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Country CodeFAIRCHILD
ON SEMICONDUCTOR
Your search FAN7529 and relate product result :14 items
SOP8
Fairchild
The FAN7529 is an active power factor correction (PFC) controller for boost PFC applications that operates in critical conduction mode (CRM). It uses the voltage mode PWM that compares an internal ramp signal with the error amplifier output to generate MOSFET turn-off signal. Because the voltage-mode CRM PFC controller does not need rectified AC line voltage information, it saves the power loss of the input voltage sensing network necessary for the current-mode CRM PFC controller. FAN7529 provides many protection functions, such as over-voltage protection, open-feedback protection, over-current protection, and under-voltage lockout protection. The FAN7529 can be disabled if the INV pin voltage is lower than 0.45V and the operating current decreases to 65μA. Using a new variable on-time control method, THD is lower than the conventional CRM boost PFC ICs.
Description: FAN7529 is a high-performance, low-side gate driver IC designed to drive N-channel MOSFETs and IGBTs in a variety of power switching applications. Features: - Low-side gate driver - Oper
Stock:10000
Minimum:5
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Stock:707
Minimum:4
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SOP8
Fairchi
15+
The FAN7529 is an active power factor correction (PFC) controller for boost PFC applications that operates in critical conduction mode (CRM). It uses the voltage mode PWM that compares an internal ramp signal with the error amplifier output to generate MOSFET turn-off signal. Because the voltage-mode CRM PFC controller does not need rectified AC line voltage information, it saves the power loss of the input voltage sensing network necessary for the current-mode CRM PFC controller. FAN7529 provides many protection functions, such as over-voltage protection, open-feedback protection, over-current protection, and under-voltage lockout protection. The FAN7529 can be disabled if the INV pin voltage is lower than 0.45V and the operating current decreases to 65μA. Using a new variable on-time control method, THD is lower than the conventional CRM boost PFC ICs.
Package: SOP8 Manufacturer: Fairchild Description: The FAN7529 is a high-performance, low-side gate driver IC designed to drive two N-channel MOSFETs. It is designed to drive the two MOSFETs in a syn
Stock:10000
Minimum:3
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Stock:8
Minimum:5
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DIP
Fairchild
1202+
The FAN7529 is an active power factor correction (PFC) controller for boost PFC applications that operates in critical conduction mode (CRM). It uses the voltage mode PWM that compares an internal ramp signal with the error amplifier output to generate MOSFET turn-off signal. Because the voltage-mode CRM PFC controller does not need rectified AC line voltage information, it saves the power loss of the input voltage sensing network necessary for the current-mode CRM PFC controller. FAN7529 provides many protection functions, such as over-voltage protection, open-feedback protection, over-current protection, and under-voltage lockout protection. The FAN7529 can be disabled if the INV pin voltage is lower than 0.45V and the operating current decreases to 65μA. Using a new variable on-time control method, THD is lower than the conventional CRM boost PFC ICs.
Description: FAN7529N is a high-side MOSFET driver IC manufactured by Fairchild. It is a dual-channel high-side driver with integrated protection features. Features: High-side MOSFET driver Dual-ch
Stock:10000
Minimum:2
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SOP8
Fairchild
08+
The FAN7529 is an active power factor correction (PFC) controller for boost PFC applications that operates in critical conduction mode (CRM). It uses the voltage mode PWM that compares an internal ramp signal with the error amplifier output to generate MOSFET turn-off signal. Because the voltage-mode CRM PFC controller does not need rectified AC line voltage information, it saves the power loss of the input voltage sensing network necessary for the current-mode CRM PFC controller. FAN7529 provides many protection functions, such as over-voltage protection, open-feedback protection, over-current protection, and under-voltage lockout protection. The FAN7529 can be disabled if the INV pin voltage is lower than 0.45V and the operating current decreases to 65μA. Using a new variable on-time control method, THD is lower than the conventional CRM boost PFC ICs.
Stock:10000
Minimum:2
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Stock:3000
Minimum:8
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SOP8
Fairchild
The FAN7529 is an active power factor correction (PFC) controller for boost PFC applications that operates in critical conduction mode (CRM). It uses the voltage mode PWM that compares an internal ramp signal with the error amplifier output to generate MOSFET turn-off signal. Because the voltage-mode CRM PFC controller does not need rectified AC line voltage information, it saves the power loss of the input voltage sensing network necessary for the current-mode CRM PFC controller. FAN7529 provides many protection functions, such as over-voltage protection, open-feedback protection, over-current protection, and under-voltage lockout protection. The FAN7529 can be disabled if the INV pin voltage is lower than 0.45V and the operating current decreases to 65μA. Using a new variable on-time control method, THD is lower than the conventional CRM boost PFC ICs.
Stock:10000
Minimum:2
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The FAN7529MX is a high-performance, low-side, N-channel, logic-level, power MOSFET driver. It is designed to drive N-channel MOSFETs in low-side switching applications. It has a low-side driver with
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Description: Dual High-Side MOSFET Driver Features: Dual High-Side MOSFET Driver Outputs Can Be Controlled Independently Inputs Compatible With 5V Logic Outputs Can Sink or Source up to
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SMD
On Semiconductor
PFC IC Critical Conduction (CRM), Discontinuous (Transition) 8-SOP
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8-DIP (0.300", 7.62mm)
On Semiconductor
PFC IC Critical Conduction (CRM), Discontinuous (Transition) 8-DIP
Description: The FAN7529N is a monolithic integrated circuit designed for use in a wide range of applications, including motor control, power supply, and lighting systems. It is a high-voltage, high-c
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Stop production experts, we can provide a large number of electronic components that have been stopped production and are difficult to find, to facilitate the maintenance company