Features
Use advantages and compatibility to build CMOS and Ixys HDMOSTM processes.
Locking protection
Peak output current: 8A Peak Value
Working between 4.5V and 25V
Disable the ability to output output in the case of failure situation
High -capacity load driving capacity: 2500pf in lt; 15ns
Corresponding up and down time
Low communication delay time
Low output impedance
]
Low power supply current
Application
Drives MOSFET and IGBT
Short -circuit limit DI/DT
motor control
Circuit drive
pulse generator
Local power supply switch
Switching power supply (SMPS)
DC-DC converter
] Pulse transformer driver
Dype switch amplifier
General description
IXDD408 is the minimum switching time of the largest MOSFET and IGBTS for high -speed large -current door drives to drive the largest MOSFET and IGBTS. And the actual frequency limit of the maximum switching time. IXDD480 can generate voltage rise and falling time less than 30ns. The input of the driver is compatible with TTL or CMOS, which is completely immune to the entire operation range. Designed in IXDD408, almost eliminating small internal delay, cross -conducting/current launch. Its characteristics have a very wide safety habits in terms of working voltage and power, making the IXDD408 unparalleled in performance and value. IXDD408 has a unique function that can be disabled under the failure conditions. When the lower logic limit is forced to enter the enable input, the MOSFET (NMOS and PMOS) of the two final output phase is closed. As a result, the output of the IXDD408 enters the three state mode and achieves short circuit detection of MOSFET/IGBT in the following circumstances. This helps to prevent damage. If this is the case, MOSFET/IGBT may occur suddenly due to DV/DT overvoltage transmission. IXDD408 provided in standard 8-pin P-DIP (PI), SOP-8 (SI), 5-to-220 (CI) and -263 (YI) surface installation components.
Electrical features
Unless there are other instructions, other ta 25 OC, 4.5V ≤VCC≤25V. All voltage measurements related to ground. Configure IXDD408 according to the description in the test conditions.
Note 1: The parameter operating device that exceeds the absolute maximum rated value " beyond the "absolute maximum rated value " may cause permanent equipment damage. Typical values indicate the conditions for the operation of the device