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TD310IDSTN/a612avaiTRIPLE IGBT/MOS DRIVER WITH CURRENT SENSE
TD310IDTSTN/a2500avaiTRIPLE IGBT/MOS DRIVER WITH CURRENT SENSE
TD310INSTN/a3000avaiTRIPLE IGBT/MOS DRIVER WITH CURRENT SENSE


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TD310ID-TD310IDT-TD310IN
TRIPLE IGBT/MOS DRIVER WITH CURRENT SENSE
THREE POWER IGBT/MOS AND PULSE TRANSFORMER DRIVERS CURRENT SENSE COMPARATOR UNCOMMITTED OP-AMP 0.6 A PER CHANNEL PEAK OUTPUT
CURRENT CAPABILITY LOW OUTPUT IMPEDANCE TYP: 7Ω AT
200mA CMOS/LSTTL COMPATIBLE INVERTING
INPUT WITH HYSTERESIS 4V TO 16V SINGLE SUPPLY OPERATION LOW BIAS CURRENT TYP: 1.5mA ADJUSTABLE UNDERVOLTAGE LOCKOUT
LEVEL STAND-BY MODE CHANNEL PARALLELING CAPABILITY
DESCRIPTION

The TD310 is designed to drive one, two or three
Power IGBT/MOS and has driving capability for
pulse transformer. So it is perfectly suited to
interface control IC with Power Switches in low
side or half-bridge configuration.
TD310 includes a current sense comparator which
inhibit the output drivers in case of overcurrent. An
alarm output signals the even to a controller.
TD310 also includes an uncommitted op-amp
which can be used for current measurement (as
an amplifier before the A/D input of a
microcontroller) of for other general purpose.
Programmable undervoltage lockout and standby
mode make TD310 suitable for a large area of
environment and application.
Typical applications are low side IGBT and power
MOSFET drive in three phase systems, pulse
transformer drive, and general purpose pulse

ORDER CODE
N = Dual in Line Package (DIP) D = Small Outline Package (SO) - also available in Tape & Reel (DT)
PIN CONNECTIONS (top view)
TD310

TRIPLE IGBT/MOS DRIVER WITH CURRENT SENSE
TD310
BLOCK DIAGRAM
ABSOLUTE MAXIMUM RATINGS
OPERATING CONDITIONS
INSTRUCTION FOR USE

1 - The TD310 supply voltage must be decoupled with a 1μF min. capacitor.
2 - If the application involving TD310 requires maximum output current capability, this current must be
pulsed: pulse width 1μsec, duty cycle 1% at Tamb.
TD310
ELECTRICAL CHARACTERISTICS

VCC = 15V, Tamb = 25°C (unless otherwise specified)

TD310
UVLO/stdby pin functioning modes

Due to the wide supply voltage range of the TD310, the UVLO function (Under Voltage Lock Out) is
externally adjustable by a resistor bridge.
The bridge rate can be calculated in relation with the expected UVLO protection level as follows :
VUVLO x = 1.2V (where R1 is the lower resistor of the bridge)
The internal resistor sets the default UVLO value to 12V (*) and might influence the external bridge rate if
the values of the external resistors are too high. Moreover, the internal resistor ratio is accurate, but the
the tolerance on the absolute value of each internal resistor (typically 140k and 1.26M) is about +/-20%.
If an external bridge is used, we recommend to choose resistor values not greater than 10k.
The standby threshold value depends of the UVLO value as follows:
Vstdby = 0.7 /1.2 VUVLO
Both UVLO and stdby functions can be inhibited by connecting the UVLO/stdby pin to VCC+ via a pull up
resistor (ex 150kΩ).
The following table summarizes the functions of the TD310 :
Configuration 1 : UVLO/stdby = H

The TD310 is in a normal consumption state (1.5mA), the operational amplifier is normally functioning and
the buffer outputs are determined by the sense comparator inputs, the enable inputs and the buffer inputs.
Configuration 2 : UVLO/stdby = L

The TD310 is in a low consumption state (standby mode 30μA), the buffer outputs are set to low state and
the operational amplifier is in high impedance state.
Configuration 3 : UVLO/stdby = M

The VCC supply voltage is between VUVLO and Vstdby (**). The TD310 remains in a normal
consumption state and the operational amplifier is normally functioning but the buffer outputs and the
alarm pin are set to low state.
(*) If the UVLO level remains unadjusted, it is recommended to bypass the UVLO/stdby pin with a 1nF capacitor.
(**) If the supply voltage falls below Vstdby, the TD310 is set in standby mode (configuration 2). R2+---------------------
TD310
TIMING DIAGRAM
TD310
TYPICAL APPLICATIONS

Figure 1 : HALF BRIDGE DRIVE IN THREE PHASE MOTOR SYSTEM
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