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ZXMS6006SGTA Datasheet(PDF) 5 Page - Diodes Incorporated

Part # ZXMS6006SGTA
Description  60V N-CHANNEL SELF PROTECTED ENHANCEMENT MODE
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Manufacturer  DIODES [Diodes Incorporated]
Direct Link  http://www.diodes.com
Logo DIODES - Diodes Incorporated

ZXMS6006SGTA Datasheet(HTML) 5 Page - Diodes Incorporated

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ZXMS6006SG
Document number: DS35141 Rev. 1 - 2
5 of 9
www.diodes.com
December 2010
© Diodes Incorporated
ZXMS6006SG
A Product Line of
Diodes Incorporated
IntelliFET
® is a trademark of Diodes Incorporated, registered in the United States and other jurisdictions worldwide.
Electrical Characteristics @TA = 25°C unless otherwise specified
Characteristic
Symbol
Min
Typ
Max
Unit
Test Condition
Static Characteristics
Drain-Source Clamp Voltage
VDS(AZ)
60
65
70
V
ID = 10mA
Off State Drain Current
IDSS
-
-
1
µA
VDS = 12V, VIN = 0V
-
-
2
VDS = 36V, VIN = 0V
Input Threshold Voltage
VIN(th)
0.7
1
1.5
V
VDS = VGS, ID = 1mA
Input Current
IIN
-
60
100
μA
VIN = +3V
-
120
400
VIN = +5V
Input Current While Over Temperature Active
-
-
-
300
μA
VIN = +5V
Static Drain-Source On-State Resistance
RDS(on)
-
85
125
m
Ω
VIN = +3V, ID = 1A
-
75
100
VIN = +5V, ID = 1A
Continuous Drain Current (Note 4)
ID
2.0
-
-
A
VIN = 3V; TA = 25°C
2.2
-
-
VIN = 5V; TA = 25°C
Continuous Drain Current (Note 5)
2.6
-
-
VIN = 3V; TA = 25°C
2.8
-
-
VIN = 5V; TA = 25°C
Current Limit (Note 7)
ID(LIM)
4
8
-
A
VIN = +3V
6
13
-
VIN = +5V
Dynamic Characteristics
Turn On Delay Time
td(on)
-
8.6
-
μs
VDD = 12V, ID = 1A, VGS = 5V
Rise Time
tr
-
18
-
Turn Off Delay Time
td(off)
-
34
-
Fall Time
ff
-
15
-
Over-Temperature Protection
Thermal Overload Trip Temperature (Note 8)
TJT
150
175
-
°C
-
Thermal Hysteresis (Note 8)
ff
-
10
-
°C
-
Notes:
7. The drain current is restricted only when the device is in saturation (see graph ‘typical output characteristic’). This allows the device to be used in the fully
on state without interference from the current limit. The device is fully protected at all drain currents, as the low power dissipation generated outside
saturation makes current limit unnecessary.
8. Over-temperature protection is designed to prevent device destruction under fault conditions. Fault conditions are considered as “outside” normal
operating range, so this part is not designed to withstand over-temperature for extended periods..


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