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| IXD_602: 2-Amp Dual Low-Side Ultrafast MOSFET Driver |
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- 2A Peak Source/Sink Drive Current
- Wide Operating Voltage Range: 4.5V to 35V
- -40°C to +125°C Extended Operating Temperature Range
- Logic Input Withstands Negative Swing of up to 5V
- Matched Rise and Fall Times
- Low Propagation Delay Time
- Low 10µA Supply Current
- Low Output Impedance
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IXD_602 (Data Sheet) The IXDF602/IXDI602/IXDN602 dual high-speed gate drivers are especially well suited for driving the latest IXYS MOSFETs and IGBTs. Each of the two outputs can source and sink 2A of peak current while producing voltage rise and fall times of less than 10ns. The input of each driver is TTL and CMOS compatible, and is virtually immune to latch up. Proprietary circuitry eliminates cross conduction and current “shoot-through.” Low propagation delay and fast, matched rise and fall times make the IXDF602/IXDI602/ IXDN602 ideal for high-frequency and high-power applications.
The IXDN602 is configured as a dual non-inverting driver, the IXDI602 is configured as a dual inverting driver, and the IXDF602 is configured as a dual driver, one inverting and one non-inverting. |
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| IXD_604: 4-Amp Dual Low-Side Ultrafast MOSFET Driver |
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- 4A Peak Source/Sink Drive Current
- Wide Operating Voltage Range: 4.5V to 35V
- -40°C to +125°C Extended Operating Temperature Range
- Logic Input Withstands Negative Swing of up to 5V
- Matched Rise and Fall Times
- Low Propagation Delay Time
- Low 10µA Supply Current
- Low Output Impedance
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IXD_604 (Data Sheet) The IXDD604/IXDF604/IXDI604/IXDN604 dual high-speed gate drivers are especially well suited for driving the latest IXYS MOSFETs and IGBTs. Each of the two outputs can source and sink 4A of peak current while producing voltage rise and fall times of less than 10ns. The input of each driver is virtually immune to latch up, and proprietary circuitry eliminates cross conduction and current “shoot-through.” Low propagation delay and fast, matched rise and fall times make the IXDD604/IXDF604/IXDI604/ IXDN604 ideal for high-frequency and high-power applications.
The IXDD604 is a dual non-inverting driver with an enable. The IXDN604 is a dual non-inverting driver, the IXDI604 is a dual inverting driver, and the IXDF604 has one inverting driver and one non-inverting driver. |
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| IXD_609: 9-Amp Low-Side Ultrafast MOSFET Driver |
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- 9A Peak Source/Sink Drive Current
- Wide Operating Voltage Range: 4.5V to 35V
- -40°C to +125°C Extended Operating Temperature Range
- Logic Input Withstands Negative Swing of up to 5V
- Matched Rise and Fall Times
- Low Propagation Delay Time
- Low 10µA Supply Current
- Low Output Impedance
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IXD_609 (Data Sheet) The IXDD609/IXDI609/IXDN609 high-speed gate drivers are especially well suited for driving the latest IXYS MOSFETs and IGBTs. The IXD_609 high-current output can source and sink 9A of peak current while producing voltage rise and fall times of less than 25ns. The input is CMOS compatible, and is virtually immune to latch up. Proprietary circuitry eliminates cross-conduction and current “shoot-through.” Low propagation delay and fast, matched rise and fall times make the IXD_609 family ideal for high-frequency and high-power applications.
The IXDD609 is configured as a non-inverting driver with an enable, the IXDN609 is configured as a non-inverting driver, and the IXDI609 is configured as an inverting driver. |
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| IXD_614: 14-Amp Low-Side Ultrafast MOSFET Driver |
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- 14A Peak Source/Sink Drive Current
- Wide Operating Voltage Range: 4.5V to 35V
- -40°C to +125°C Extended Operating Temperature Range
- Logic Input Withstands Negative Swing of up to 5V
- Matched Rise and Fall Times
- Low Propagation Delay Time
- Low 10µA Supply Current
- Low Output Impedance
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IXD_614 (Data Sheet) The IXDD614 / IXDI614 / IXDN614 high-speed gate drivers are especially well suited for driving the latest IXYS MOSFETs and IGBTs. Each of the two outputs can source and sink 14A of peak current while producing voltage rise and fall times of less than 30ns. Internal circuitry eliminates cross-conduction and current "shoot-through," and the driver is virtually immune to latch up. Low propagation delay and fast, matched rise and fall times make the IXD_614 family ideal for high-frequency and high-power applications.
The IXDD614 is configured as a non-inverting driver with an enable. The IXDN614 is configured as a non-inverting driver, and the IXDI614 is configured as an inverting driver |
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| IX2127: High Voltage Power MOSFET & IGBT Driver |
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- Floating Channel Designed for Bootstrap Operation up to 600V
- Tolerant to Negative Transient Voltages; dV/dt Immune
- Undervoltage Lockout
- 3.3V, 5V, and 12V Input Logic Compatible
- Open-Drain FAULT Indicator Pin Shows Over-Current Shutdown
- Output in Phase with the Input
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IX2127 (Data Sheet) The IX2127 is a high-voltage, high-speed power MOSFET and IGBT driver. High-voltage level-shift circuitry enables this device to operate up to 600V. Clare’s proprietary common-mode design techniques provide stable operation in high dV/dt noise environments. An on-board comparator can be used to detect an over-current condition in the driven MOSFET or IGBT device, and then shut down drive to that device. An open-drain output, /FAULT, indicates that an over-current shutdown has occurred.
The gate driver output typically can source 250mA and sink 500mA, which is suitable for fluorescent lamp ballast, motor control, SMPS, and other converter drive topologies. |
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MX6895: -550 Volt Full Bridge Gate Driver |
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- Full Bridge Gate Driver
- Internal High-Voltage Level-Shift Function
- Negative 550V Lamp Supply Voltage
- 3V to 12V CMOS Logic Compatible
- External Dead Time Control
- 8V to 12V Input Supply Voltage
- No External Bootstrap Capacitors
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MX6895 (Data Sheet) features our high voltage integrated circuit (HVIC) technology integrating high and low side N-channel power MOSFET drivers in a full bridge configuration. The circuit is intended as a commutator for High Intensity Discharge (HID) lamps such as those used in vehicle headlamps, outdoor street lighting, multimedia projectors, retail accent lighting, and warehouse lighting. |
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