MLD1N06CL ON Semiconductor, MLD1N06CL Datasheet - Page 5

no-image

MLD1N06CL

Manufacturer Part Number
MLD1N06CL
Description
MOSFET
Manufacturer
ON Semiconductor
Datasheet

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
MLD1N06CL
Manufacturer:
ON
Quantity:
10 000
Part Number:
MLD1N06CLT4
Manufacturer:
ON
Quantity:
12 500
Part Number:
MLD1N06CLT4G
Manufacturer:
ATMEL
Quantity:
1 000
Part Number:
MLD1N06CLT4G
Manufacturer:
ON
Quantity:
12 500
Part Number:
MLD1N06CLT4G
Manufacturer:
ON
Quantity:
12 500
FORWARD BIASED SAFE OPERATING AREA
voltage and drain current that a device can safely handle
when it is forward biased, or when it is on, or being turned
on. Because these curves include the limitations of
simultaneous high voltage and high current, up to the rating
of the device, they are especially useful to designers of linear
systems. The curves are based on a case temperature of 25°C
and a maximum junction temperature of 150°C. Limitations
for repetitive pulses at various case temperatures can be
determined by using the thermal response curves.
ON Semiconductor Application Note, AN569, “Transient
Thermal Resistance − General Data and Its Use” provides
detailed instructions.
MAXIMUM DC VOLTAGE CONSIDERATIONS
continuously applied across the MLD1N06CL when it is in
current limit is a function of the power that must be
dissipated. This power is determined by the maximum
current limit at maximum rated operating temperature
The FBSOA curves define the maximum drain−to−source
The maximum drain−to−source voltage that can be
0.01
1.0
0.1
1.0E−05
0.05
D = 0.5
0.1
0.2
SINGLE PULSE
0.01
0.02
1.0E−04
1.0
0.1
10
0.1
Figure 9. Thermal Response (MLD1N06CL)
V
SINGLE PULSE
T
GS
C
= 25°C
= 10 V
1.0E−03
Figure 8. Maximum Rated Forward Bias
V
Safe Operating Area (MLD1N06CL)
DS
, DRAIN−TO−SOURCE VOLTAGE (VOLTS)
http://onsemi.com
1.0
MLD1N06CL
R
THERMAL LIMIT
PACKAGE LIMIT
t, TIME (s)
DS(on)
5
1.0E−02
LIMIT
(1.8 A at 150°C) and not the R
can be calculated by the following equation:
where the value of R
is being used in the application.
DUTY CYCLE OPERATION
drain voltage can be increased. The maximum operating
temperature is related to the duty cycle (DC) by the
following equation:
duty cycle mode can be approximated by:
When operating in the duty cycle mode, the maximum
The maximum value of V
P
(pk)
10
DUTY CYCLE, D = t
100 ms
10 ms
t
1
1 ms
T
t
10 ms
V
2
C
supply
1.0E−01
dc
= (V
V
DS
qCA
DS
=
1
=
100
/t
x I
2
is determined by the heatsink that
I
I
D(lim)
D
D(lim)
DS
x DC x R
R
D CURVES APPLY FOR POWER
PULSE TRAIN SHOWN
READ TIME AT t
T
DS(on)
J(pk)
(150 − T
qJC
150 − T
applied when operating in a
(R
x DC x R
(t) = r(t) R
− T
qJC
1.0E+00
. The maximum voltage
C
qCA
= P
+ R
C
A
)
qJC
(pk)
) + T
qJC
qCA
1
R
qJC
)
A
(t)
1.0E+01

Related parts for MLD1N06CL