Part Number Hot Search : 
RC2402L TL80NF NCP43 BD6200CT MP4575 DM1621 ZMM5230B FA764
Product Description
Full Text Search
 

To Download 7MBR10NE120 Datasheet File

  If you can't view the Datasheet, Please click here to try to view without PDF Reader .  
 
 


  Datasheet File OCR Text:
 7MBR10NE120
IGBT MODULE
1200V / 10A / PIM
IGBT Modules
Features
* High Speed Switching * Voltage Drive * Low Inductance Module Structure * Converter Diode Bridge Dynamic Brake Circuit
Applications
* Inverter for Motoe Drive * AC and DC Servo Drive Amplifier * Uninterruptible Power Supply
Maximum ratings and characteristics
Absolute maximum ratings (Tc=25C unless without specified)
Item Symbol VCES VGES IC Collector current ICP -IC Collector power disspation PC Collector-Emitter voltage VCES Gate-Emitter voltage VGES Collector current IC ICP Collector power disspation PC Repetitive peak reverse voltage VRRM Average forward current IF(AV) Surge current IFSM Repetitive peak reverse voltage VRRM Non-Repetitive peak reverse voltage VRSM Average output current IO Surge current (Non-Repetitive) IFSM It (Non-Repetitive) Collector-Emitter voltage Gate-Emitter voltage Tj Tstg Viso Condition Ra ting 1200 20 10 20 10 60 1200 20 5 12.5 40 1200 1 50 1600 1700 25 320 512 +150 -40 to +125 AC 2500 1.7 *1 Unit V V A A A W V V A A W V A A V V A A As C C V N*m
Inverter
Continuous 1ms 1 device
Brake
Continuous 1ms 1 device
10ms
Converter
50Hz/60Hz sine wave Tj=150C, 10ms Tj=150C, 10ms
Operating junction temperature Storage temperature Isolation voltage Mounting screw torque
AC : 1 minute
*1 Recommendable value : 1.3 to 1.7 N*m (M4)
IGBT Module
Electrical characteristics (Tj=25C unless without specified)
Item Zero gate voltage collector current Gate-Emitter leakage current Gate-Emitter threshold voltage Collector-Emitter saturation voltage Collector-Emitter voltage Input capacitance Switching time Symbol ICES IGES VGE(th) VCE(sat) -VCE Cies ton tr toff tf trr ICES IGES VCE(sat) ton tr toff tf IRRM trr VFM IRRM Condition VCE=1200V, VGE=0V VCE=0V, VGE=20V VCE=20V, IC=10mA VGE=15V, Ic=10A -Ic=10A VGE=0V, VCE=10V, f=1MHz VCC=600V IC=10A VGE=15V RG=62 ohm IF=10A VCES=1200V, VGE=0V VCE=0V, VGE=20V IC=5A, VGE=15V VCC=600V IC=5A VGE=15V RG=120 ohm VR=1200V IF=25A VR=1600V Min.
7MBR10NE120
Characteristics Typ. Max. 1.0 0.1 4.5 7.5 3.3 3.0 2100 1.2 0.6 1.5 0.5 0.35 1.0 0.1 3.55 0.8 0.6 1.5 0.5 1 0.6 1.4 1.0 Unit mA A V V V pF s s s s s mA A V s s s s mA s V mA
Inverter (IGBT) Brake (IGBT)
Converter
Reverse recovery time of FRD Zero gate voltage collector current Gate-Emitter leakage current Collector-Emitter saturation voltage Switching time
Reverse current Reverse recovery time Forward voltage Reverse current
Item
Brake (FWD)
Thermal Characteristics
Symbol Condition Min. Inverter IGBT Inverter FRD Brake IGBT Converter Diode With thermal compound Characteristics Typ. Max. 1.67 3.30 3.12 3.40 0.05 Unit
Thermal resistance ( 1 device )
Rth(j-c)
C/W
Contact thermal resistance
*
Rth(c-f)
* This is the value which is defined mounting on the additional cooling fin with thermal compound
Equivalent Circuit Schematic
IGBT Module
Characteristics (Representative)
Inverter
Collector current vs. Collector-Emitter voltage Tj=25C 25 25
7MBR10NE120
Collector current vs. Collector-Emitter voltage Tj=125C
20
20
Collector current : Ic [A]
15
Collector current : Ic [A] 0 1 2 3 4 5
15
10
10
5
5
0 Collector-Emitter voltage : VCE [V]
0 0 1 2 3 4 5 Collector-Emitter voltage : VCE [V]
Collector-Emitter vs. Gate-Emitter voltage Tj=25C
Collector-Emitter vs. Gate-Emitter voltage Tj=125C
10 VCE [V] VCE [V] Collector-Emitter voltage : 0 5 10 15 20 25
10
8
8
Collector-Emitter voltage :
6
6
4
4
2
2
0 Gate-Emitter voltage : VGE [V]
0 0 5 10 15 20 25 Gate-Emitter voltage : VGE [V]
Switching time vs. Collector current Vcc=600V, RG=62 ohm, VGE=15V, Tj=25C 1000 1000 Switching time : ton, tr, toff, tf [n sec.]
Switching time vs. Collector current Vcc=600V, RG=62 ohm, VGE=15V, Tj=125C
Switching time : ton, tr, toff, tf [n sec.]
100
100
10 0 5 10 Collector current : Ic [A] 15 20
10 0 5 10 Collector current : Ic [A] 15 20
IGBT Module
7MBR10NE120
Switching time vs. RG Vcc=600V, Ic=10A, VGE=15V, Tj=25C 1000
Dynamic input characteristics Tj=25C 25
Switching time : ton, tr, toff, tf [n sec.]
600
15
400
10
200
5
100
0 100 Gate resistance : RG [ohm] 0 100 200 Gate charge : Qg [nC] 300
0
Forward current vs. Forward voltage VGE=0V 25
Reverse recovery characteristics trr, Irr, vs. IF
Reverse recovery current : Irr [A] Reverse recovery time : trr [n sec.]
20
100
Forward current : IF [A]
15
10
10
5
0 0 1 2 3 4 5 Forward voltage : VF [V]
1 0 5 10 Forward current : IF [A] 15 20
Transient thermal resistance 100
Reversed biased safe operating area > < +VGE=15V, -VGE < 15V, Tj = 125C, RG = 62 ohm =
Thermal resistance : Rth (j-c) [C/W]
80 Collector current : Ic [A]
1
60
40
20
0.1 0.001 0.01 Pulse width : PW [sec.] 0.1 1
0 0 200 400 600 800 1000 1200 Collector-Emitter voltage : VCE [V]
Gate-Emitter voltage : VGE [V]
1000
Collector-Emitter voltage : VCE [V]
800
20
IGBT Module
7MBR10NE120
Switching loss vs. Collector current Vcc=600V, RG=62 ohm, VGE=15V 4 10
Capacitance vs. Collector-Emitter voltage Tj=25C
Switching loss : Eon, Eoff, Err [mJ /cycle]
3
Capacitance : Cies, Coes, Cres [nF]
1
2
1
0.1
0 0 5 10 Collector current : Ic [A] 15 20 0 5 10 15 20 25 30 35 Collector-Emitter voltage : VCE [V]
Converter Diode Forward current vs. Forward voltage 30
25
Forward current : IF [A]
20
15
10
5
0 0 0.5 1.0 Forward voltage : VF [V] 1.5 2.0
IGBT Module
Brake
7MBR10NE120
Collector current vs. Collector-Emitter voltage Tj=25C 12.5 12.5
Collector current vs. Collector-Emitter voltage Tj=125C
10.0
10.0
Collector current : Ic [A]
7.5
Collector current : Ic [A] 0 1 2 3 4 5
7.5
5.0
5.0
2.5
2.5
0.0
0 0 1 2 3 4 5 Collector-Emitter voltage : VCE [V] Collector-Emitter voltage : VCE [V]
Collector-Emitter vs. Gate-Emitter voltage Tj=25C
Collector-Emitter vs. Gate-Emitter voltage Tj=125C
10 VCE [V] VCE [V] Collector-Emitter voltage : 0 5 10 15 20 25
10
8
8
Collector-Emitter voltage :
6
6
4
4
2
2
0 Gate-Emitter voltage : VGE [V]
0 0 5 10 15 20 25 Gate-Emitter voltage : VGE [V]
Switching time vs. Collector current Vcc=600V, RG=120 ohm, VGE=15V, Tj=25C 1000 1000 Switching time : ton, tr, toff, tf [n sec.] Switching time : ton, tr, toff, tf [n sec.]
Switching time vs. Collector current Vcc=600V, RG=120 ohm, VGE=15V, Tj=125C
100
100
10 0 2 4 6 8 10 Collector current : Ic [A]
10 0 2 4 6 8 10 Collector current : Ic [A]
IGBT Module
7MBR10NE120
Switching time vs. RG Vcc=600V, Ic=5A, VGE=15V, Tj=25C 1000
Dynamic input characteristics Tj=25C 25
Switching time : ton, tr, toff, tf [n sec.]
Collector-Emitter voltage : VCE [V]
800
20
1000
600
15
400
10
200
5
100
0 100 Gate resistance : RG [ohm] 1000 0 20 40 60 80 100 Gate charge : Qg [nC]
0
Transient thermal resistance 50
Reversed biased safe operating area < > +VGE=15V, -VGE = 15V, Tj < 125C, RG = 120 ohm =
Thermal resistance : Rth (j-c) [C/W]
40 Collector current : Ic [A]
1
30
20
10
0.1 0.001
0 0.01 Pulse width PW [sec.] 0.1 1 0 200 400 600 800 1000 Collector-Emitter voltage : VCE [V] 1200
Switching loss vs. Collector current Vcc=600V, RG=120 ohm, VGE=15V 2
Capacitance vs. Collector-Emitter voltage Tj=25C
Switching loss : Eon, Eoff, Err [mJ /cycle]
Capacitance : Cies, Coes, Cres [nF]
1
1
0.1
0 0 2 4 6 8 10 0 5 10 15 20 25 30 35 Collector current : Ic [A] Collector-Emitter voltage : VCE [V]
Gate-Emitter voltage : VGE [V]
IGBT Module
Outline Drawings, mm
7MBR10NE120
For more information, contact: Collmer Semiconductor, Inc. P.O. Box 702708 Dallas, TX 75370 972-733-1700 972-381-9991 Fax http://www.collmer.com


▲Up To Search▲   

 
Price & Availability of 7MBR10NE120

All Rights Reserved © IC-ON-LINE 2003 - 2022  

[Add Bookmark] [Contact Us] [Link exchange] [Privacy policy]
Mirror Sites :  [www.datasheet.hk]   [www.maxim4u.com]  [www.ic-on-line.cn] [www.ic-on-line.com] [www.ic-on-line.net] [www.alldatasheet.com.cn] [www.gdcy.com]  [www.gdcy.net]


 . . . . .
  We use cookies to deliver the best possible web experience and assist with our advertising efforts. By continuing to use this site, you consent to the use of cookies. For more information on cookies, please take a look at our Privacy Policy. X