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SMBJ60CA TVs Diodes: System, Pinout, and Datasheet

TVS - Diodes TVS DIODE 60V 96.8V DO214AA The SMBJ60CA is a Transient Voltage Suppression Diode.

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Dec 14, 2021

Regina Foster

How TVS Diodes work

 

TVS - Diodes TVS DIODE 60V 96.8V DO214AA

The SMBJ60CA is a Transient Voltage Suppression Diode. This article mainly introduces system, pinout, datasheet and other detailed information about Littelfuse Inc. SMBJ60CA.

SMBJ60CA

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SMBJ60CA Description

The SMBJ60CA  was created to safeguard sensitive electronic equipment against voltage transients such as those caused by lightning and other transient voltage events.

The SMBJ series is designed to safeguard sensitive equipment from electrostatic discharges and electrical overstress according to  IEC  61000-4-2 and  MIL-STD 883 , method 3015, and IEC 61000-4-4 and 5. Surges of less than 600 W (10/1000 s) are more commonly encountered with this device. Planar technology allows it to be used in high-end equipment and SMPS where low leakage current and high junction temperature are required for long-term reliability and stability.

The SMBJ series comes in SMB packaging.

 

SMBJ60CA Pinout

The following figure is SMBJ60CA Pinout.

SMBJ60CA CAD Model

The followings are SMBJ60CA Symbol, Footprint and 3D Model.

Symbol

Footprint

3D Model

SMBJ60CA Features

• 600W peak pulse power capability at 10/1000μs waveform, repetition rate (duty cycles):0.01%

• Excellent clamping capability

• Low incremental surge resistance

• Typical IR less than 1μA when VBR min>12V

• For surface mounted applications to optimize board space

• Low profile package

• Typical failure mode is a short circuit condition for current events exceeding the component rating

• Whisker test is conducted based on  JEDEC 

JESD201A per its table 4a and 4c

• IEC-61000-4-2 ESD 30kV(Air), 30kV (Contact)

• EFT protection of data lines in accordance with  IEC  61000-4-4

• Built-in strain relief

• Fast response time: typically less than 1.0ps from 0V to BV min

• High temperature to reflow soldering guaranteed: 260°C/40sec

• VBR @ TJ= VBR@25°C x (1+αT x (TJ - 25))(αT:Temperature  Coefficient, typical value is 0.1%)

• Plastic package is flammability rated V-0 per UL-94

• Meet MSL level1, per J-STD-020, lead-frame maximum peak of 260°C

• Matte tin lead–free plated

• Halogen-free and  RoHS  compliant

• Pb-free E3 means 2nd level interconnect is Pb-free and the terminal finish material is tin(Sn) (IPC/JEDEC J-STD-609A.01)

• Glass passivated junction

• Low incremental surge resistance, excellent clamping capability

• Very fast response time

• -55 to 150°C Operating temperature range

Specifications

Littelfuse Inc. SMBJ60CA technical specifications, attributes, parameters and parts with similar specifications to Littelfuse Inc. SMBJ60CA.

SMBJ60CA Tech Specifications

Littelfuse Inc. SMBJ60CA technical specifications, attributes, parameters and parts with similar specifications to Littelfuse Inc. SMBJ60CA.

Product Attribute Attribute Value
Factory Lead Time17 Weeks
Mounting TypeSurface Mount
Package / CaseDO-214AA, SMB
Number of Pins2Pins
Supplier Device PackageDO-214AA (SMBJ)
Manufacturer Package IdentifierSMB J-Bend
Breakdown Voltage / V66.7V
Operating Temperature-65°C~150°C TJ
PackagingTape & Reel (TR)
SeriesSMBJ
Product Attribute Attribute Value
Published2009
Part StatusActive
Moisture Sensitivity Level (MSL)1 (Unlimited)
TypeZener
Max Operating Temperature150°C
Min Operating Temperature-55°C
ApplicationsGeneral Purpose
Power Rating600W
Voltage - Rated DC60V
Power Line ProtectionNo
Product Attribute Attribute Value
Voltage - Breakdown (Min)66.7V
Power - Peak Pulse600W
Current - Peak Pulse (10/1000μs)6.2A
Voltage - Clamping (Max) @ Ipp96.8V
Voltage - Reverse Standoff (Typ)60V
Bidirectional Channels1
RoHS StatusROHS3 Compliant
Lead FreeLead Free
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SMBJ60CA Part Numbering System

The following shows SMBJ60CA Part Numbering System.

Part Numbering System

SMBJ60CA Part Marking System

The following figure is SMBJ60CA Part Marking System.

Part Marking System

SMBJ60CA Functional Diagram

The following figure is SMBJ60CA Functional Diagram.

Functional Diagram

SMBJ60CA Alternatives

Part Number Description Manufacturer
1SMB60CADIODES 600W, BIDIRECTIONAL, SILICON, TVS DIODE, CASE 403A-03, SMB, 2 PIN Motorola Mobility LLC
SMBJ60CAHM4DIODES Trans Voltage Suppressor Diode, 600W, 60V V(RWM), Bidirectional, 1 Element, Silicon, DO-214AA, ROHS COMPLIANT, PLASTIC, SMB, 2 PIN Taiwan Semiconductor
SMBJ60CA-5B-E3DIODES DIODE 600 W, BIDIRECTIONAL, SILICON, TVS DIODE, DO-214AA, PLASTIC, SMB, 2 PIN, Transient Suppressor Vishay Semiconductors
SMBJ60CA/TR13DIODES Trans Voltage Suppressor Diode, YAGEO Corporation
SMBJ60CHR5GDIODES Trans Voltage Suppressor Diode, 600W, 60V V(RWM), Bidirectional, 1 Element, Silicon, DO-214AA, SMB, 2 PIN Taiwan Semiconductor
P6SMBJ60CADIODES Trans Voltage Suppressor Diode, 600W, 60V V(RWM), Bidirectional, 1 Element, Silicon, DO-214AA, PLASTIC, SMB, 2 PIN SEMIKRON
P6SMBJ60CATRFDIODES Trans Voltage Suppressor Diode, 600W, 60V V(RWM), Bidirectional, 1 Element, Silicon, DO-214AA, PLASTIC PACKAGE-2 World Products Inc
P6SMBJ60CA-T3-LFDIODES Trans Voltage Suppressor Diode, 600W, 60V V(RWM), Bidirectional, 1 Element, Silicon, DO-214AA, ROHS COMPLIANT, PLASTIC, SMB, 2 PIN Won-Top Electronics Co Ltd
P6SMBJ60CA_R1_00001DIODES Trans Voltage Suppressor Diode, 600W, 60V V(RWM), Bidirectional, 1 Element, Silicon, DO-214AA, SMB, 2 PIN PanJit Semiconductor
TFMBJ60CA-WDIODES Trans Voltage Suppressor Diode, 600W, Bidirectional, 1 Element, Silicon, DO-214AA, PLASTIC PACKAGE-2 Rectron Semiconductor

SMBJ60CA Applications

• The Protection of I/O Interfaces

• VCC Bus

• Other Vulnerable Circuits Used in Telecom

• Computer

• Industrial

• Consumer Electronic Applications

SMBJ60CA Package

The following figure shows SMBJ60CA Package.

Package

SMBJ60CA Manufacturer

Littelfuse, Inc. is an electronic manufacturing company situated in Chicago, Illinois. The company's major focus is circuit protection, although it also develops electronic switches and car sensors. Littelfuse first opened its doors in 1927. In addition to its world headquarters in Chicago, Illinois, Littelfuse has more than 40 sales, distribution, production, and engineering offices throughout the Americas, Europe, and Asia.

Datasheet PDF

SMBJ60CA Documents

Download datasheets and manufacturer documentation for SMBJ60CA

Frequently Asked Questions

How does a transient voltage suppressor diode work?
Transient Voltage Suppressor Diode is a clamping device, so whenever the induced voltage exceeds the avalanche breakdown voltage, it absorbs the excess energy of the overvoltage event, and then it automatically resets after overvoltage condition.
Where should a TVS diode be placed?
Place TVs diode near the edge of the PCB. To enable the excessive surge current to be channeled to the chassis ground before damaging the transceiver, the placement of the TVS diode is also important. It is a good practice to place TVS diodes as close to the edge of the board as possible.
Does TVS diode have polarity?
The -C and -CA diodes are bidirectional, there is no polarity marker. On unidirectional diodes, the color band usually denotes the cathode.
How do you specify a TVS diode?
1. Select a diode with a standoff voltage that is higher than the normal operating voltage. Ensure that the TVS diode maximum clamping voltage is less than the abs max rating of all the devices on the line to be protected. It is important to consider operation during both the transient event (a higher conduction current will result in a higher clamping voltage, for example) and during normal operation when a transient event is not present. 2. Verify that the specified peak current exceeds the expected peak current. Ensure that the diode is specified to handle the required power during a transient event. Diodes that are too small, or are not designed for a given current, may fail and cause the circuit to be destroyed during a surge or EFT event. 3. Calculate the maximum clamping voltage (VCL) of the selected diode. TVS diode datasheets typically list the VCL for a given IPP in the part selection table. For other peak pulse currents, however, this VCL may not be valid. To accommodate other IPP values, the TVS diode manufacturer gives a formula in the datasheet to calculate the VCL. Use this formula to calculate the VCL for a given IPP. 4. Confirm that the calculated VCL is less than the specified abs max rating for the pin.
FAQ
How does a transient voltage suppressor diode work?
Transient Voltage Suppressor Diode is a clamping device, so whenever the induced voltage exceeds the avalanche breakdown voltage, it absorbs the excess energy of the overvoltage event, and then it automatically resets after overvoltage condition.
Where should a TVS diode be placed?
Place TVs diode near the edge of the PCB. To enable the excessive surge current to be channeled to the chassis ground before damaging the transceiver, the placement of the TVS diode is also important. It is a good practice to place TVS diodes as close to the edge of the board as possible.
Does TVS diode have polarity?
The -C and -CA diodes are bidirectional, there is no polarity marker. On unidirectional diodes, the color band usually denotes the cathode.
How do you specify a TVS diode?
1. Select a diode with a standoff voltage that is higher than the normal operating voltage. Ensure that the TVS diode maximum clamping voltage is less than the abs max rating of all the devices on the line to be protected. It is important to consider operation during both the transient event (a higher conduction current will result in a higher clamping voltage, for example) and during normal operation when a transient event is not present. 2. Verify that the specified peak current exceeds the expected peak current. Ensure that the diode is specified to handle the required power during a transient event. Diodes that are too small, or are not designed for a given current, may fail and cause the circuit to be destroyed during a surge or EFT event. 3. Calculate the maximum clamping voltage (VCL) of the selected diode. TVS diode datasheets typically list the VCL for a given IPP in the part selection table. For other peak pulse currents, however, this VCL may not be valid. To accommodate other IPP values, the TVS diode manufacturer gives a formula in the datasheet to calculate the VCL. Use this formula to calculate the VCL for a given IPP. 4. Confirm that the calculated VCL is less than the specified abs max rating for the pin.

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