BZX584C3_R1_00001 >
BZX584C3_R1_00001
Panjit International Inc.
SOD-523, ZENER
80430 Pcs New Original In Stock
Zener Diode 3 V 200 mW ±5% Surface Mount SOD-523
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BZX584C3_R1_00001 Panjit International Inc.
5.0 / 5.0 - (508 Ratings)

BZX584C3_R1_00001

Product Overview

12964598

DiGi Electronics Part Number

BZX584C3_R1_00001-DG
BZX584C3_R1_00001

Description

SOD-523, ZENER

Inventory

80430 Pcs New Original In Stock
Zener Diode 3 V 200 mW ±5% Surface Mount SOD-523
Quantity
Minimum 1

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In Stock (All prices are in USD)
  • QTY Target Price Total Price
  • 1 0.0288 0.0288
  • 200 0.0115 2.3000
  • 500 0.0112 5.6000
  • 1000 0.0110 11.0000
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BZX584C3_R1_00001 Technical Specifications

Category Diodes, Zener, Single Zener Diodes

Manufacturer PANJIT

Packaging Tape & Reel (TR)

Series BZX584C2V4

Product Status Active

Voltage - Zener (Nom) (Vz) 3 V

Tolerance ±5%

Power - Max 200 mW

Impedance (Max) (Zzt) 95 Ohms

Current - Reverse Leakage @ Vr 10 µA @ 1 V

Voltage - Forward (Vf) (Max) @ If 900 mV @ 10 mA

Operating Temperature -55°C ~ 150°C (TJ)

Mounting Type Surface Mount

Package / Case SC-79, SOD-523

Supplier Device Package SOD-523

Base Product Number BZX584

Datasheet & Documents

HTML Datasheet

BZX584C3_R1_00001-DG

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) 1 (Unlimited)
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8541.10.0050

Additional Information

Other Names
3757-BZX584C3_R1_00001DKR
3757-BZX584C3_R1_00001CT
3757-BZX584C3_R1_00001TR
Standard Package
5,000

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Reviews

5.0/5.0-(Show up to 5 Ratings)
Celes***lVibes
Dec 02, 2025
5.0
The staff's positive attitude makes shopping at DiGi Electronics a pleasure.
Whisp***ngWind
Dec 02, 2025
5.0
We are always impressed by how rapidly DiGi Electronics addresses our after-sales questions.
Cryst***lance
Dec 02, 2025
5.0
The checkout process is straightforward and hassle-free, saving me time.
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Frequently Asked Questions (FAQ)

Can the BZX584C3_R1_00001 be safely used for voltage regulation in low-power 3.3V microcontroller circuits, and what are the key design-in risks with its 95 Ohm impedance at low current?

Yes, the BZX584C3_R1_00001 can be used in low-power 3.3V regulation, but its high Zzt (95 Ohm max) means poor regulation under dynamic load conditions. Ensure the operating current stays within 5–10 mA to minimize voltage drift. Use a series resistor carefully sized to maintain Iz near typical test current (5 mA) while avoiding thermal overload in the 200 mW SOD-523 package. Consider adding a bypass capacitor to reduce noise due to impedance variation.

How does the BZX584C3_R1_00001 compare to the SZMM5Z3V0T1G when replacing in an existing design, and are there any layout or thermal concerns?

The BZX584C3_R1_00001 and SZMM5Z3V0T1G both offer 3V Zener voltage and SOD-523 packaging, but the BZX584C3_R1_00001 has a tighter impedance (95 Ohm vs. 100 Ohm) and slightly better leakage (10 µA @ 1 V). However, thermal dissipation is limited due to the same 200 mW rating. Ensure PCB pad design follows Panjit’s recommended thermal footprint; thermal vias may be needed if ambient exceeds 85°C to avoid premature aging or voltage drift.

What reliability risks should I consider when using the BZX584C3_R1_00001 in automotive applications with operating temperatures up to 125°C?

The BZX584C3_R1_00001 supports up to 150°C TJ, making it suitable for automotive environments, but derate power to 120 mW above 75°C to ensure long-term reliability. Avoid sustained operation above 10 mA to prevent thermal runaway in enclosed assemblies. Monitor reverse leakage, as elevated temperatures can increase it beyond 10 µA, affecting reference stability in precision circuits.

Is the BZX584C3_R1_00001 a viable drop-in replacement for BZT52C3V0K RKG in space-constrained wearable designs, and how do their forward voltage characteristics impact reverse-biased sensor biasing?

Yes, the BZX584C3_R1_00001 is a functional replacement for BZT52C3V0K RKG in wearables with identical SOD-523 footprint and ±5% tolerance. However, verify forward voltage drop—900 mV max @ 10 mA for BZX584C3_R1_00001—which affects forward-conduction during transients. In sensor biasing applications, ensure the microcontroller's pull-down strength overcomes forward conduction to avoid false states during power cycling.

What are the risks of using the BZX584C3_R1_00001 in high-humidity environments despite its MSL1 rating, and how can I mitigate long-term parameter drift?

Although the BZX584C3_R1_00001 has MSL1 (unlimited floor life), prolonged exposure to high humidity (>85% RH) can lead to surface leakage and parameter drift, especially with flux residues. Mitigate by using conformal coating, ensuring clean no-clean flux removal, and incorporating guard rings in PCB layout. Avoid condensation in outdoor enclosures even with RoHS3 compliance, as moisture ingress can degrade Zener performance over time.

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