I scrutinize to ensure a successful component substitution?
When migrating from a legacy through-hole radial tantalum capacitor to the AVX TAP336M016SRW, you must scrutinize several critical parameters beyond just capacitance and voltage. Pay close attention to the **Equivalent Series Resistance (ESR)**: the TAP336M016SRW has a specified ESR of 1.6 Ohms; ensure the legacy part's ESR was not significantly lower, as this could impact ripple current handling and power dissipation. Examine the **operating temperature range and lifetime specifications**; the TAP336M016SRW's 1000 Hrs @ 85°C lifetime is a key constraint. Also, check the **dielectric absorption characteristics** (though not explicitly listed, it varies between tantalum types) and **leakage current** of both parts, as these can affect circuit stability and performance. Finally, verify the **physical dimensions** (Diameter 6.00mm, Height 10.00mm, Lead Spacing 2.50mm) of the TAP336M016SRW to ensure it fits the existing PCB footprint and meets mechanical clearance requirements.
In a battery-powered portable device that needs to manage power spikes and maintain a stable operating voltage for sensitive electronics, how does the AVX TAP336M016SRW's 33µF capacitance and 16V rating fit into a power management strategy compared to lower voltage, higher capacitance, or solid tantalum alternatives?
For a battery-powered portable device managing power spikes, the AVX TAP336M016SRW's 33µF capacitance provides a reasonable amount of bulk energy storage. Its 16V rating is suitable if the battery voltage is significantly lower than this, allowing for adequate headroom. However, its 1.6 Ohm ESR might limit its effectiveness in handling very fast transient current demands, where lower ESR alternatives (like specialized low-ESR electrolytic or certain ceramic capacitors) placed closer to the load might be more effective. If the battery voltage is close to or exceeds 16V, the TAP336M016SRW would be unsuitable. Solid tantalum capacitors from AVX (and other manufacturers) often offer lower ESR and higher volumetric efficiency for a given capacitance and voltage rating, making them a strong alternative for these power management applications, especially if space is a constraint.
What are the potential implications of exceeding the 16V rating of the AVX TAP336M016SRW tantalum capacitor, particularly in terms of failure modes and safety considerations in a mass-produced consumer electronic device?
Exceeding the 16V rating of the AVX TAP336M016SRW capacitor can lead to catastrophic failure. Tantalum capacitors, when overvolted, can experience dielectric breakdown, leading to a rapid increase in leakage current and self-heating. This can result in a short circuit, often accompanied by smoke, fire, or even explosion, especially in more sensitive types or if current limiting is absent. In a mass-produced consumer electronic device, this poses significant safety risks, including fire hazards and potential injury to users. It's crucial to design with a substantial voltage derating, typically 50% for general-purpose applications, meaning a 16V rated capacitor should ideally be used in circuits operating at or below 8V to ensure reliability and safety. The 1000 Hrs @ 85°C lifetime further reinforces the need for conservative voltage and temperature derating.
When considering the AVX TAP336M016SRW for a 16V rated application, and given its 20% capacitance tolerance, what level of capacitance drift can be expected over its operational lifetime at its maximum rated temperature of 125°C, and how might this affect circuit performance?
The AVX TAP336M016SRW has a stated capacitance tolerance of ±20%. While the datasheet specifies a lifetime of 1000 hours at 85°C, predicting exact capacitance drift at the absolute maximum operating temperature of 125°C without specific accelerated aging data is difficult. However, it is generally expected that dielectric materials, including tantalum, will exhibit some degree of capacitance drift over time, which can be exacerbated by higher temperatures. This drift can manifest as a decrease in capacitance. For a 33µF capacitor with a ±20% tolerance, the actual capacitance could range from 26.4µF to 39.6µF initially. If the capacitance drifts downwards over time, especially in applications where this capacitance is used for filtering or timing, it could shift cutoff frequencies, alter resonant frequencies, or reduce the effectiveness of decoupling, potentially leading to circuit instability or performance degradation. Engineers should factor in this potential drift when designing circuits that are sensitive to capacitance values.

Recent Reviews

Leave Comment
Hello, you have not logged in, please log in
User Login

Forgot password?

No account yet? Register now

Tips
Please speak legally
Your email will be hidden
Please complete all required fields ( denoted with* )
Mark
5.0

You May Also Be Interested In:


TAP336M016SRW

TAP336M016SRW

KYOCERA AVX

CAP TANT 33UF 20% 16V RADIAL

In Stock: 50000

SUBMIT RFQ