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PDF BSP75N Data sheet ( Hoja de datos )

Número de pieza BSP75N
Descripción 60V self-protected low-side IntellifetTM MOSFET switch
Fabricantes Zetex Semiconductors 
Logotipo Zetex Semiconductors Logotipo



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BSP75N
60V self-protected low-side IntellifetTM MOSFET switch
Summary
Continuous drain source voltage
On-state resistance
Maximum nominal load current(a)
Minimum nominal load current(c)
Clamping energy
VDS=60V
500m
1.1A (VIN = 5V)
0.7A (VIN = 5V)
550mJ
SOT223
Description
Self-protected low side MOSFET. Monolithic over temperature, over
current, over voltage (active clamp) and ESD protected logic level
functionality. Intended as a general purpose switch.
S
S
D
IN
www.DataSheet4U.com
Features
• Short circuit protection with auto restart
• Over-voltage protection (active clamp)
• Thermal shutdown with auto restart
Note:
The tab is connected to the source pin and must
be electrically isolated from the drain pin.
Connection of significant copper to the drain pin
is recommended for best thermal performance.
• Over-current protection
• Input protection (ESD)
• High continuous current rating
• Load dump protection (actively protects load)
• Logic level input
Ordering information
Device
BSP75NTA
Reel size
(inches)
7
Device marking
BSP75N
Tape width
(mm)
12mm embossed
Quantity per reel
1000
Issue 4 - September 2006
© Zetex Semiconductors plc 2006
1
www.zetex.com

1 page




BSP75N pdf
BSP75N
Application information
The current-limit protection circuitry is designed to de-activate at low VDS to prevent the load
current from being unnecessarily restricted during normal operation. The design max DC
operating current is therefore determined by the thermal capability of the package/board
combination, rather than by the protection circuitry (see graph on page 7 'Typical Output
Characteristic'). This does not compromise the products ability to self protect at low VDS.
The overtemperature protection circuit trips at a minimum of 150°C. So the available package
dissipation reduces as the maximum required ambient temperature increases. This leads to the
following maximum recommended continuous operating currents.
Minimum copper area characteristics
For minimum copper condition as described in note (c)
Max. ambient temperature Tamb
25°C @ VIN = 5V
70°C @ VIN = 5V
85°C @ VIN = 5V
125°C @ VIN = 5V
Maximum continuous current
VIN = 5V
VIN = 10V
720 840
575 670
520 605
320 375
Issue 4 - September 2006
© Zetex Semiconductors plc 2006
5
www.zetex.com

5 Page










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