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10
FAN7080-GF085 Half Bridge Gate Driver
Typical Performance Characteristics
Figure 27. Turn-off Fall Time of HO vs.
Temperature (V
CC
=V
BS
=15 V, C
L
=1 nF)
Figure 28. Turn-off Fall Time of HO vs. V
BS
Supply
Voltage (V
CC
=15 V, C
L
=1 nF, T
A
=25°C)
Figure 29. Turn-off Fall Time of LO vs.
Temperature (V
CC
=V
BS
=15 V, C
L
=1 nF)
Figure 30. Turn-off Fall Time of LO vs.
Temperature (V
CC
=V
BS
=15 V, C
L
=1 nF)
Figure 31. Logic Low Input Voltage vs.
Temperature
Figure 32. Logic High Input Voltage vs.
Temperature
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11
FAN7080-GF085 Half Bridge Gate Driver
Typical Performance Characteristics
Figure 33. High Level Output of HO vs.
Temperature (V
CC
=V
BS
=15 V)
Figure 34. High Level Output of HO vs. V
BS
Supply
Voltage (V
CC
=15 V, T
A
=25°C)
Figure 35. High Level Output of LO vs.
Temperature (V
CC
=V
BS
=15 V)
Figure 36. High Level Output of LO vs. V
BS
Supply
Voltage (V
CC
=15 V, T
A
=25°C)
Figure 37. Low Level Output of HO vs.
Temperature (V
CC
=V
BS
=15 V)
Figure 38. Low Level Output of HO vs. V
BS
Supply
Voltage (V
CC
=15 V, T
A
=25°C)
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12
FAN7080-GF085 Half Bridge Gate Driver
Typical Performance Characteristics
Figure 39. Low Level Output of LO vs.
Temperature (V
CC
=V
BS
=15 V)
Figure 40. Low Level Output of LO vs. V
CC
Supply
Voltage (V
CC
=15 V, T
A
=25°C)
Figure 41. Offset Supply Leakage Current vs.
Temperature (V
CC
=V
BS
=600 V)
Figure 42. Offset Supply Leakage Current vs.
V
B
Boost Voltage(V
CC
=15 V, T
A
=25°C)
Figure 43. V
BS
Supply Current vs.
Temperature (V
BS
=15 V)
Figure 44. V
CC
Supply Current vs.
Temperature (V
CC
=15 V)

FAN7080MX-GF085

Mfr. #:
Manufacturer:
ON Semiconductor / Fairchild
Description:
Gate Drivers Half Bridge Gate Driver
Lifecycle:
New from this manufacturer.
Delivery:
DHL FedEx Ups TNT EMS
Payment:
T/T Paypal Visa MoneyGram Western Union

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