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MPZ1608S600ATAH0

In Stock 25200 pcs Reference Price(In US Dollars)
1+
$0.0125
Manufacturer Part Number:
MPZ1608S600ATAH0
Manufacturer / Brand
TDK Corporation
Part of Description:
FERRITE BEAD 60 OHM 0603 1LN
Datasheets:
MPZ1608S600ATAH0(1).pdfMPZ1608S600ATAH0(2).pdfMPZ1608S600ATAH0(3).pdfMPZ1608S600ATAH0(4).pdfMPZ1608S600ATAH0(5).pdf
Lead Free Status / RoHS Status:
ROHS3 Compliant
Stock Condition:
New original, 25200 pcs Stock Available.
ECAD Model:
Ship From:
Hong Kong
Shipment Way:
DHL/Fedex/TNT/UPS

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Part Number MPZ1608S600ATAH0
Manufacturer / Brand TDK Corporation
Stock Quantity 25200 pcs Stock
Category Filters > Ferrite Beads and Chips
Description FERRITE BEAD 60 OHM 0603 1LN
Lead Free Status / RoHS Status: ROHS3 Compliant
RFQ MPZ1608S600ATAH0 Datasheets MPZ1608S600ATAH0 Details PDF
MPZ1608S600ATAH0 Details PDF for FR.pdf
MPZ1608S600ATAH0 Details PDF for KR.pdf
MPZ1608S600ATAH0 Details PDF for DE.pdf
MPZ1608S600ATAH0 Details PDF for IT.pdf
MPZ1608S600ATAH0 Details PDF for ES.pdf
Size / Dimension 0.063" L x 0.032" W (1.60mm x 0.80mm)
Series MPZ
Ratings -
Package / Case 0603 (1608 Metric)
Package Tape & Reel (TR)
Operating Temperature -55°C ~ 125°C
Number of Lines 1
Mounting Type Surface Mount
Impedance @ Frequency 60 Ohms @ 100 MHz
Height (Max) 0.030" (0.75mm)
Filter Type Power Line
DC Resistance (DCR) (Max) 20mOhm
Current Rating (Max) 3.5A

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.



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Beneficiary Bank Address : Tsuen Wan Market Street Branch 53 Market Street, Tsuen Wan N.T., Hong Kong

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MPZ1608S600ATAH0 Product Details:

The TDK Corporation MPZ1608S600ATAH0 is a high-performance ferrite bead designed for efficient electromagnetic interference (EMI) suppression and power line filtering in compact electronic applications. This miniature surface-mount component offers exceptional noise reduction capabilities within a remarkably small 0603 (1608 metric) package measuring just 1.60mm x 0.80mm.

Engineered for demanding electronic environments, this ferrite bead delivers outstanding electrical characteristics, including a low DC resistance of 20mΩ and the ability to handle up to 3.5A of current. Its robust design supports operation across a wide temperature range from -55°C to 125°C, making it suitable for diverse industrial, automotive, and consumer electronics applications.

The key advantages of this ferrite bead include its compact form factor, which allows for seamless integration into dense circuit designs, and its superior noise suppression performance, providing 60 ohms of impedance at 100 MHz. This makes it particularly effective in power supply circuits, signal lines, and other electronic systems requiring high-frequency noise mitigation.

Ideal for use in telecommunications equipment, computer peripherals, automotive electronics, and portable devices, this component addresses critical design challenges related to electromagnetic compatibility and signal integrity. Its surface-mount configuration enables precise, space-efficient installation in modern electronic assemblies.

While specific equivalent models are not directly mentioned in the specifications, similar ferrite beads from manufacturers like Murata, Würth Elektronik, and Bourns would offer comparable performance characteristics. The MPZ1608S600ATAH0 stands out for its exceptional balance of size, performance, and reliability in noise suppression applications.

The component is RoHS compliant, ensuring environmental responsibility and compatibility with modern manufacturing standards. Its tape and reel packaging further supports automated assembly processes, making it an attractive solution for high-volume electronic manufacturing.

MPZ1608S600ATAH0 Key Technical Attributes

MPN: MPZ1608S600ATAH0

Impedance: 60 Ohms @ 100 MHz

Maximum Current: 3.5A

MPZ1608S600ATAH0 Packing Size

This product is available in a compact 0603 (1608 Metric) package, making it suitable for high-density circuit board designs. The dimensions are precisely 0.063 inches in length by 0.032 inches in width (1.60mm x 0.80mm), with a maximum height of 0.030 inches (0.75mm). The device is supplied in Tape & Reel (TR) form, ensuring efficient and secure handling during automated SMT assembly. The encapsulation code is 8139, confirming standardized packaging for reliable delivery and mounting.

MPZ1608S600ATAH0 Application

The MPZ1608S600ATAH0 ferrite bead is engineered for power line filtering applications in electronic circuits. It is especially suited for noise suppression and electromagnetic interference (EMI) reduction in consumer electronics, computing devices, industrial equipment, and communication modules. Its robust current rating and impedance make it ideal for safeguarding sensitive components in densely packed PCBs.

MPZ1608S600ATAH0 Features

This TDK ferrite bead offers a 60 Ohm impedance at 100 MHz, effectively attenuating EMI in power supply lines. The component features ultra-low DC resistance (maximum 20mOhm), ensuring minimal power loss and high efficiency in circuits carrying substantial currents up to 3.5A. The compact 0603 package supports miniaturization trends in modern electronics, while surface mount compatibility promotes ease of integration. The device performs reliably across an extended operating temperature range from -55°C to 125°C, suitable for both consumer and industrial environments. Its single-line configuration supports targeted filtering, and the power line filter type addresses a broad scope of electronic system requirements.

MPZ1608S600ATAH0 Quality and Safety Features

Manufactured by TDK Corporation, a recognized leader in passive electronic components, the MPZ1608S600ATAH0 maintains rigorous quality assurance standards. The product complies with industry RoHS directives, focusing on environmental safety by restricting hazardous materials. With a robust build and thermal profile, it offers reliable operation under varying loads and temperatures, ensuring consistent safety and component protection in demanding applications.

MPZ1608S600ATAH0 Compatibility

This ferrite bead is fully compatible with standard 0603 (1608 Metric) footprint PCB designs, allowing straightforward substitution or upgrade in existing layouts. Its surface mount design ensures wide applicability in automated manufacturing environments. The current handling capability and impedance specifications support integration with high-speed digital circuits, analog devices, and power management modules.

MPZ1608S600ATAH0 Datasheet PDF

We provide the most comprehensive and authoritative datasheet for the MPZ1608S600ATAH0 directly on our website. Customers are strongly encouraged to download the product datasheet from this page to access in-depth technical, application, and compliance information. Utilize the datasheet for precise design implementation and optimal performance.

Quality Distributor

IC-Components proudly serves as a premium distributor of TDK Corporation products, including the MPZ1608S600ATAH0 ferrite bead. With extensive inventory, fast delivery, and professional support, we ensure the highest level of service and quality assurance. Visit our website now to get an instant quote and experience the reliability and value trusted by industry professionals worldwide.

Frequently Asked Questions

When integrating the TDK MPZ1608S600ATAH0 ferrite bead into a high-frequency noise filtering application, what specific considerations should an engineer make regarding its impedance curve and operational frequency range to ensure effective suppression of unwanted EMI?
The TDK MPZ1608S600ATAH0 ferrite bead is characterized by its impedance of 60 Ohms at 100 MHz. When designing for high-frequency noise filtering, it's crucial to understand that the impedance of the MPZ1608S600ATAH0 will vary with frequency. Engineers should consult TDK's application notes or conduct specific frequency sweeps if possible to map the impedance response beyond 100 MHz. This ensures the bead effectively attenuates target noise frequencies, especially those approaching or exceeding the specified 100 MHz, while minimizing insertion loss at desired signal frequencies. The MPZ1608S600ATAH0 is designed for power line filtering and is most effective in the hundreds of MHz range.
What are the practical implications of the MPZ1608S600ATAH0's 3.5A maximum current rating in a system where transient current spikes might exceed this value, and what are the potential failure modes or degradation mechanisms?
The TDK MPZ1608S600ATAH0 has a maximum current rating of 3.5A. If transient current spikes consistently or significantly exceed this rating, the ferrite material within the MPZ1608S600ATAH0 can overheat. This localized heating can lead to a degradation of its magnetic properties, effectively reducing its impedance and filtering capability over time. In extreme cases, it could lead to thermal runaway and failure. Engineers must ensure their circuit design includes adequate protection mechanisms, such as current limiting or fast-acting fuses, or select a ferrite bead with a higher current rating if such transients are unavoidable.
For engineers designing with the MPZ1608S600ATAH0, what are the critical differences in performance and application suitability compared to a traditional inductor of similar impedance and current rating in a power line noise suppression circuit?
While both inductors and ferrite beads like the TDK MPZ1608S600ATAH0 can offer impedance at frequency, their fundamental operating principles and material properties differ significantly. A traditional inductor primarily relies on magnetic field storage, while the MPZ1608S600ATAH0 utilizes resistive losses within its ferrite material to dissipate energy, converting it to heat. This means the MPZ1608S600ATAH0 is generally more effective at suppressing broadband high-frequency noise and exhibits less resonance compared to a similarly rated inductor, which is a key advantage for EMI suppression. However, this energy dissipation means the MPZ1608S600ATAH0 will generate heat, a factor to consider in thermal management, unlike many inductors which dissipate less power as heat.
Considering the MPZ1608S600ATAH0's operating temperature range of -55°C to 125°C, how might prolonged exposure to extreme temperatures, particularly the upper limit, affect its DC resistance (DCR) and overall impedance characteristics in a rugged industrial environment?
The TDK MPZ1608S600ATAH0 is rated for operation from -55°C to 125°C. While its DCR of 20mOhm is specified at a particular temperature (typically room temperature), it will exhibit some temperature dependency. Prolonged exposure to the upper limit of 125°C can lead to a slight increase in DCR for the MPZ1608S600ATAH0. More significantly, the core material's magnetic properties, which dictate its impedance, can also shift with temperature. Engineers working in demanding industrial environments should account for these potential shifts in impedance, especially if the noise source is close to the specified operating limits of the MPZ1608S600ATAH0. Thermal management around the component is advisable to maintain consistent performance.
If a system currently uses a different 0603-sized ferrite bead with a 3A current rating and 50 Ohm impedance at 100 MHz, what are the key technical trade-offs and potential design modifications required when migrating to the TDK MPZ1608S600ATAH0?
Migrating from a 3A, 50 Ohm @ 100 MHz ferrite bead to the TDK MPZ1608S600ATAH0 (3.5A, 60 Ohm @ 100 MHz) presents several considerations. The primary benefits of the MPZ1608S600ATAH0 are its higher current handling capability (3.5A vs 3A) and slightly increased impedance at the target frequency. This might allow for more robust operation under load. However, the increased impedance from 50 to 60 Ohms at 100 MHz, while potentially improving filtering, could also introduce a slightly higher insertion loss at lower frequencies or for specific signal components within the noise spectrum. Engineers should re-evaluate the critical frequency range for noise suppression and the impact of the higher impedance on signal integrity if the replaced part was in a sensitive signal path, not just a power line. The physical dimensions and mounting footprint of the MPZ1608S600ATAH0 are identical to other 0603 components, facilitating a direct mechanical replacement.
When selecting a replacement for an obsolete MPZ1608S600ATAH0, what specific parameters beyond impedance and current rating should an engineer scrutinize from datasheets of alternative components to avoid unexpected system behavior or performance degradation?
When sourcing a replacement for the TDK MPZ1608S600ATAH0, engineers must look beyond just impedance at 100 MHz and the maximum current rating. Key parameters to scrutinize include the impedance curve across a wider frequency range, the DC resistance (DCR), the operating temperature range, and the material type of the ferrite bead. For instance, a ferrite bead with a similar impedance at 100 MHz but a vastly different impedance slope at higher frequencies might not effectively suppress other noise components. The DCR of a replacement directly impacts power loss and voltage drop in the circuit. Understanding the Curie temperature and the material's saturation characteristics is also vital for high-reliability applications. The MPZ1608S600ATAH0's specific performance envelope, especially its impedance characteristics above and below 100 MHz, should be matched as closely as possible by any proposed alternative.
In a complex PCB layout involving multiple power rails filtered by components like the MPZ1608S600ATAH0, what are the best practices for placement and routing to prevent parasitic inductance and capacitance from compromising the intended noise suppression effectiveness of the MPZ1608S600ATAH0?
For optimal performance of the TDK MPZ1608S600ATAH0, placement and routing are critical. The MPZ1608S600ATAH0 should be placed as close as possible to the noise source it is intended to suppress, typically at the input of a sensitive circuit or on a power supply rail. For power line filtering, the MPZ1608S600ATAH0 should be in series with the power flow. Routing should be kept as short and direct as possible between the input and output of the MPZ1608S600ATAH0 to minimize parasitic inductance. Adequate decoupling capacitors should be placed in parallel with the MPZ1608S600ATAH0, immediately adjacent to its terminals, to provide a low-impedance path for the high-frequency noise that the ferrite bead shunts to ground. Proper grounding is also essential.
How does the single-line nature of the TDK MPZ1608S600ATAH0 ferrite bead influence its application in scenarios where filtering is required for both positive and negative supply rails or for differential noise modes?
The TDK MPZ1608S600ATAH0 is a single-line ferrite bead, meaning it is designed to be inserted in series with one conductor path. In applications requiring filtering for both positive and negative supply rails, two separate MPZ1608S600ATAH0 components would be needed, one on each rail. For filtering differential noise, which travels in opposite directions on two conductors, a common-mode choke with multiple turns on a single ferrite core is typically required. While the MPZ1608S600ATAH0 itself cannot directly filter differential noise, it can be used on each leg of a differential pair to filter common-mode noise that may be present on those lines. Careful selection of a multi-line common-mode choke might be more efficient if differential noise is the primary concern.
What are the specific risks associated with using the MPZ1608S600ATAH0 in a "closed-loop" control system where transient voltage drops across the bead due to current fluctuations could lead to instability or misinterpretation of feedback signals?
The TDK MPZ1608S600ATAH0 exhibits a DC resistance (DCR) of up to 20mOhm. In a closed-loop control system, any current flowing through this resistance will cause a voltage drop (V = I * R). If this voltage drop is significant and fluctuates with transient currents, it can lead to instability or inaccurate feedback readings. For example, in a current-mode control loop, an inconsistent voltage drop across the MPZ1608S600ATAH0 might be misinterpreted as a change in the actual load current, causing the control loop to react inappropriately. Engineers must carefully calculate the maximum expected voltage drop across the MPZ1608S600ATAH0 under worst-case current conditions and assess its impact on the control loop's stability margins and precision.
Can the MPZ1608S600ATAH0 be effectively used as a component in a power supply input filter to reduce conducted emissions, and if so, what is the recommended configuration alongside other passive components like capacitors and inductors?
Yes, the TDK MPZ1608S600ATAH0 can be effectively used as a component in a power supply input filter to reduce conducted emissions. For optimal performance in such an application, it is typically configured in conjunction with capacitors. A common and effective arrangement involves placing the MPZ1608S600ATAH0 in series with the input power line, followed by a capacitor connected from the output of the ferrite bead to ground. This forms an LC or RC-like filter network. The ferrite bead (MPZ1608S600ATAH0) provides impedance at higher frequencies, while the capacitor shunts the high-frequency noise to ground. For more aggressive filtering, a combination of an inductor, the MPZ1608S600ATAH0, and multiple capacitors placed at different points along the power line can be employed to target a broader range of noise frequencies.

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