SEME-LAB 2N6800

2N6800
MECHANICAL DATA
Dimensions in mm (inches)
N–CHANNEL ENHANCEMENT
POWER MOSFET
8.64 (0.34)
9.40 (0.37)
8.01 (0.315)
9.01 (0.355)
4.06 (0.16)
4.57 (0.18)
12.70
(0.500)
min.
BVDSS
ID
RDS(on)
0.89 max.
(0.035)
0.41 (0.016)
0.53 (0.021)
dia.
400V
3.0A
Ω
1.0Ω
5.08 (0.200)
typ.
FEATURES
2.54
(0.100)
2
1
• AVALANCHE ENERGY RATED
3
0.74 (0.029)
1.14 (0.045)
• HERMETICALLY SEALED
0.71 (0.028)
0.53 (0.021)
• DYNAMIC dv/dt RATING
• SIMPLE DRIVE REQUIREMENTS
45°
TO39 – Package (TO205AF)
Pin 1 – Source
Pin 2 – Gate
Pin 3 – Drain
ABSOLUTE MAXIMUM RATINGS (Tcase = 25°C unless otherwise stated)
±20V
VGS
Gate – Source Voltage
ID
Continuous Drain Current
(VGS = 10V , Tcase = 25°C)
3A
ID
Continuous Drain Current
(VGS = 10V , Tcase = 100°C)
2A
1
IDM
Pulsed Drain Current
PD
Power Dissipation @ Tcase = 25°C
12A
25W
Linear Derating Factor
0.20W/°C
dv/dt
Peak Diode Recovery 3
4V/ns
TJ , Tstg
Operating and Storage Temperature Range
RθJC
Thermal Resistance Junction to Case
5.0°C/W
RθJCA
Thermal Resistance Junction-to-Ambient
175°C/W
–55 to 150°C
Notes
1) Pulse Test: Pulse Width ≤ 300µs, δ ≤ 2%
2) @ VDD = 50V , L ≥ 0.100mH , RG = 25Ω , Peak IL = 1.5A , Starting TJ = 25°C
3) @ ISD ≤ 1.5A , di/dt ≤ 50A/µs , VDD ≤ BVDSS , TJ ≤ 150°C , SUGGESTED RG = 7.5Ω
Semelab Plc reserves the right to change test conditions, parameter limits and package dimensions without notice. Information furnished by Semelab is believed
to be both accurate and reliable at the time of going to press. However Semelab assumes no responsibility for any errors or omissions discovered in its use.
Semelab encourages customers to verify that datasheets are current before placing orders.
Semelab plc.
Telephone +44(0)1455 556565. Fax +44(0)1455 552612.
E-mail: [email protected]
Website: http://www.semelab.co.uk
Document Number 3097
Issue 1
2N6800
ELECTRICAL CHARACTERISTICS (Tamb = 25°C unless otherwise stated)
Parameter
BVDSS
Test Conditions
STATIC ELECTRICAL RATINGS
Drain – Source Breakdown Voltage
∆BVDSS Temperature Coefficient of
∆TJ
VGS = 0
ID = 1mA
Min.
Typ.
Max.
V
400
Reference to 25°C
V / °C
0.37
Breakdown Voltage
ID = 1mA
Static Drain to Source
VGS = 10V
ID = 2A
1
On–State Resistance
VGS = 10V
ID = 3A
1.15
VGS(th) Gate Threshold Voltage
VDS = VGS
ID = 250µA
2
gfs
Forward Transconductance
VDS ≥ 15V
IDS = 2A
2
IDSS
Zero Gate Voltage Drain Current
IGSS
Forward Gate – Source Leakage
VGS = 20V
100
IGSS
Reverse Gate – Source Leakage
VGS = –20V
–100
Ciss
DYNAMIC CHARACTERISTICS
Input Capacitance
VGS = 0
620
Coss
Output Capacitance
VDS = 25V
200
Crss
Reverse Transfer Capacitance
f = 1MHz
75
Qg
Total Gate Charge
Qgs
Gate – Source Charge
Qgd
Gate – Drain (“Miller”) Charge
td(on)
Turn–On Delay Time
tr
Rise Time
VDD = 200V
VGS = 10V
35
td(off)
Turn–Off Delay Time
ID = 3A
RG = 7.5Ω
55
tf
Fall Time
IS
SOURCE – DRAIN DIODE CHARACTERISTICS
Continuous Source Current
RDS(on)
4
VDS = 0.8xMax Rating
25
VGS = 0
250
VGS = 10V
TJ = 125°C
ID = 3A
VDS = Max Rating x 0.5
Ω
V
(Ω)
S(Ω
µA
nA
pF
19.1
33
1
5.8
6.7
19.9
nC
30
ns
35
3
2
ISM
Pulse Source Current
VSD
Diode Forward Voltage
trr
Reverse Recovery TimeReverse
IF = 3.0A
Qrr
Recovery Charge
di / dt ≤ 100A/µs VDD ≤ 50V
ton
Forward Turn–On Time
LD
PACKAGE CHARACTERISTICS
Internal Drain Inductance (from centre of drain pad to die)
5
LS
Internal Source Inductance (from centre of source pad to end of source bond wire)
15
Notes
Unit
12
IS = 3.0A
TJ = 25°C
1.4
VGS = 0
TJ = 25°C
700
6.2
Negligible
A
V
ns
µC
nH
1) Pulse Test: Pulse Width ≤ 300µs, δ ≤ 2%
2) Repetitive Rating – Pulse width limited by maximum junction temperature.
Semelab Plc reserves the right to change test conditions, parameter limits and package dimensions without notice. Information furnished by Semelab is believed
to be both accurate and reliable at the time of going to press. However Semelab assumes no responsibility for any errors or omissions discovered in its use.
Semelab encourages customers to verify that datasheets are current before placing orders.
Semelab plc.
Telephone +44(0)1455) 556565. Fax +44(0)1455) 552612.
E-mail: [email protected]
Website http://www.semelab.co.uk
Document Number 3097
Issue 1