APT1002RBNR Specs and Replacement

Type Designator: APT1002RBNR

Type of Transistor: MOSFET

Type of Control Channel: N-Channel

Absolute Maximum Ratings

Pd ⓘ - Maximum Power Dissipation: 240 W

|Vds|ⓘ - Maximum Drain-Source Voltage: 1000 V

|Vgs|ⓘ - Maximum Gate-Source Voltage: 20 V

|Id| ⓘ - Maximum Drain Current: 7 A

Tj ⓘ - Maximum Junction Temperature: 150 °C

Electrical Characteristics

tr ⓘ - Rise Time: 13 nS

Cossⓘ - Output Capacitance: 235 pF

RDSonⓘ - Maximum Drain-Source On-State Resistance: 2 Ohm

Package: TO-247

APT1002RBNR substitution

- MOSFET ⓘ Cross-Reference Search

 

APT1002RBNR datasheet

 6.1. Size:49K  apt
apt1002rcn.pdf pdf_icon

APT1002RBNR

D TO-254 G APT1002RCN 1000V 5.5A 2.00 S TM POWER MOS IV N - CHANNEL ENHANCEMENT MODE HIGH VOLTAGE POWER MOSFETS MAXIMUM RATINGS All Ratings TC = 25 C unless otherwise specified. Symbol Parameter APT1002RCN UNIT VDSS Drain-Source Voltage 1000 Volts ID Continuous Drain Current @ TC = 25 C 5.5 Amps IDM Pulsed Drain Current 1 22 VGS Gate-Source Voltage 30 Volts Total Powe... See More ⇒

 6.2. Size:50K  apt
apt1002r4bn.pdf pdf_icon

APT1002RBNR

D TO-247 G APT1002RBN 1000V 7.0A 2.00 S APT1002R4BN 1000V 6.5A 2.40 POWER MOS IV N- CHANNEL ENHANCEMENT MODE HIGH VOLTAGE POWER MOSFETS MAXIMUM RATINGS All Ratings TC = 25 C unless otherwise specified. APT APT Symbol Parameter 1002RBN 1002R4BN UNIT VDSS Drain-Source Voltage 1000 1000 Volts ID Continuous Drain Current @ TC = 25 C 7.0 6.5 Amps IDM Pulsed Drain Current 1... See More ⇒

 7.1. Size:73K  apt
apt10025jvfr.pdf pdf_icon

APT1002RBNR

... See More ⇒

Detailed specifications: SIRA14DP, SIRA18DP, APT1001R6BFLLG, APT1001R6SFLLG, APT1001RSVFR, APT1001RSVRG, APT10026L2FLLG, APT1002R4BNR, IRF740, APT10030L2VFRG, APT10035B2FLLG, APT10035B2LLG, APT10035LFLLG, APT10035LLLG, APT1003RBFLLG, APT1003RBLLG, APT1003RKFLLG

Keywords - APT1002RBNR MOSFET specs

 APT1002RBNR cross reference

 APT1002RBNR equivalent finder

 APT1002RBNR pdf lookup

 APT1002RBNR substitution

 APT1002RBNR replacement

Can't find your MOSFET? Learn how to find a substitute transistor by analyzing voltage, current and package compatibility