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ND411435

ND411435

  • 厂商:

    POWEREX(鑫鸿)

  • 封装:

    POW-R-BLOK

  • 描述:

    DIODE MODULE DUAL

  • 数据手册
  • 价格&库存
ND411435 数据手册
ND41__35 Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com Description: OUTLINE DRAWING Powerex Dual Diode Modules are designed for use in applications requiring rectification and isolated packaging. The modules are isolated for easy mounting with other components on a common heatsink. TM POW-R-BLOK has been tested and recognized by the Underwriters Laboratories. T - M8 THD. (3 TYP.) U - DIA. (4 TYP.) K M AK A G J N K C B POW-R-BLOKTM Dual Diode Isolated Module 350 Amperes & Up to 1700 Volts S A W Q P E H W L R F ND41__35 Dual Diode Isolated POW-R-BLOKTM Module 350 Amperes / 600-1700 Volts DIODE 1 K A AK Features: Electrically Isolated Heatsinking Aluminum Nitride Isolator Compression Bonded Elements Metal Baseplate Low Thermal Impedance for Improved Current Capability „ UL Recognized „ „ „ „ „ DIODE 2 CONNECTION DIAGRAM Benefits: Ordering Information: ND41 Outline Dimensions Dimension Inches Millimeters A 4.57 116 B 3.66 93 C 3.15 80.0 E 2.06 52.3 F 2.05 52.0 G 1.97 50.0 H 1.90 48.3 J 1.50 38.1 K 1.38 35.0 L 1.26 32.0 M 1.122 28.5 N .71 18.0 14.5 P .57 Q .625 15.9 R .394 10.00 S .350 8.9 T M8 Metric M8 U .250 Dia. 6.35 Dia. W .12 3.0 Select the complete eight digit module part number from the table below. Example: ND411735 is a 1700Volt, 350 Ampere Dual Diode Isolated TM POW-R-BLOK Module „ No Additional Insulation Components Required „ Easy Installation „ No Clamping Components Required „ Reduce Engineering Time Applications: Type ND41 Voltage Volts (x100) Current Amperes (x10) 06 08 10 12 14 16 17 35 „ „ „ „ „ Bridge Circuits AC & DC Motor Drives Battery Supplies Power Supplies Large IGBT Circuit Front Ends Note: Dimensions are for reference only. Revision Date: 05/17/2010 ND41__35 Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com POW-R-BLOKTM Dual Diode Isolated Module 350 Amperes & Up to 1700 Volts Absolute Maximum Ratings Characteristics Conditions Symbol Units Repetitive Peak Reverse Blocking Voltage VRRM up to 1700 V Non-Repetitive Peak Reverse Blocking Voltage (t < 5 msec) VRSM VRRM + 100 V 180° Conduction, TC=102°C 180° Conduction, TC=108°C 180° Conduction, TC=112°C 180° Conduction, TC=102°C 180° Conduction, TC=108°C 180° Conduction, TC=112°C 60 Hz, 100% VRRM reapplied 60 Hz, No VRRM reapplied 50 Hz, 100% VRRM reapplied 50 Hz, No VRRM reapplied IF(RMS) IF(RMS) IF(RMS) IF(AV) IF(AV) IF(AV) IFSM IFSM IFSM IFSM 550 510 470 350 325 300 8450 12,500 7340 11,000 A A A A A A A A A A 60 Hz, 100% VRRM reapplied 60 Hz, No VRRM reapplied 50 Hz, 100% VRRM reapplied 50 Hz, No VRRM reapplied IFSM IFSM IFSM IFSM 9970 14,750 8670 13,000 A A A A 60 Hz, 100% VRRM reapplied IFSM 6760 A 60 Hz, 100% VRRM reapplied IFSM 5330 A Initial Tj = Tj max It 2 651,000 A sec Initial Tj = 25C 2 It 906,000 A sec Operating Temperature TJ -40 to +150 °C Storage Temperature Tstg -40 to +150 °C 45 5 95 11 840 in.-Lb. Nm in.-Lb. Nm g 1.85 lb. RMS Forward Current Average Forward Current Peak One Cycle Surge Current, Non-Repetitive Initial Tj = Tj max Peak One Cycle Surge Current, Non-Repetitive Initial Tj = 25C Peak Three Cycle Surge Current, Non-Repetitive Initial Tj = Tj max Peak Ten Cycle Surge Current, Non-Repetitive Initial Tj = Tj max 2 I t for Fusing for One Cycle, 8.3 milliseconds No VRRM reapplied Max. Mounting Torque, M6 Mounting Screw Max. Mounting Torque, M8 Terminal Screw Module Weight, Typical V Isolation @ 25C 2 2 60 seconds Vrms 3000 V 1 second Vrms 3600 V Revision Date: 05/17/2010 ND41__35 Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com POW-R-BLOKTM Dual Diode Isolated Module 350 Amperes & Up to 1700 Volts Electrical Characteristics, TJ=25°C unless otherwise specified Characteristics Symbol Test Conditions Repetitive Peak Reverse Leakage Current IRRM Up to 1700V, TJ=150°C 30 mA Peak On-State Voltage VFM IFM=1000A 1.20 V Threshold Voltage, Low-level Slope Resistance, Low-level V(TO)1 rT1 TJ = 150°C, I = 15%IF(AV) to πIF(AV) 0.654 0.320 V mΩ Threshold Voltage, High-level Slope Resistance, High-level V(TO)2 rT2 TJ = 150°C, I = πIF(AV) to IFSM 0.726 0.272 V mΩ VTM Coefficients, Full Range Min. TJ = 150°C, I = 15%IF(AV) to IFSM VFM = A+ B Ln I +C I + D Sqrt I Diode Reverse Recovery Time (Typical) trr A= B= C= D= Max. 0.7304 -0.0314 2.15 E-4 7.74 E-3 10 Ifm = 1500A, Tp = 190 µs di/dt = -25A/µs Units µs Thermal Characteristics Characteristics Symbol Max. Units 0.07 0.14 °C/W °C/W Thermal Resistance, Junction to Case RΘJ-C Per Module, both conducting Per Junction both conducting Thermal Impedance Coefficients ZΘJ-C ZΘJ-C= K1 (1-exp(-t/τ1)) K1 = 5.27E-3 τ1 = 1.69E-4 + K2 (1-exp(-t/τ2)) K2 = 1.17E-2 τ2 = 2.07E-2 + K3 (1-exp(-t/τ3)) K3 = 5.26E-2 τ3 = 2.37E-1 + K4 (1-exp(-t/τ4)) K4 = 6.97E-2 τ4 = 2.46 Thermal Resistance, Case to Sink Lubricated RΘC-S Per Module 0.03 °C/W Revision Date: 05/17/2010 ND41__35 POW-R-BLOKTM Dual Diode Isolated Module 350 Amperes & Up to 1700 Volts Powerex, Inc., 173 Pavilion Lane, Youngwood, Pennsylvania 15697 (724) 925-7272 www.pwrx.com Maximum Transient Thermal Impedance Typical On-State Forward Voltage Drop (Junction To Case) (Tj = 150C) 0.16 2.5 0.14 Thermal Impedance - Rjc - °C/W On-State Voltage - Vf - Volts 2 1.5 1 0.5 0.12 0.10 0.08 0.06 0.04 0.02 0 10 100 1000 0.00 0.001 10000 0.01 0.1 Instantaneous On-State Current - If - Amperes 100 (Sinusoidal Waveform) (Sinusoidal Waveform) 150 300 180° 90° 250 200 30° 150 100 180 0 360 CONDUCTION ANGLE 50 Max. Case Temperature - Tcase -°C_ 350 Max. Power Dissipation Per Diode - Watts_ 10 Maximum Allowable Case Temperature Maximum On-State Power Dissipation 140 180 0 130 360 CONDUCTION ANGLE 30° 120 90° 110 180° 100 0 0 50 100 150 200 250 300 0 350 50 100 150 200 250 300 350 Average On-State Current - If(av) - Amperes Average On-State Current - If(av) - Amperes Maximum Allowable Case Temperature Maximum On-State Power Dissipation (Rectangular Waveform) (Rectangular Waveform) 150 500 360° 450 Max. Case Temperature - Tcase -°C_ Max. Power Dissipation Per Diode - Watts_ 1 Time - t - Seconds 400 180° 350 120° 300 60° 250 200 150 100 180 0 360 CONDUCTION ANGLE 50 140 130 180 0 360 CONDUCTION ANGLE 120 60° 110 120° 100 180° 360° 90 80 0 0 100 200 300 400 500 Average On-State Current - If(av) - Amperes 600 0 100 200 300 400 500 600 Average On-State Current - If(av) - Amperes Revision Date: 05/17/2010
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