MPZ1608D600BTA00 >
MPZ1608D600BTA00
TDK Corporation
FERRITE BEAD 60 OHM 0603 1LN
161245 Pcs New Original In Stock
60 Ohms @ 100 MHz 1 Power Line Ferrite Bead 0603 (1608 Metric) 1.2A 100mOhm
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MPZ1608D600BTA00 TDK Corporation
5.0 / 5.0 - (232 Ratings)

MPZ1608D600BTA00

Product Overview

6669414

DiGi Electronics Part Number

MPZ1608D600BTA00-DG

Manufacturer

TDK Corporation
MPZ1608D600BTA00

Description

FERRITE BEAD 60 OHM 0603 1LN

Inventory

161245 Pcs New Original In Stock
60 Ohms @ 100 MHz 1 Power Line Ferrite Bead 0603 (1608 Metric) 1.2A 100mOhm
Quantity
Minimum 1

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In Stock (All prices are in USD)
  • QTY Target Price Total Price
  • 4000 0.0195 78.0052
  • 8000 0.0183 146.0384
  • 12000 0.0173 207.0000
  • 28000 0.0158 443.6068
  • 100000 0.0158 1583.3200
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MPZ1608D600BTA00 Technical Specifications

Category Ferrite Beads and Chips

Manufacturer TDK

Packaging Tape & Reel (TR)

Series MPZ

Product Status Active

Filter Type Power Line

Number of Lines 1

Impedance @ Frequency 60 Ohms @ 100 MHz

Current Rating (Max) 1.2A

DC Resistance (DCR) (Max) 100mOhm

Ratings -

Operating Temperature -55°C ~ 125°C

Package / Case 0603 (1608 Metric)

Mounting Type Surface Mount

Height (Max) 0.037" (0.95mm)

Size / Dimension 0.063" L x 0.032" W (1.60mm x 0.80mm)

Datasheet & Documents

HTML Datasheet

MPZ1608D600BTA00-DG

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8548.00.0000

Additional Information

Other Names
445-MPZ1608D600BTA00TR
445-MPZ1608D600BTA00CT
-MPZ1608D600BTA00
MPZ1608D600B
-MPZ1608D600B
445-MPZ1608D600BTA00DKR
445-2987-1
-572-MPZ1608D600BTA00CT
445-2987-2
445-2987-6-DG
445-2987-2-DG
445-2987-1-DG
445-2987-6
Standard Package
4,000

Alternative Parts

PART NUMBER
MANUFACTURER
QUANTITY AVAILABLE
DiGi PART NUMBER
UNIT PRICE
SUBSTITUTE TYPE
PZ1608D750-1R0TF
Shenzhen Sunlord Electronics Co., Ltd.
993
PZ1608D750-1R0TF-DG
0.0158
Parametric Equivalent
HF30ACC453215-T
TDK Corporation
8406
HF30ACC453215-T-DG
0.0158
MFR Recommended
ACML-0603U-600-T
Abracon LLC
1028
ACML-0603U-600-T-DG
0.0158
Parametric Equivalent
UPZ1608G600-1R2TF
Shenzhen Sunlord Electronics Co., Ltd.
878
UPZ1608G600-1R2TF-DG
0.0158
Parametric Equivalent
MI0603J680R-00
Laird-Signal Integrity Products
882
MI0603J680R-00-DG
0.0158
Parametric Equivalent

Reviews

5.0/5.0-(Show up to 5 Ratings)
Séré***éPure
грудня 02, 2025
5.0
Je suis très satisfait de leur démarche durable dans l’emballage et la livraison.
Ambe***nset
грудня 02, 2025
5.0
Reliability and affordability make their offerings a smart buy.
Peace***Dreams
грудня 02, 2025
5.0
The website is packed with helpful features, making shopping easier.
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Frequently Asked Questions (FAQ)

What are the key design risks when using MPZ1608D600BTA00 for power rail filtering in high-current DC-DC converters?

When using the MPZ1608D600BTA00 in high-current DC-DC applications, the primary risk is impedance reduction under DC bias. Although the bead offers 60 Ohms @ 100 MHz, its impedance drops significantly as current approaches the 1.2A max rating due to ferrite core saturation. At 1A DC bias, effective impedance can fall below 30 Ohms, compromising high-frequency noise suppression. To mitigate this, verify actual operating current margins and consider parallel layouts or higher-rated alternatives like the BLM18AG600SN1D if sustained current exceeds 800mA. Thermal rise from DCR (100mOhm max) is typically low but should be checked in dense layouts with limited copper heatsinking.

Can MPZ1608D600BTA00 replace Murata BLM18BD601SN1D in existing 0603-footprint designs, and what are the trade-offs?

Yes, MPZ1608D600BTA00 can directly replace Murata BLM18BD601SN1D (600 Ohms @ 100 MHz) in 0603 SMT layouts, but critical trade-offs exist. The MPZ part offers lower impedance (60 Ohms vs 600 Ohms), making it suitable for power lines needing minimal insertion loss while suppressing moderate EMI. However, using MPZ1608D600BTA00 in a design originally relying on Murata's higher impedance may result in insufficient high-frequency noise filtering, especially above 50 MHz. Confirm with spectrum analysis on the target power rail. The MPZ part’s much lower DCR (100mOhm vs 700mOhm) benefits efficiency and thermal performance under load, so assess whether filtering depth or power integrity is the priority.

How does temperature affect the reliability and impedance stability of MPZ1608D600BTA00 in automotive-grade PCBs?

The MPZ1608D600BTA00 is rated for -55°C to 125°C, making it suitable for automotive environments, but impedance stability over temperature must be considered. Ferrite bead materials exhibit reduced permeability at high temperatures, causing impedance to drop by up to 20% at 125°C compared to room temperature. Additionally, prolonged exposure to temperatures near the upper limit may accelerate aging under high ripple current. Ensure derating: operate below 1A and verify performance over temperature via bench testing. Avoid placing near high-heat sources like power MOSFETs, as localized hot spots exceeding 125°C can lead to irreversible parametric shifts or solder joint fatigue.

What layout best practices minimize parasitic effects when integrating MPZ1608D600BTA00 on dense, high-speed digital boards?

To minimize parasitic coupling and maximize effectiveness of the MPZ1608D600BTA00 in high-speed designs, use symmetric, short, and wide PCB traces to reduce inductance and thermal resistance. Place the bead as close as possible to the noise source (e.g., DC-DC converter or IC VDD pin) and pair it with low-ESR ceramic decoupling capacitors (e.g., 10µF X5R + 100nF) on the load side. Avoid routing sensitive signals under or adjacent to the bead due to potential magnetic coupling. Given its 0603 size, ensure adequate copper land patterns per IPC-7351 to prevent tombstoning during reflow. Use ground vias near the capacitor pads to minimize loop area and improve high-frequency return paths.

Under what conditions might MPZ1608D600BTA00 fail prematurely in industrial control systems, and how can failure be prevented?

Premature failure of the MPZ1608D600BTA00 in industrial systems typically stems from electrical overstress or thermal cycling fatigue. Exceeding the 1.2A DC current limit—even intermittently—can cause localized heating and degrade the ferrite material over time. Repeated inrush currents (e.g., during system startup) accelerate this. Additionally, mechanical stress from board flexing or poor solder joints due to mismatched CTEs in large components can crack the monolithic structure. Prevent failure by derating current to ≤1A, adding soft-start circuitry, and ensuring compliance with MSL1 handling (though moisture resistance is excellent). Perform HALT (Highly Accelerated Life Testing) in rugged environments to validate long-term reliability.

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