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IXDN402PI / N402SI / N402SI-16 IXDI402PI / I402SI / I402SI-16
IXDF402PI / F402SI / F402SI-16
2 Ampere Dual Low-Side Ultrafast MOSFET Drivers
Features
• Built using the advantages and compatibility
of CMOS and IXYS HDMOSTM processes
• Latch-Up Protected Over Entire
Operating Range
• High Peak Output Current: 2A Peak
• Wide Operating Range: 4.5V to 25V
• High Capacitive Load
Drive Capability: 1000pF in <10ns
• Matched Rise And Fall Times
• Low Propagation Delay Time
• Low Output Impedance
• Low Supply Current
• Two Drivers in Single Chip
Applications
• Driving MOSFETs and IGBTs
• Motor Controls
• Line Drivers
• Pulse Generators
• Local Power ON/OFF Switch
• Switch Mode Power Supplies (SMPS)
• DC to DC Converters
• Pulse Transformer Driver
• Class D Switching Amplifiers
General Description
The IXDN402/IXDI402/IXDF402 consists of two 2 Amp
CMOS high speed MOSFET drivers. Each output can
source and sink 2A of peak current while producing voltage
rise and fall times of less than 15ns to drive the latest IXYS
MOSFETs & IGBTs. The input of the driver is TTL or CMOS
compatible and is fully immune to latch up over the entire
operating range. A patent-pending circuit virtually eliminates
cross conduction and current shoot-through. Improved
speed and drive capabilities are further enhanced by very
low and matched rise and fall times.
The IXDN402 is configured as a dual non-inverting gate
driver, the IXDI402 as a dual inverting gate driver, and the
IXDF402 as a dual inverting + non-inverting gate driver.
The IXDN402/IXDI402/IXDF402 family are available in the
standard 8 pin P-DIP (PI), SOP-8 (SI) and SOP-16 (SI-16)
packages respectively.
Ordering Information
Part Number Package Type Temp. Range Configuration
IXDN402PI 8-Pin PDIP
IXDN402SI 8-Pin SOIC
IXDN402SI-16 16-Pin SOIC
IXDI402PI 8-Pin PDIP
IXDI402SI 8-Pin SOIC
IXDI402SI-16 16-Pin SOIC
IXDF402PI 8-Pin PDIP
IXDF402SI 8-Pin SOIC
IXDF402SI-16 16-Pin SOIC
NOTE: Mounting or solder tabs on all packages are connected to ground
Copyright © IXYS CORPORATION 2002
-40°C to +85°C
-40°C to +85°C
-40°C to +85°C
First Release
Dual Non Inverting
Dual Inverting
Inverting + Non Inverting
IXDN402PI / N402SI / N402SI-16 IXDN402PI / N402SI / N402SI-16
IXDF402PI / F402SI / F402SI-16
Figure 1 - IXDN402 Dual 2A Non-Inverting Gate Driver Functional Block Diagram
Vcc
P
OUT A
N
P
OUT B
N
IN A
IN B
GND
ANTI-CROSS
CONDUCTION
CIRCUIT *
ANTI-CROSS
CONDUCTION
CIRCUIT *
Figure 2 - IXDI402 Dual Inverting 2A Gate Driver Functional Block Diagram
P
N
IN A
ANTI-CROSS
CONDUCTION
CIRCUIT *
Vcc
OUT A
P
OUT B
N
IN B
GND
ANTI-CROSS
CONDUCTION
CIRCUIT *
Figure 3 - IXDF402 Inverting + Non-Inverting 2A Gate Driver Functional Block Diagram
Vcc
P
OUT A
N
P
OUT B
N
IN A
IN B
ANTI-CROSS
CONDUCTION
CIRCUIT *
ANTI-CROSS
CONDUCTION
CIRCUIT *
* Patent Pending
GND
2
IXDN402PI / N402SI / N402SI-16 IXDN402PI / N402SI / N402SI-16
IXDF402PI / F402SI / F402SI-16
Absolute Maximum Ratings (Note 1)
Parameter Value
Supply Voltage 25 V
All Other Pins -0.3 V to VCC + 0.3 V
Junction Temperature
Storage Temperature
Lead Temperature (10 sec)
150 oC
-65 oC to 150 oC
300 oC
Operating Ratings
Parameter Value
Operating Temperature Range
Thermal Impedance (To Ambient)
8 Pin PDIP (PI) (θJA)
8 Pin SOIC (SI) (θ
16 Pin SOIC (SI-16) (θ
)
JA
)
JA
-40 oC to 85 oC
210 oC/W
190 oC/W
190 oC/W
Electrical Characteristics
Unless otherwise noted, TA = 25 oC, 4.5V ≤ V
All voltage measurements with respect to GND. IXDD402 configured as described in Test Conditions. All specifications are for one channel.
Symbol Parameter Test Conditions Min Typ Max Units
V
IH
High input voltage 3 V
VIL Low input voltage 2.4 V
VIN Input voltage range -5 V
IIN Input current
VOH High output voltage V
VOL Low output voltage 0.025 V
ROH Output resistance
@ Output high
ROL Output resistance
@ Output Low
I
Peak output current VCC is 18V
PEAK
I
Continuous output
DC
current
tR Rise time CL=1000pF Vcc=18V 7 8 10 ns
tF Fall time CL=1000pF Vcc=18V 7 8 9 ns
t
On-time propagation
ONDLY
delay
t
Off-time propagation
OFFDLY
delay
VCC Power supply voltage 4.5 18 25 V
I
CC
Power supply current V
Specifications Subject To Change Without Notice
≤ 25V .
CC
+ 0.3 V
CC
0V ≤ V
IN
≤ V
CC
-10 10
µA
- 0.025 V
CC
V
CC
= 18V
3.7 4
Ω
V
= 18V 2.5 3
CC
Ω
2 A
1 A
CL=1000pF Vcc=18V 27 28 32 ns
CL=1000pF Vcc=18V 25 26 30 ns
IN
V
IN
V
IN
= 3.5V
= 0V
= + VCC
1 0 3
10
10
mA
µA
µA
3