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                About information presented in this cross reference

                The information presented in this cross reference is based on TOSHIBA's selection criteria and should be treated as a suggestion only. Please carefully review the latest versions of all relevant information on the TOSHIBA products, including without limitation data sheets and validate all operating parameters of the TOSHIBA products to ensure that the suggested TOSHIBA products are truly compatible with your design and application.
                Please note that this cross reference is based on TOSHIBA's estimate of compatibility with other manufacturers' products, based on other manufacturers' published data, at the time the data was collected.
                TOSHIBA is not responsible for any incorrect or incomplete information. Information is subject to change at any time without notice.

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                有助于提高电源PFC效率的650V SiC SBD产品线扩展:TRS12N65FB,TRS16N65FB,TRS20N65FB,TRS24N65FB

                Product News 2020-07

                The package photograph of lineup expansion of SiC SBDs of 650 V contributing to high efficiency of power supply PFCs : TRS12N65FB, TRS16N65FB, TRS20N65FB, TRS24N65FB.

                Toshiba Electronic Devices & Storage Corporation ("Toshiba") has launched four 650 V Schottky Barrier Diode (SBD) products to expand its lineup : “TRS12N65FB,” “TRS16N65FB,” “TRS20N65FB,” and “TRS24N65FB” that use SiC (Silicon Carbide), a new material allowing higher efficiency of power supply PFCs (Power Factor Corrections). They use the TO-247 package and offer four forward DC current ratings (Both Legs) - 12 A, 16 A, 20 A, and 24 A - supporting increase of power of equipment.
                The new products are Toshiba’s second-generation SiC SBDs with the improved JBS (Junction Barrier controlled Schottky) structure. They feature high surge current capability and low-loss characteristics, with a non-repetitive peak forward surge current rating (Per Leg) of 92 A[1], about 53 %[2] improvement, and typical forward voltage (Pre Leg) of 1.45 V, about 6 %[2] reduction compared with our first-generation products. These features allow higher efficiency and larger margins in thermal design of equipment.

                Toshiba will expand lineup in the future and contribute to higher efficiency and downsizing of communications equipment, servers, inverters, and other products.

                Notes :
                [1] Case of TRS24N65FB
                [2] TRS24N65FB is compared with TRS24N65D

                Features

                • High non-repetitive peak forward surge current ratings :
                    IFSM (Per Leg) / (Both Legs)=52 A / 104 A (TRS12N65FB)
                    IFSM (Per Leg) / (Both Legs)=65 A / 130 A (TRS16N65FB)
                    IFSM (Per Leg) / (Both Legs)=79 A / 158 A (TRS20N65FB)
                    IFSM (Per Leg) / (Both Legs)=92 A / 184 A (TRS24N65FB)
                • Low forward voltage :
                    VF (Per Leg)=1.45 V (typ.) @IF=6 A (TRS12N65FB)
                    VF (Per Leg)=1.45 V (typ.) @IF=8 A (TRS16N65FB)
                    VF (Per Leg)=1.45 V (typ.) @IF=10 A (TRS20N65FB)
                    VF (Per Leg)=1.45 V (typ.) @IF=12 A (TRS24N65FB)

                Applications

                • Power supplies for industrial equipment
                  (base stations, PC servers, power supplying facilities for electric vehicles and laser beam machines, etc.)
                • Power supplies for consumer equipment
                  (organic EL-TVs, audio amplifiers, projectors and multi-function printers, etc.

                Product Specifications

                (Unless otherwise specified, @Ta=25 °C)

                Part number TRS12N65FB TRS16N65FB TRS20N65FB TRS24N65FB
                Packages TO-247
                Absolute
                maximum
                ratings
                Repetitive peak
                reverse voltage
                VRRM (V)
                650
                Forward DC
                current
                IF(DC) (A)
                Both
                Legs
                12 16 20 24
                Non-repetitive
                peak forward
                surge current
                IFSM (A)
                @t=10 ms
                Per
                Leg
                52 65 79 92
                Both
                Legs
                104 130 158 184
                Junction temperature
                Tj (°C)
                175
                Reverse current
                IR typ. (μA)
                @VR=650 V
                Per
                Leg
                0.3 0.4 0.5 0.6
                Forward voltage
                VF typ. (V)
                Per
                Leg
                  1.45
                @IF (A) 6 8 10 12
                Total junction
                capacitive charge
                Qcj typ. (nC)
                @VR=0.1 to 400 V
                Per
                Leg
                15 19.4 24 30
                Thermal resistance
                (junction-to-case)
                Rth(j-c) max (°C/W)
                @Tc=25 °C
                Per
                Leg
                2.2 1.8 1.4 1.3
                Both
                Legs
                1.1 0.9 0.7 0.65

                Internal Circuit

                The illustration of internal circuit of lineup expansion of SiC SBDs of 650 V contributing to high efficiency of power supply PFCs : TRS12N65FB, TRS16N65FB, TRS20N65FB, TRS24N65FB.

                Application Circuit Example

                The illustration of application circuit example of lineup expansion of SiC SBDs of 650 V contributing to high efficiency of power supply PFCs : TRS12N65FB, TRS16N65FB, TRS20N65FB, TRS24N65FB.

                The application circuits shown in this document are provided for reference purposes only. Thorough evaluation is required, especially at the mass-production design stage. Providing these application circuit examples does not grant any license for industrial property rights.

                Information in this document, including product prices and specifications, content of services and contact information, is correct on the date of the announcement but is subject to change without prior notice.

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