Table of Contents
Table of Contents

VUO122-12NO7 Rectifier Module Datasheet & Specs

September 23, 2025

VUO122-12NO7

VUO122-12NO7 Overview

The VUO122-12NO7 is a three-phase rectifier bridge module manufactured in the ECO-PAC2 package. Designed with planar passivated chips and mounted on a DCB ceramic baseplate, the VUO122-12NO7 provides robust thermal performance, low forward voltage drop, and very low leakage current. With a repetitive reverse blocking voltage of 1200 V and an RMS current rating of 100 A, the VUO122-12NO7 is a reliable solution for DC power supplies, motor field supplies, and PWM inverter input stages.

Engineers value the VUO122-12NO7 for its improved temperature cycling capability, reduced weight, and industry-standard outline that simplifies system integration.

VUO122-12NO7 Key Features

Forward current vs. voltage drop characteristics of VUO122-12NO7 rectifier diode.

  • Repetitive Reverse Blocking Voltage (VRRM): 1200 V

  • RMS Current (IRMS): 100 A

  • Average Forward Current (IFAV): 125 A per terminal at TC = 85 °C

  • Surge Forward Current (IFSM): up to 1000 A at 10 ms (50 Hz sine)

  • Forward Voltage Drop (VF): typically 1.13 V at IF = 125 A, Tj = 25 °C

  • Very low leakage current at rated blocking voltage

  • Planar passivated chips for improved reliability

  • Isolation Voltage: 3000 V (50/60 Hz, RMS for 1 second)

  • Baseplate: DCB ceramic for superior heat dissipation

  • Mounting Torque: 1.4 Nm with M4 screws

  • Operating Junction Temperature Range: –40 °C to +150 °C

Applications of VUO122-12NO7

The VUO122-12NO7 is suitable for a wide range of industrial applications:

  • Three-phase diode rectification

  • Input rectifier for PWM inverters

  • Power supplies for DC equipment

  • Battery DC power supply systems

  • Field supply units for DC motors

Technical Specifications of VUO122-12NO7

ParameterValue
VRRM   (Repetitive Reverse Blocking Voltage)1200 V
IRMS   (RMS Current per terminal)100 A
IFAV   (Average Forward Current)125 A
IFSM   (Surge Forward Current, 10 ms, 50 Hz)1000 A
VF   (Forward Voltage Drop)1.13–1.49 V
Leakage Current   (IR)< 2 mA at VRRM,   Tj = 25 °C
RthJC   (Thermal Resistance, Junction–Case)0.6 K/W
RthCH   (Thermal Resistance, Case–Heatsink)0.3 K/W
Isolation Voltage3000 V~ (1 min)
Weight~24 g
PackageECO-PAC2

Package and Dimensions of VUO122-12NO7

Package and Dimensions of VUO122-12NO7

The VUO122-12NO7 comes in a low-profile ECO-PAC2 module outline. It has a height of 9 mm, is RoHS compliant, and includes soldering pins for PCB mounting. Dimensions:

  • Length ~51 mm

  • Width ~34.3 mm

  • Height ~20.3 mm

  • Terminal hole diameter Ø4.3 mm (for M4 screws)

Advantages and Disadvantages of VUO122-12NO7

Maximum forward current vs. case temperature curve of VUO122-12NO7 rectifier module.

AdvantagesDisadvantages / Considerations
High current capability (125 A   average) with compact ECO-PAC2 packageRequires efficient heatsinking for reliable continuous   operation
Very low forward voltage drop   reduces conduction lossesSurge current up to 1000 A is limited to short-time   conditions
Low leakage current at rated   blocking voltageForward voltage increases as junction temperature rises
Excellent thermal cycling   performance due to DCB ceramic baseplateMechanical stress possible if mounting torque is not applied   correctly
Isolation voltage of 3000 V   ensures safe system integrationOperates best within junction temperature ≤ 150 °C,   exceeding reduces lifespan

Issues and Solutions for VUO122-12NO7

Surge overload current vs. time curve of VUO122-12NO7 rectifier module.

  • Heat buildup under continuous load: Apply thermal grease and ensure correct mounting torque (1.4 Nm).

  • Overcurrent during startup: Limit inrush current with appropriate circuit design.

  • PCB mounting stress: Ensure correct soldering and screw torque to avoid mechanical stress on terminals.

  • Leakage at high temperature: Operate within recommended Tj ≤ 150 °C for reliable performance.


Equivalent Circuit of VUO122-12NO7

Equivalent circuit diagram of VUO122-12NO7 rectifier module showing six diodes in a three-phase bridge configuration.

The VUO122-12NO7 rectifier module integrates six diodes (D1–D6) connected in a standard three-phase bridge configuration. Terminals PS18, A1, L9, and K10 serve as AC inputs, while EG1 provides the DC output. This arrangement allows efficient three-phase AC to DC conversion, ensuring stable performance for power supplies, inverters, and motor drives. The circuit design minimizes forward losses and ensures robust operation under industrial load conditions.

Equivalent and Cross-Reference Models of VUO122-12NO7

The VUO122-12NO7 belongs to the ECO-PAC2 rectifier module family. Within this series, related models such as VUO160-12NO7 and VUO190-12NO7 share the same blocking voltage rating of 1200 V but differ in current handling capabilities. This makes them possible alternatives depending on the system’s current requirement.

Comparison Table

ParameterVUO122-12NO7VUO160-12NO7VUO190-12NO7
VRRM1200 V1200 V1200 V
I_DAV(Rectified Avg.)125 A175 A240 A
I_FSM(10 ms, 50 Hz)1000 A1800 A2800 A
r_F(mΩ)4.63.42.4
R_thJC(K/W)0.60.50.4
R_thCH(K/W)0.30.20.15

Conclusion

The VUO122-12NO7 is a robust three-phase rectifier bridge module with 1200 V blocking voltage and 125 A current capability. Its ECO-PAC2 package with a DCB ceramic base offers strong thermal performance, making it ideal for DC power supplies, inverters, and motor field supplies. With low conduction losses, high isolation voltage, and long-term reliability, the VUO122-12NO7 is a preferred choice for industrial rectification needs.

FAQs

+ What is the RMS current rating of the VUO122-12NO7?
It is rated at 100 A RMS per terminal.
+ What is the forward voltage drop of the VUO122-12NO7?
The typical forward voltage is around 1.13 V at 125 A, Tj = 25 °C.
+ What package is used for the VUO122-12NO7?
It comes in the ECO-PAC2 industry-standard outline with DCB ceramic base.
+ What is the maximum surge current of the VUO122-12NO7?
The module can handle up to 1000 A for 10 ms at Tj = 45 °C.
+ What isolation voltage does the VUO122-12NO7 provide?
The module is specified for 3000 V isolation for 1 minute.

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Becky Boresen
Becky Boresen is a senior electronics engineer specializing in switching components such as transistors, capacitors and connectors. During her career, she has been involved in developing several electronic projects and has successfully driven several technological innovations. She is passionate about continually learning about the latest trends in electrical technology to stay competitive in the industry.
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