Part Number Hot Search : 
EM358307 2M41VQB BD927 AS5245 1050C BAV19 D20400 1N1398
Product Description
Full Text Search
 

To Download MTB35N04J3 Datasheet File

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


  Datasheet File OCR Text:
 CYStech Electronics Corp.
N -Channel Enhancement Mode Power MOSFET
Spec. No. : C453J3 Issued Date : 2009.03.11 Revised Date : Page No. : 1/7
MTB35N04J3
Features
* Low Gate Charge * Simple Drive Requirement * RoHS compliant & Halogen-free package
BVDSS ID RDSON(MAX)
40V 12A 35m
Equivalent Circuit
MTB35N04J3
Outline
TO-252
GGate DDrain SSource
GDS
Absolute Maximum Ratings (TC=25C, unless otherwise noted)
Parameter Symbol Limits Unit
Drain-Source Voltage Gate-Source Voltage Continuous Drain Current @ TC=25C Continuous Drain Current @ TC=100C Pulsed Drain Current *1 Avalanche Current Avalanche Energy @ L=0.1mH, ID=10A, RG=25 Repetitive Avalanche Energy @ L=0.05mH *2 Total Power Dissipation @TC=25 Total Power Dissipation @TC=100 Operating Junction and Storage Temperature Range
Note : *1. Pulse width limited by maximum junction temperature *2. Duty cycle 1%
MTB35N04J3
VDS VGS ID ID IDM IAS EAS EAR Pd Tj, Tstg
40 20 12 8 48 10 5 2 36 12 -55~+175
V
A
mJ W C
CYStek Product Specification
CYStech Electronics Corp.
Thermal Data
Parameter Thermal Resistance, Junction-to-case, max Thermal Resistance, Junction-to-ambient, max Symbol Rth,j-c Rth,j-a
Spec. No. : C453J3 Issued Date : 2009.03.11 Revised Date : Page No. : 2/7
Value 4.1 80
Unit C/W C/W
Characteristics (Tc=25C, unless otherwise specified)
Symbol Static BVDSS VGS(th) GFS IGSS IDSS ID(ON) RDS(ON)
*1 *1
Min. 40 1.8 12 -
Typ. 2.3 19 30 40 9.1 2.3 3 2.5 7.5 12 4 796 84 59 2.5 15 8
Max. 3.2 100 1 25 35 50 12 48 1.3 -
Unit V V S nA A A A m m
Test Conditions VGS=0, ID=250A VDS =VGS, ID=250A VDS =5V, ID=10A VGS=20, VDS=0 VDS =32V, VGS =0 VDS =30V, VGS =0, Tj=125C VDS =10V, VGS =10V VGS =10V, ID=10A VGS =7V, ID=8A
*1
Dynamic Qg *1, 2 Qgs *1, 2 Qgd *1, 2 td(ON) *1, 2 tr *1, 2 td(OFF) *1, 2 tf *1, 2 Ciss Coss Crss Rg Source-Drain Diode IS *1 ISM *3 VSD *1 trr Qrr
nC
ID=10A, VDS=20V, VGS=10V VDS=20V, ID=1A, VGS=10V, RG=6
ns
pF A V ns nC
VGS=0V, VDS=20V, f=1MHz VGS=15mV,VDS=0, f=1MHz
IF=IS, VGS=0V IF=5A, dIF/dt=100A/s
Note : *1.Pulse Test : Pulse Width 300s, Duty Cycle2% *2.Independent of operating temperature *3.Pulse width limited by maximum junction temperature.
Ordering Information
Device MTB35N04J3 Package TO-252 (RoHS compliant & Halogen-free package) Shipping 2500 pcs / Tape & Reel Marking B35N04
MTB35N04J3
CYStek Product Specification
CYStech Electronics Corp.
Characteristic Curves
Spec. No. : C453J3 Issued Date : 2009.03.11 Revised Date : Page No. : 3/7
On-Region Characteristics 50
V = 10V GS 8.0V 7.0V
On-Resistance Variation with Drain Current and Gate Voltage 2.4 2.2 2.0 VGS = 3.5 V 5.0 V
40
6.0V
RDS(ON) -Normalized Drain-S ource On-Resistance
ID- Drain Current(A)
30
1.8 1.6 1.4 1.2 1.0 0.8 0 10 20 30 I D - Drain Current(A) 40 50
10 V
6.0 V
7.0 V 8.0 V
20
5.0V 4.0V 3.5V
10
0
0
1 3 2 V - Drain S ource Voltage(V) DS
4
5
On-Resistance Variation with Temperature 1.9 ID = 10A V = 10V GS 1.6 R (on) - Normalized DS Drain-S ource On-Resistance
On-Resistance Variation with Gate-to-S ource Voltage 0.09 0.08 0.07 0.06 RDS(ON) - On-Resistance() 0.05 0.04 0.03 0.02 0.01 2 4 6 VGS- Gate-to-S ource Voltage(V) 8 10 TA = 25C T = 125C A ID = 10 A
1.3
1.0
0.7
0.4 -50
-25
0 25 50 75 TJ - Junction Temperature (C)
100
125
150
Transfer Characteristics 30 VDS= 10V TA = -55 C 20 25 C 15 10 5 0 125 C 25 ID- Drain Current(A)
100
Body Diode Forward Voltage Variation with S ource Current and Temperature V GS= 0V
Is - Reverse Drain Current(A)
10
T A= 125 C
1
25 C
0.1
-55 C
0.01
1
2 3 V - Gate-to-S ource Voltage(V) GS
4
5
0.001
0
0.2 0.6 0.8 1.0 0.4 VSD- Body Diode Forward Voltage(V)
1.2
1.4
MTB35N04J3
CYStek Product Specification
CYStech Electronics Corp.
Characteristic Curves(Cont.)
Gate Charge Characteristics 10 ID = 10A 8 VGS - Gate S ource Voltage(V)
Spec. No. : C453J3 Issued Date : 2009.03.11 Revised Date : Page No. : 4/7
1200
Capacitance Characteristics f = 1MHz VGS = 0 V
VDS = 15V
20V
900 Capacitance( pF )
Ciss
6
600
4
2 0 0 4 8 Q g - Gate Charge(nC)
Maximum Safe Operating Area
300 Coss 0 Crss 0 10 20 VDS - Drain-S ource Voltage( V ) 30 40
12
16
80 50 RDS(ON) Limit
50
S ingle Pulse Maximum Power Dissipation Single Pulse R = 6C/ W JC TC = 25C
1ms
I D - Drain Current(A)
10ms
P(pk),Peak Transient Power(W)
100s
40
30
10 DC VGS= 10V Single Pulse RJC= 6C/ W TC = 25C 0 1
100ms
1s 10s
20
10 0 0.001
1 0
10 VDS - Drain-Source Voltage(V)
40 50
0.01
0.1
1 10 t 1 ,Time (sec)
100
1000
1
Duty Cycle = 0.5
Transient Thermal Response Curve
r(t),Normalized Effective Transient Thermal Resistance
0.2
0.1
0.1 0.05 0.02 0.01
Notes:
PDM t1 t2
0.01
Single Pulse
1.Duty Cycle,D = 2.R =6C/ W JC
t1 t2
3.T - TC = P * R (t) JC J 4.R (t)=r(t) * R JC JC
0.001 10
-4
10
-3
10
-2
10 t 1 ,Time (sec)
-1
1
10
100
1000
MTB35N04J3
CYStek Product Specification
CYStech Electronics Corp.
Reel Dimension
Spec. No. : C453J3 Issued Date : 2009.03.11 Revised Date : Page No. : 5/7
Carrier Tape Dimension
MTB35N04J3
CYStek Product Specification
CYStech Electronics Corp.
Recommended wave soldering condition
Product Pb-free devices Peak Temperature 260 +0/-5 C
Spec. No. : C453J3 Issued Date : 2009.03.11 Revised Date : Page No. : 6/7
Soldering Time 5 +1/-1 seconds
Recommended temperature profile for IR reflow
Profile feature Sn-Pb eutectic Assembly Average ramp-up rate 3C/second max. (Tsmax to Tp) Preheat 100C -Temperature Min(TS min) -Temperature Max(TS max) 150C -Time(ts min to ts max) 60-120 seconds Time maintained above: -Temperature (TL) 183C - Time (tL) 60-150 seconds Peak Temperature(TP) 240 +0/-5 C Time within 5C of actual peak 10-30 seconds temperature(tp) Ramp down rate 6C/second max. 6 minutes max. Time 25 C to peak temperature
Pb-free Assembly 3C/second max. 150C 200C 60-180 seconds 217C 60-150 seconds 260 +0/-5 C 20-40 seconds 6C/second max. 8 minutes max.
Note : All temperatures refer to topside of the package, measured on the package body surface.
MTB35N04J3
CYStek Product Specification
CYStech Electronics Corp.
TO-252 Dimension
A C
Spec. No. : C453J3 Issued Date : 2009.03.11 Revised Date : Page No. : 7/7
Marking:
B L F G
D
Device Name Date code
3 H E K 2 I 1 J
Style: Pin 1.Gate 2.Drain 3.Source
3-Lead TO-252 Plastic Surface Mount Package CYStek Package Code: J3
*: Typical
DIM A B C D E F
Inches Min. Max. 0.0177 0.0217 0.0650 0.0768 0.0354 0.0591 0.0177 0.0236 0.2441 0.2677 0.2125 0.2283
Millimeters Min. Max. 0.45 0.55 1.65 1.95 0.90 1.50 0.45 0.60 6.20 6.80 5.40 5.80
DIM G H I J K L
Inches Min. Max. 0.0866 0.1102 *0.0906 0.0449 0.0346 0.2047 0.2165 0.0551 0.0630
Millimeters Min. Max. 2.20 2.80 *2.30 1.14 0.88 5.20 5.50 1.40 1.60
Notes: 1.Controlling dimension: millimeters.
2.Maximum lead thickness includes lead finish thickness, and minimum lead thickness is the minimum thickness of base material. 3.If there is any question with packing specification or packing method, please contact your local CYStek sales office.
Material:
* Lead : KFC; pure tin plated * Mold Compound: Epoxy resin family, flammability solid burning class: UL94V-0
Important Notice:
* All rights are reserved. Reproduction in whole or in part is prohibited without the prior written approval of CYStek. * CYStek reserves the right to make changes to its products without notice. * CYStek semiconductor products are not warranted to be suitable for use in Life-Support Applications, or systems. * CYStek assumes no liability for any consequence of customer product design, infringement of patents, or application assistance.
MTB35N04J3
CYStek Product Specification


▲Up To Search▲   

 
Price & Availability of MTB35N04J3

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