TSM60NE145CIT TSC | Alldatasheet

Document overview

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  • PDF pages: 7

Technical content

1 Version: B2407

FEATURES

  • Latest super-junction technology
  • Low gate charge capacitance
  • High gate noise immunity
  • RoHS compliant
  • Halogen-free

APPLICATIONS

  • Switching applications
  • HV motor driver
  • Industrial KEY PERFORMANCE PARAMETERS PARAMETER VALUE UNIT VDS @ Tj,max 650 V RDS(on) (max) 145 mΩ Qg,typ 40 nC ITO-220TL ABSOLUTE MAXIMUM RATINGS (TA = 25°C unless otherwise noted) PARAMETER SYMBOL LIMIT UNIT Drain-Source Voltage VDS 600 V Gate-Source Voltage VGS ±30 V Continuous Drain Current TC = 25°C ID 14.5 A Pulsed Drain Current (Note 1) IDM 58 A Total Power Dissipation @ TC = 25°C PD 69 W Single Pulse Avalanche Energy (Note 2) EAS 365 mJ Single Pulse Avalanche Current (Note 2) IAS 3.8 A Operating Junction and Storage Temperature Range TJ, TSTG - 55 to +150 °C THERMAL PERFORMANCE PARAMETER SYMBOL LIMIT UNIT Junction to Case Thermal Resistance RӨJC 1.8 °C/W Junction to Ambient Thermal Resistance (Note 3) RӨJA 65 °C/W Notes: 1. Pulse Width ≤ 100µs. 2. L = 50mH, RG = 25Ω, Starting TJ = 25°C. 3. RӨJA is the sum of the junction -to-case and case-to-ambient thermal resistances. R ӨJA is guaranteed by design while R ӨJA is determined by the user’s board design.

2 Version: B2407

ELECTRICAL SPECIFICATIONS (TA = 25°C unless otherwise noted) PARAMETER CONDITIONS SYMBOL MIN TYP MAX UNIT Static (Note 4) Drain-Source Breakdown Voltage VGS = 0V, ID = 1mA BVDSS 600 -- -- V Gate Threshold Voltage VDS = VGS, ID = 2mA VGS(TH) 4 4.9 6 V Gate Body Leakage VGS = ±30V, VDS = 0V IGSS -- -- ±100 nA Zero Gate Voltage Drain Current VDS = 600V, VGS = 0V IDSS -- -- 100 µA Drain-Source On-State Resistance VGS = 10V, ID = 4.8A RDS(on) -- 117 145 mΩ VGS = 12V, ID = 4.8A -- 112 135 Dynamic (Note 5) Total Gate Charge VDS = 480V, ID = 14.5A, VGS = 10V Qg -- 40 -- nC Gate-Source Charge Qgs -- 12 -- Gate-Drain Charge Qgd -- 22 -- Input Capacitance VDS = 300V, VGS = 0V, f = 100kHz Ciss -- 1661 -- pF Output Capacitance Coss -- 49 -- Reverse Transfer Capacitance Crss -- 6 -- Gate Resistance f = 1.0MHz Rg -- 1.4 -- Ω Switching (Note 6) Turn-On Delay Time VDD = 300V, RG = 3.3Ω, ID = 14.5A, VGS = 10V td(on) -- 22 -- ns Turn-On Rise Time tr -- 40 -- Turn-Off Delay Time td(off) -- 40 -- Turn-Off Fall Time tf -- 3.2 -- Source-Drain Diode Forward Voltage (Note 4) IS = 4.8A, VGS = 0V VSD -- 0.8 1.5 V Reverse Recovery Time IS = 7.3A dIF/dt = 100A/μs trr -- 280 -- ns Reverse Recovery Charge Qrr -- 3.7 -- µC Notes: 4. Pulse test: Pulse Width ≤ 300µs, duty cycle ≤ 2%. 5. Defined by design. Not subject to production test. 6. Switching time is essentially independent of operating temperature.

ORDERING INFORMATION

ORDERING CODE PACKAGE PACKING TSM60NE145CIT C0G ITO-220TL 50pcs / Tube

3 Version: B2407

(TC = 25°C unless otherwise noted) Output Characteristics Transfer Characteristics On-Resistance vs. Drain Current Gate-Source Voltage vs. Gate Charge On-Resistance vs. Junction Temperature On-Resistance vs. Gate-Source Voltage 0 2 4 6 8 10 VGS=7V VGS=20V VGS=15V VGS=12V VGS=8V VGS=9V VGS=10V 0 2 4 6 8 10 12 14 16 18 20 25°C 125°C 100 125 150 175 200 0 5 10 15 20 25 30 VGS=12V VGS=10V 0 10 20 30 40 50 60 70 VDS=480V ID=14.5A 0.3 0.5 0.8 1.0 1.3 1.5 1.8 2.0 2.3 2.5 -75 -50 -25 0 25 50 75 100 125 150 VGS=10V ID=4.8A 100 150 200 250 300 8 10 12 14 16 18 20 ID=4.8A ID, Drain Current (A) RDS(on), Drain-Source On-Resistance (mΩ) ID, Drain Current (A) VDS, Drain to Source Voltage (V) VGS, Gate to Source Voltage (V) VGS, Gate to Source Voltage (V) TJ, Junction Temperature (°C) RDS(on), Drain-Source On-Resistance (mΩ) RDS(on), Drain-Source On-Resistance (Normalized) VGS, Gate to Source Voltage (V) Qg, Gate Charge (nC) ID, Drain Current (A)

4 Version: B2407

(TC = 25°C unless otherwise noted) Capacitance vs. Drain-Source Voltage BVDSS vs. Junction Temperature Maximum Safe Operating Area, Junction-to-Case Source-Drain Diode Forward Current vs. Voltage Normalized Thermal Transient Impedance, Junction-to-Case 0.1 100 1000 10000 100000 0 100 200 300 400 500 600 VGS = 0V f = 100kHz Ciss Coss Crss 0.80 0.85 0.90 0.95 1.00 1.05 1.10 1.15 1.20 -75 -50 -25 0 25 50 75 100 125 150 ID=1mA 0.001 0.01 0.1 100 1000 0.1 1 10 100 1000 RDS(ON) 100us1ms SINGLE PULSE RӨJC=1.8°C/W TC=25°C 100ms 10ms 0.1 1.0 10.0 100.0 -55°C25°C150°C 0.001 0.010 0.100 1.000 10.000 0.0001 0.001 0.01 0.1 1 SINGLE PULSE RӨJC=1.8°C/W Duty=0.5 Duty=0.2 Duty=0.1 Duty=0.05 Duty=0.02 Duty=0.01 Single Notes: Duty = t1 / t2 TJ = TC + PDM x ZӨJC x RӨJC VDS, Drain to Source Voltage (V) BVDSS (Normalized) Drain-Source Breakdown Voltage ID, Drain Current (A) IS, Reverse Drain Current (A) C, Capacitance (pF) Normalized Effective Transient Thermal Impedance, ZӨJC TJ, Junction Temperature (°C) VDS, Drain to Source Voltage (V) VSD, Body Diode Forward Voltage (V) t, Square Wave Pulse Duration (sec)

5 Version: B2407

(TC = 25°C unless otherwise noted) Power Dissipation Drain Current Normalized gate threshold voltage vs Temperature 0 25 50 75 100 125 150 0 25 50 75 100 125 150 VGS=10V 0.0 0.2 0.4 0.6 0.8 1.0 1.2 1.4 1.6 -75 -50 -25 0 25 50 75 100 125 150 ID=2mA Threshold Voltage (Normalized) PTOT – Power (W) Junction-to-Case Temperature (°C) Junction-to-Case Temperature (°C) TJ, Junction Temperature (°C) ID-Drain Current (A)

6 Version: B2407

PACKAGE OUTLINE DIMENSIONS (Unit: Millimeters) ITO-220TL NOTES: UNLESS OTHERWISE SPECIFIED 1. ALL DIMENSIONS ARE IN MILLIMETERS. 2. DIMENSIONING AND TOLERANCING PER ASME Y14.5M-1994. 3. PACKAGE OUTLINE REFERENCE: EIAJ ED-7500A-1, SC-91.

4 MOLDED PLASTIC BODY DIMENSIONS DO NOT

INCLUDE MOLD FLASH. THESE DIMENSIONS ARE MEASURED AT THE OUTERMOST EXTREME OF THE PLASTIC BODY. 5. DWG NO. REF: HQ2SD07-ITO220TL-016 REV B. MARKING DIAGRAM 1 3 0.80 0.60 13.50 12.50 15.30 14.70 10.30 9.70 2.54 1 2 3 2.80 1.80 3.10 2.90 Ø 3.40 3.00 (3.50) 6.70 6.30 (8.50) 2.70 2.50 2.90 2.50 1.29 0.99(45°) 3X 0.50 A 3 1 4.70 4.30 0.60 0.45 A MOUNT PLANE P/N TSC P/N = MARKING CODE Y = YEAR CODE WW = WEEK CODE (01~52) L = LOT CODE (1~9, A~Z) F = FACTORY CODE YWWLF 60NE145 YWWLF

7 Version: B2407

Specifications of the products displayed herein are subject to change without notice. TSC or anyone on its behalf, assumes no responsibility or liability for any errors or inaccuracies. Purchasers are solely responsible for the choice, selection, and use of TSC products and TSC assumes no liability for application assistance or the design of Purchasers’ products. Information contained herein is intended to provide a product description only. No license, express or implied, to any intellectual property rights is granted by this document. Except as provided in TSC’s terms and conditions of sale for such products, TSC assumes no liability whatsoever, and disclaims any express or implied warranty, relating to sale and/or use of TSC products including liability or warranties relating to fitness for a particular purpose, merchantability, or infringement of any patent, copyright, or other intellectual property right. The products shown herein are not designed for use in medical, life-saving, or life-sustaining applications. Customers using or selling these products for use in such applications do so at their own risk and agree to fully indemnify TSC for any damages resulting from such improper use or sale.