TN2540 SUTEX | Alldatasheet

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Technical content

Features

❏ Low threshold — 2.0V max. ❏ High input impedance ❏ Low input capacitance — 125pF max. ❏ Fast switching speeds ❏ Low on resistance ❏ Free from secondary breakdown ❏ Low input and output leakage ❏ Complementary N- and P-channel devices Absolute Maximum Ratings Drain-to-Source Voltage BV DSS Drain-to-Gate Voltage BV DGS Gate-to-Source Voltage ± 20V Operating and Storage Temperature -55 °C to +150°C Soldering Temperature* 300 °C * Distance of 1.6 mm from case for 10 seconds. BVDSS /R DS(ON) VGS(th) ID(ON) BVDGS (max) (max) (min) TO-92 TO-243AA* Die † 400V 12 Ω 2.0V 1.0A TN2540N3 TN2540N8 TN2540ND * Same as SOT-89. Product supplied on 2000 piece carrier tape reels. † MIL visual screening available. Order Number / Package

Applications

❏ Logic level interfaces – ideal for TTL and CMOS ❏ Solid state relays ❏ Battery operated systems ❏ Photo voltaic drives ❏ Analog switches ❏ General purpose line drivers ❏ Telecom switches Package Options Note: See Package Outline section for dimensions. Low Threshold DMOS Technology These low threshold enhancement-mode (normally-off) transis- tors utilize a vertical DMOS structure and Supertex's well-proven silicon-gate manufacturing process. This combination produces devices with the power handling capabilities of bipolar transistors and with the high input impedance and positive temperature coefficient inherent in MOS devices. Characteristic of all MOS structures, these devices are free from thermal runaway and thermally induced secondary breakdown. Supertex’s vertical DMOS FETs are ideally suited to a wide range of switching and amplifying applications where very low threshold voltage, high breakdown voltage, high input impedance, low input capacitance, and fast switching speeds are desired. TO-243AA (SOT-89) G D S D S G D TO-92 Product marking for TO-243AA Where ❋ = 2-week alpha date code TN5D❋

90% 10% 90% 90% 10%10% PULSE GENERATOR VDD RL OUTPUT D.U.T. t(ON) td(ON) t(OFF) td(OFF) tFtr INPUT INPUT OUTPUT 10V VDD Rgen Symbol Parameter Min Typ Max Unit Conditions BVDSS

400 V V GS = 0V, ID = 100µA

VGS(th) Gate Threshold Voltage 0.6 2.0 V V GS = VDS, ID= 1mA ∆VGS(th) Change in VGS(th) with Temperature -2.5 -4.0 mV/ °CV GS = VDS, ID= 1mA IGSS Gate Body Leakage 100 nA V GS = ± 20V, VDS = 0V IDSS Zero Gate Voltage Drain Current 10 µAV GS = 0V, VDS = Max Rating 1.0 mA V GS = 0V, VDS = 0.8 Max Rating TA = 125°C ID(ON) ON-State Drain Current 0.3 0.5 V GS = 4.5V, VDS = 25V 0.75 1.0 V GS = 10V, VDS = 25V RDS(ON) 8.0 12 V GS = 4.5V, ID = 150mA 8.0 12 V GS = 10V, ID = 500mA ∆RDS(ON) Change in RDS(ON) with Temperature 0.75 %/ °CV GS = 10V, ID = 500mA GFS Forward Transconductance 125 200 m V DS = 25V, ID = 100mA CISS Input Capacitance 95 125 COSS Common Source Output Capacitance 20 70 pF CRSS Reverse Transfer Capacitance 10 25 td(ON) Turn-ON Delay Time 20 tr Rise Time 15 td(OFF) Turn-OFF Delay Time 25 tf Fall Time 20 VSD Diode Forward Voltage Drop 1.8 V V GS = 0V, ISD = 200mA trr Reverse Recovery Time 300 ns V GS = 0V, ISD = 1A Notes: 2. All A.C. parameters sample tested. A Thermal Characteristics Switching Waveforms and Test Circuit Drain-to-Source Breakdown Voltage VGS = 0V, VDS = 25V f = 1 MHz VDD = 25V, ID = 1A, RGEN = 25Ω ns Static Drain-to-Source ON-State Resistance Package I D (continuous)* I D (pulsed) Power Dissipation θjc θja IDR*I DRM @ TA = 25°C °C/W °C/W TO-92 175mA 2.0A 1.0W 125 170 175mA 2.0A TO-243AA 260mA 1.8A 1.6W † 15 78 † 260mA 1.8A * ID (continuous) is limited by max rated Tj. † Mounted on FR5 board, 25mm x 25mm x 1.57mm. Significant PD increase possible on ceramic substrate. Electrical Characteristics (@ 25°C unless otherwise specified) Ω Ω

Typical Performance Curves /K4F/K75/K74/K70/K75/K74 /K43/K68/K61/K72/K61/K63/K74/K65/K72/K69/K73/K74/K69/K63/K73 /K32/K2E/K30 /K31/K2E/K36 /K31/K2E/K32 /K30/K2E/K38 /K30/K2E/K34 /K30 /K30/K31 /K30 /K32 /K30 /K33 /K30 /K35 /K30 /K34/K30 /K56 /K44/K53 /K28/K76/K6F/K6C/K74/K73/K29 /K53/K61/K74/K75/K72/K61/K74/K69/K6F/K6E /K43/K68/K61/K72/K61/K63/K74/K65/K72/K69/K73/K74/K69/K63/K73 /K31/K2E/K30 /K30/K2E/K38 /K30/K2E/K36 /K30/K2E/K34 /K30/K2E/K32 /K30/K32 /K34 /K36 /K31 /K30 /K38 /K56 /K44/K53 /K28/K76/K6F/K6C/K74/K73/K29 /K56 /K44/K53 /K28/K76/K6F/K6C/K74/K73/K29 /K49 /K44 /K28/K61/K6D/K70/K65/K72/K65/K73/K29 /K49 /K44 /K28/K61/K6D/K70/K65/K72/K65/K73/K29 /K4D/K61/K78/K69/K6D/K75/K6D /K52/K61/K74/K65/K64 /K53/K61/K66/K65 /K4F/K70/K65/K72/K61/K74/K69/K6E/K67 /K41/K72/K65/K61 /K31 /K31/K30/K30/K30/K31/K30/K30/K31/K30 /K30/K2E/K31 /K31/K2E/K30 /K31/K30 /K30/K2E/K30/K31 /K56 /K49 /K44 /K28/K61/K6D/K70/K65/K72/K65/K73/K29 /K54/K68/K65/K72/K6D/K61/K6C /K52/K65/K73/K70/K6F/K6E/K73/K65 /K43/K68/K61/K72/K61/K63/K74/K65/K72/K69/K73/K74/K69/K63/K73 /K54/K68/K65/K72/K6D/K61/K6C /K52/K65/K73/K69/K73/K74/K61/K6E/K63/K65 /K28/K6E/K6F/K72/K6D/K61/K6C/K69/K7A/K65/K64/K29 /K31/K2E/K30 /K30/K2E/K38 /K30/K2E/K36 /K30/K2E/K34 /K30/K2E/K32 /K30/K2E/K30/K30/K31 /K31/K30 /K30/K2E/K30/K31 /K30/K2E/K31 /K31 /K74 /K70 /K28/K73/K65/K63/K6F/K6E/K64/K73/K29 /K54/K72/K61/K6E/K73/K63/K6F/K6E/K64/K75/K63/K74/K61/K6E/K63/K65 /K76/K73/K2E /K44/K72/K61/K69/K6E /K43/K75/K72/K72/K65/K6E/K74 /K31/K2E/K30 /K30/K2E/K38 /K30/K2E/K36 /K30/K2E/K34 /K30/K2E/K32 /K30 /K30 /K30/K2E/K32 /K30/K2E/K34 /K30/K2E/K36 /K47 /K46/K53 /K28/K73/K69/K65/K6D/K65/K6E/K73/K29 /K49 /K44 /K28/K61/K6D/K70/K65/K72/K65/K73/K29 /K50/K6F/K77/K65/K72 /K44/K69/K73/K73/K69/K70/K61/K74/K69/K6F/K6E /K76/K73/K2E /K41/K6D/K62/K69/K65/K6E/K74 /K54/K65/K6D/K70/K65/K72/K61/K74/K75/K72/K65 /K30 /K31/K35/K30/K31/K30/K30/K35/K30 /K32/K2E/K30 /K31/K2E/K30 /K30 /K31/K32/K35/K37/K35/K32/K35 /K54 /K41 /K28 °/K43/K29 /K50 /K44 /K28/K77/K61/K74/K74/K73/K29/K54 /K41 /K3D /K2D/K35/K35 °/K43 /K54/K4F/K2D/K32/K34/K33/K41/K41/K28/K70/K75/K6C/K73/K65/K64/K29 /K36/K56 /K33/K56 /K56 /K47/K53 /K3D/K31/K30/K56 /K30 /K38/K56 /K36/K56 /K34/K56 /K30 /K33/K56 /K38/K56 /K56 /K47/K53 /K3D/K31/K30/K56 /K54/K4F/K2D/K39/K32 /K28/K44/K43/K29 /K34/K56 /K54/K4F/K2D/K32/K34/K33/K41/K41 /K35/K56 /K35/K56 /K56 /K44/K53/K56 /K44/K53 /K3D /K32/K35/K56 /K30/K2E/K38 /K31/K2E/K30 /K31/K2E/K32 /K31/K2E/K34 /K54/K4F/K2D/K32/K34/K33/K41/K41 /K54 /K41 /K3D/K32 /K35 °/K43 /K50 /K44 /K3D /K31/K2E/K36/K57 /K31/K32/K35 °/K43 /K32/K35 °/K43 /K54/K4F/K2D/K39/K32 /K54/K4F/K2D/K32/K34/K33/K41/K41/K28/K44/K43/K29

1235 Bordeaux Drive, Sunnyvale, CA 94089

TEL: (408) 744-0100 • FAX: (408) 222-4895 www.supertex.com 11/12/01 ©2001 Supertex Inc. All rights reserved. Unauthorized use or reproduction prohibited. Typical Performance Curves Gate Drive Dynamic Characteristics Q (nanocoulombs)G VGS (volts) Tj GS(th)V (normalized) DS(ON)R (normalized) V DS(th) and R Variation with Temperature C)° On-Resistance vs. Drain Current (amperes)D (ohms)DS(ON)R Variation with TemperatureDSS DSSBV (normalized) C)° (Tj Transfer Characteristics VGS (volts) I (amperes)D Capacitance vs. Drain-to-Source Voltage 200 C (picofarads) VDS (volts) I BV 01 0 2 03 04 0 100 02468 1 0 1.5 1.2 0.9 0.6 0.3 -50 0 50 100 150 1.1 1.0 0.9 1.4 1.2 1.0 0.8 0.6 2.5 2.0 1.5 1.0 0.5 -50 0 50 100 150 VDS = 40V V 95pF DS = 10V VGS = 4.5V VGS = 10V T = -55A C° VDS = 25V 25°C 125°C f = 1MHz CISS COSSCRSS 260 pF (th)V @ 1mA R @ 10V, 0.5ADS(ON) 150 TN2540