ER1604FCT_T0_00001 >
ER1604FCT_T0_00001
Panjit International Inc.
DIODE ARRAY GP 400V 16A ITO220AB
6220 Pcs New Original In Stock
Diode Array 1 Pair Common Cathode 400 V 16A Through Hole TO-220-3 Full Pack
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ER1604FCT_T0_00001 Panjit International Inc.
5.0 / 5.0 - (216 Ratings)

ER1604FCT_T0_00001

Product Overview

12965300

DiGi Electronics Part Number

ER1604FCT_T0_00001-DG
ER1604FCT_T0_00001

Description

DIODE ARRAY GP 400V 16A ITO220AB

Inventory

6220 Pcs New Original In Stock
Diode Array 1 Pair Common Cathode 400 V 16A Through Hole TO-220-3 Full Pack
Quantity
Minimum 1

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In Stock (All prices are in USD)
  • QTY Target Price Total Price
  • 1 0.2952 0.2952
  • 200 0.1178 23.5600
  • 500 0.1139 56.9500
  • 1000 0.1119 111.9000
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ER1604FCT_T0_00001 Technical Specifications

Category Diodes, Rectifiers, Diode Arrays

Manufacturer PANJIT

Packaging Tube

Series -

Product Status Active

Diode Configuration 1 Pair Common Cathode

Technology Standard

Voltage - DC Reverse (Vr) (Max) 400 V

Current - Average Rectified (Io) (per Diode) 16A

Voltage - Forward (Vf) (Max) @ If 1.3 V @ 8 A

Speed Fast Recovery =< 500ns, > 200mA (Io)

Reverse Recovery Time (trr) 35 ns

Current - Reverse Leakage @ Vr 1 µA @ 400 V

Operating Temperature - Junction -55°C ~ 150°C

Mounting Type Through Hole

Package / Case TO-220-3 Full Pack

Supplier Device Package ITO-220AB

Base Product Number ER1604

Datasheet & Documents

Environmental & Export Classification

RoHS Status ROHS3 Compliant
Moisture Sensitivity Level (MSL) Not Applicable
REACH Status REACH Unaffected
ECCN EAR99
HTSUS 8541.10.0080

Additional Information

Other Names
3757-ER1604FCT_T0_00001
Standard Package
50

Reviews

5.0/5.0-(Show up to 5 Ratings)
구***름
грудня 02, 2025
5.0
제품 구매 후 지원이 뛰어나서 업무에 큰 도움을 받고 있습니다.
青***リエ
грудня 02, 2025
5.0
商品の発送が早く、すぐに受け取ることができました。品質も素晴らしいです。
Sere***ySea
грудня 02, 2025
5.0
Reliability is key for my gaming rig, and DiGi Electronics never lets me down.
Vast***izons
грудня 02, 2025
5.0
DiGi Electronics’ prices are very competitive, and their after-sales service is unmatched.
Clea***ySoul
грудня 02, 2025
5.0
I've been impressed with how quickly their support team resolves issues after purchase.
Dre***aves
грудня 02, 2025
5.0
Their products are meticulously crafted, ensuring they withstand the rigors of any DIY project.
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Frequently Asked Questions (FAQ)

What are the key thermal design considerations when using the ER1604FCT_T0_00001 in a high-current rectifier application?

When using the ER1604FCT_T0_00001 in high-current applications near its 16A Io limit, effective thermal management is critical due to its TO-220AB through-hole package. Without adequate heatsinking, junction temperatures can exceed 150°C even at moderate ambient temperatures. Designers should use a thermal pad or mounting compound and ensure sufficient copper area on the PCB. For continuous operation above 10A, forced airflow or an external heatsink is strongly recommended to maintain reliability and prevent premature aging or thermal runaway.

Can the ER1604FCT_T0_00001 replace the MB16S in a compact power supply design, and what are the integration risks?

While both the ER1604FCT_T0_00001 and MB16S are 16A common-cathode diode arrays, they differ in package and thermal performance. The ER1604FCT_T0_00001 uses a full-pack TO-220AB with exposed metal tab, offering better heat dissipation than the MB16S's smaller bridge-style package. However, the TO-220AB requires more PCB space and through-hole mounting, which may complicate automated assembly. Ensure mechanical compatibility and verify that the layout can accommodate the larger footprint and insulation requirements if replacing MB16S.

How does the 35ns reverse recovery time of the ER1604FCT_T0_00001 impact EMI performance in switch-mode power supplies?

With a trr of 35ns, the ER1604FCT_T0_00001 is classified as fast recovery and suitable for switch-mode applications up to ~100kHz. However, this speed may generate higher voltage spikes and EMI compared to ultra-fast or SiC diodes, especially in hard-switching topologies. To mitigate noise, use close-coupled snubber circuits, minimize trace inductance, and consider ferrite beads on the output. In high-frequency designs (>150kHz), consider replacing the ER1604FCT_T0_00001 with a device like STTH16R06D for lower EMI and switching losses.

What PCB layout practices should be followed to ensure long-term reliability of the ER1604FCT_T0_00001 under repeated thermal cycling?

For long-term reliability of the ER1604FCT_T0_00001 under thermal cycling, use wide copper traces (≥5mm) for anode and cathode connections to improve heat spreading and reduce thermal stress. Place mounting holes carefully to avoid mechanical strain on solder joints. Avoid placing the ER1604FCT_T0_00001 near other high-dissipation components to prevent localized hot spots. Consider edge-plated vias or thermal relief patterns for the central tab to enhance durability. Always torque the mounting screw to manufacturer specs (typically 0.6–0.8 N·m) to maintain consistent thermal contact without cracking the package.

How does leakage current at elevated temperatures affect the ER1604FCT_T0_00001 in standby or low-load power circuits?

The ER1604FCT_T0_00001 is rated for 1µA max reverse leakage at 400V and 25°C, but leakage can increase exponentially with temperature—potentially reaching tens of µA at 125°C junction temperature. In standby or low-load applications, this increased leakage can degrade efficiency and cause unexpected power draw or voltage droop. To manage this, ensure ambient temperatures near the ER1604FCT_T0_00001 are minimized, and consider using a series blocking MOSFET in ultra-low-power modes to isolate the rectifier stage during idle periods.

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