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Data Sheet PD-6.074 IR2110L6 HIGH SIDE DRIVER Features


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Data Sheet PD-6.074
IR2110L6
HIGH SIDE DRIVER
Features
Floating channel designed bootstrap operation Fully operational +600V Tolerant negative transient voltage dV/dt immune Gate drive supply range from Undervoltage lockout both channels Separate logic supply range from Logic power ground offset CMOS Schmitt-triggered inputs with pull-down Cycle cycle edge-triggered shutdown logic Matched propagation delay both channels Outputs phase with inputs
Product Summary
VOFFSET IO+/VOUT ton/off (typ.) Delay Matching 600V max.
Description
IR2110L6 high voltage, high speed power MOSFET IGBT driver with independent high side referenced output channels. Proprietary HVIC latch immune CMOS technologies enable ruggedized monolithic construction. Logic inputs compatible with standard CMOS LSTTL outputs. output drivers feature high pulse current buffer stage designed minimum driver cross-conduction. Propagation delays matched simplify high frequency applications. floating channel used drive N-channel power MOSFET IGBT high side configuration which operates volts.
Absolute Maximum Ratings
Absolute Maximum Ratings indicate sustained limits beyond which damage device occur. voltage parameters absolute voltages referenced COM. Thermal Resistance Power Dissipation ratings measured under board mounted still conditions.
Parameter
dVs/dt High Side Floating Supply Voltage High Side Floating Supply Offset Voltage High Side Floating Output Voltage Side Fixed Supply Voltage Side Output Voltage Logic SupplyVoltage Logic Supply Offset Voltage Logic Input Voltage (HIN, Allowable Offset Supply Voltage Transient (Figure Package Power Dissipation +25°C Thermal Resistance, Junction Ambient Junction Temperature Storage Temperature Lead Temperature (Soldering, seconds) Weight
Min.
-0.5 -0.5 -0.5 -0.5
Max.
Units
V/ns °C/W
(typical)
Order
IR2110L6
Recommended Operating Conditions
Input/Output logic timing diagram shown Figure proper operation device should used within recommended conditions. offset ratings tested with supplies biased differential. Typical ratings other bias conditions shown Figures
Parameter
High Side Floating Supply Absolute Voltage High Side Floating Supply Offset Voltage High Side Floating Output Voltage Side Fixed Supply Voltage Side Output Voltage Logic Supply Voltage Logic Supply Offset Voltage Logic Input Voltage (HIN,
Min.
Max.
Units
Dynamic Electrical Characteristics
VBIAS (VCC VBS, 15V, unless otherwise specified. dynamic electrical characteristics measured using test circuit shown Figure
25°C Parameter
toff Turn-On Propagation Delay Turn-Off Propagation Delay Shutdown Propagation Delay Turn-On RiseTime Turn-Off Fall Time Delay Matching, Turn-On/Off
Min.
Typ.
Max.
125°C Min. Max. Units
Test Conditions
600V 600V 1000pf 1000pf
|Hton Lton| |Htoff Ltoff|
Typical Connection
600V 500V
LOAD
Order
IR2110L6
Static Electrical Characteristics
VBIAS (VCC, VBS, VDD) 15V, unless otherwise specified. VIN, parameters referenced applicable three logic input pins: HIN, parameters referenced applicable respective output pins:
25°C Parameter
Logic Input Voltage
Min.
12.5
Typ.
125°C Max. Min. Max. Units
13.3
Test Conditions
=VIH, =VIH, 600V =0V, =0V,
Logic Input Voltage
IIN+ IINVBSUV+ VBSUVVCCUV+ VCCUVI
High Level Output Voltage, VBIAS Level Output Voltage, Offset Supply Leakage Current Quiescent Supply Current Quiescent Supply Current Quiescent Supply Current Logic Input Bias Current Logic Input Bias Current Supply Undervoltage Positive Going Threshold Supply Undervoltage Negative Going Threshold Supply Undervoltage Positive Going Threshold Supply Undervoltage Negative Going Threshold Output High Short Circuit Pulsed Current Output Short Circuit Pulsed Current
15V,
Order
IR2110L6
600V
Figure Input/Output Timing Diagram
Figure Floating Supply Voltage Transient Test Circuit
600V)
Figure Switching Time Test Circuit
Figure Switching Time Waveform Definition
Figure Shutdown Waveform Definitions
Figure Delay Matching Waveform Definitions
Order
IR2110L6
Turn-On Delay Time (ns) Turn-On Delay Time (ns)
Max.
Max.
Typ.
Typ.
Temperature (°C)
VBIAS Supply Voltage
Figure Turn-On Time Temperature
Figure Turn-On Time Voltage
Turn-Off Delay Time (ns) Turn-Off Delay Time (ns)
Max.
Typ.
Max.
Typ.
Temperature (°C)
VBIAS Supply Voltage
Figure Turn-Off Time Temperature
Figure Turn-Off Time Voltage
Shutdown Delay Time (ns) Shutdown Delay time (ns)
Max.
Max.
Typ.
Typ.
Temperature (°C)
VBIAS Supply Voltage
Figure Shutdown Time Temperature
Figure Shutdown Time Voltage
Order
IR2110L6
Turn-On Rise Time (ns) Turn-On Rise Time (ns)
Max.
Max. Typ.
Typ.
Temperature (°C)
VBIAS Supply Voltage
Figure 10A. Turn-On Rise Time Temperature
Figure 10B. Turn-On Rise Time Voltage
Turn-Off Fall Time (ns) Turn-Off Fall Time (ns)
Max.
Typ.
Max. Typ.
Temperature (°C)
VBIAS Supply Voltage
Figure 11A. Turn-Off Fall Time Temperature
Figure 11B. Turn-Off Fall Time Voltage
15.0
15.0
12.0 Logic Input Threshold
Min.
12.0 Logic Input Threshold
Min.
Temperature (°C)
12.5 17.5 Logic Supply Voltage
Figure 12A. Logic Input Threshold Temperature
Figure 12B. Logic Input Threshold Voltage
Order
IR2110L6
15.0 15.0 12.0 Logic Input Threshold Logic Input Threshold 12.0
Max.
Max.
Temperature (°C)
12.5 17.5 Logic Supply Voltage
Figure 13A. Logic Input Threshold Temperature
Figure 13B. Logic Input Threshold Voltage
5.00
5.00
4.00 High Level Output Voltage High Level Output Voltage
4.00
3.00
3.00
2.00
Max.
2.00
Max.
1.00
1.00
0.00
0.00 Temperature (°C) VBIAS Supply Voltage
Figure 14A. High Level Output Temperature
Figure 14B. High Level Output Voltage
1.00
15.0
0.80 Level Output Voltage Logic Input Threshold
12.0
0.60
0.40
Min.
0.20
Max.
0.00 Temperature (°C)
12.5 17.5 Logic Supply Voltage
Figure 15A. Level Output Temperature
Figure 15B. Level Output Voltage
Order
IR2110L6
Offset Supply Leakage Current (µA) Offset Supply Leakage Current (µA)
Max.
Max.
Temperature (°C)
Boost Voltage
Figure 16A. Offset Supply Current Temperature
Figure 16B. Offset Supply Current Voltage
Supply Current (µA) Supply Current (µA)
Max.
Typ.
Max.
Typ.
Temperature (°C)
Floating Supply Voltage
Figure 17A. Supply Current Temperature
Figure 17B. Supply Current Voltage
Supply Current (µA) Supply Current (µA)
Max.
Typ.
Max.
Typ.
Temperature (°C)
Fixed Supply Voltage
Figure 18A. Supply Current Temperature
Figure 18B. Supply Current Voltage
Order
IR2110L6
Supply Current (µA) Supply Current (µA)
Max. Max. Typ.
Typ.
Temperature (°C)
12.5 17.5 Logic Supply Voltage
Figure 19A. Supply Current Temperature
Figure 19B. Supply Current Voltage
Logic Input Bias Current (µA)
Logic Input Bias Current (µA)
Max.
Typ.
Max.
Temperature (°C)
12.5 17.5 Logic Supply Voltage
Figure 20A. Logic Input Current Temperature
Figure 20B. Logic Input Current Voltage
5.00
5.00
Logic Input Bias Current (µA)
3.00
Logic Input Bias Current (µA)
4.00
4.00
3.00
2.00
2.00
1.00
Max.
Max.
1.00
0.00 Temperature (°C)
0.00 12.5 17.5 Logic Supply Voltage
Figure 21A. Logic Input Current Temperature
Figure 21B. Logic Input Current Voltage
Order
IR2110L6
11.0 11.0 Undervoltage Lockout 10.0
Max.
Undervoltage Lockout
10.0
Max.
Typ.
Typ.
Min.
Min.
Temperature (°C)
Temperature (°C)
Figure Undervoltage Temperature
Figure Undervoltage Temperature
11.0
11.0
Undervoltage Lockout
Max.
Undervoltage Lockout
10.0
10.0
Max.
Typ.
Min.
Typ.
Min.
Temperature (°C)
Temperature (°C)
Figure Undervoltage Temperature
Figure Undervoltage Temperature
5.00
5.00
4.00 Output Source Current Output Source Current
4.00
3.00
Typ. Min.
3.00
2.00
2.00
Typ.
1.00
1.00
Min.
0.00
0.00 Temperature (°C) BIAS Supply Voltage
Figure 26A. Output Source Current Temperature
Figure 26B. Output Source Current Voltage
Order
IR2110L6
5.00 5.00 4.00 Output Sink Current Output Sink Current 4.00
3.00
Typ. Min.
3.00
2.00
2.00
Typ.
1.00
1.00
Min.
0.00
0.00 Temperature (°C) BIAS Supply Voltage
Figure 27A. Output Sink Current Temperature
Figure 27B. Output Sink Current Voltage
320V
320V
Junction Temperature (°C)
140V
140V
Junction Temperature (°C)
1E+2
1E+3
1E+4 Frequency (Hz)
1E+5
1E+6
1E+2
1E+3
1E+4 Frequency (Hz)
1E+5
1E+6
Figure IR2110L6 Frequency (IRFBC20) RGATE
Figure IR2110L6 Frequency (IRFBC30) RGATE
320V
140V
320V
140V
Junction Temperature (°C) Junction Temperature (°C)
1E+2
1E+3
1E+4 Frequency (Hz)
1E+5
1E+6
1E+2
1E+3
1E+4 Frequency (Hz)
1E+5
1E+6
Figure IR2110L6 Frequency (IRFBC40) RGATE
Figure IR2110L6TJ Frequency (IRFPE50) RGATE
Order
IR2110L6
320V 140V
320V
140V
Junction Temperature (°C) Junction Temperature (°C)
1E+2
1E+3
1E+4 Frequency (Hz)
1E+5
1E+6
1E+2
1E+3
1E+4 Frequency (Hz)
1E+5
1E+6
Figure IR2110L6STJ Frequency (IRFBC20) RGATE
Figure IR2110L6STJ Frequency (IRFBC30) RGATE
320V 140V
320V 140V
Junction Temperature (°C)
Junction Temperature (°C)
1E+2
1E+3
1E+4 Frequency (Hz)
1E+5
1E+6
1E+2
1E+3
1E+4 Frequency (Hz)
1E+5
1E+6
Figure IR2110L6STJ Frequency (IRFBC40) RGATE
Figure IR2110L6STJ Frequency (IRFPE50) RGATE
20.0
Typ.
-4.0
Logic Supply Offset Voltage
-2.0 Offset Supply Voltage
16.0
12.0
-6.0
Typ.
-8.0
-10.0 Floating Supply Voltage
Fixed Supply Voltage
Figure Maximum Negative Offset Supply Voltage
Figure Maximum Positive Offset Supply Voltage
Order
IR2110L6
Functional Block Diagram
LEVEL SHIFT
DETECT PULSE FILTER
/VCC LEVEL SHIFT
PULSE
DETECT
/VCC LEVEL SHIFT
DELAY
Lead Definitions
Lead Symbol Description
Logic supply Logic input high side gate driver output (HO), phase Logic input shutdown Logic input side gate driver output (LO), phase Logic ground High side floating supply High side gate drive output High side floating supply return side supply side gate drive output side return
Order
IR2110L6
Case Outline Dimensions MO-036AB
Assignment
WORLD HEADQUARTERS: Kansas St., Segundo, California 90245, Tel: (310) 3331 EUROPEAN HEADQUARTERS: Hurst Green, Oxted, Surrey 9BB, Tel: 1883 732020 CANADA: 7321 Victoria Park Ave., Suite 201, Markham, Ontario 2Z8, Tel: (905) 1897 GERMANY: Saalburgstrasse 157, 61350 Homburg Tel: 6172 96590 ITALY: Liguria 10071 Borgaro, Torino Tel: 0111 EAST: Bldg., 3-30-4 Nishi-Ikeburo 3-Chome, Toshima-Ki, Tokyo Japan Tel: 3983 0086 SOUTHEAST ASIA: Outram Road, #10-02 Boon Liat Building, Singapore 0316 Tel: 8371 http://www.irf.com/ Data specifications subject change without notice. 6/96
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