IR2214SSPBF International Rectifier, IR2214SSPBF Datasheet

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IR2214SSPBF

Manufacturer Part Number
IR2214SSPBF
Description
IC DRIVER HALF BRIDGE SGL 24SSOP
Manufacturer
International Rectifier
Datasheets

Specifications of IR2214SSPBF

Configuration
Half Bridge
Input Type
Non-Inverting
Delay Time
440ns
Current - Peak
2A
Number Of Configurations
1
Number Of Outputs
2
High Side Voltage - Max (bootstrap)
1200V
Voltage - Supply
11.5 V ~ 20 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
24-SSOP
Family Hvic
General Purpose HVICs
Channels
2
Topology
Half Bridge
Application
General Purpose / Motor Control
Voffset
1200
Io+ (ma)
2000
Io- (ma)
3000
Separate Power And Logic Ground
Yes
Uvlo
Vcc / Vbs
Vbsuv+ / Vccuv+ Min (v)
9.3
Vbsuv+ / Vccuv+ Typ (v)
10.2
Vbsuv+ / Vccuv+ Max (v)
11.4
Vbsuv- / Vccuv- Min (v)
8.7
Vbsuv- / Vccuv- Typ (v)
9.3
Vbsuv- / Vccuv- Max (v)
10.3
Dt / Sdt Min (ns)
5700
Dt / Sdt Typ (ns)
9250
Dt / Sdt Max (ns)
13500
T On Min (ns)
220
T On Typ (ns)
440
T On Max (ns)
660
T Off Min (ns)
220
T Off Typ (ns)
440
T Off Max (ns)
660
Fault Reporting
Yes
Package
24 Lead
Part Status
Active & Preferred
Special Features
Soft Shutdown and Desaturation Detection
For Use With
IRMD2214SS - KIT DESIGN EVAL BOARD IR2214SS
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
IR2214SSPBF
Manufacturer:
IR
Quantity:
1 670
Features
Description
The IR211(4,41)/IR221(4,41) gate driver family is suited to drive a single half
bridge in power switching applications. These drivers provide high gate driving
capability (2 A source, 3 A sink) and require low quiescent current, which allows
the use of bootstrap power supply techniques in medium power systems. These
drivers feature full short circuit protection by means of power transistor
desaturation detection and manage all half-bridge faults by smoothly turning off
the desaturated transistor through the dedicated soft shutdown pin, therefore
preventing over-voltages and reducing EM emissions. In multi-phase systems,
the IR211(4,41)/ IR221(4,41) drivers communicate using a dedicated local
network (SY_FLT and FAULT/SD signals) to properly manage phase-to-phase
short circuits. The system controller may force shutdown or read device fault
state through the 3.3 V compatible CMOS I/O pin (FAULT/SD). To improve the
signal immunity from DC-bus noise, the control and power ground use dedicated
pins enabling low-side emitter current sensing as well. Undervoltage conditions
in floating and low voltage circuits are managed independently.
Typical connection
www.irf.com
Floating channel up to +600 V or +1200 V
Soft over-current shutdown
Synchronization signal to synchronize shutdown with the other phases
Integrated desaturation detection circuit
Two stage turn on output for di/dt control
Separate pull-up/pull-down output drive pins
Matched delay outputs
Undervoltage lockout with hysteresis band
LEAD-FREE
(Up to 1200 V)
DC BUS
15 V
Control
uP,
VCC
LIN
HIN
VSS
FAULT/SD
FLT_CLR
SY_FLT
HALF-BRIDGE GATE DRIVER IC
SSDH
SSDL
COM
HOP
HON
DSH
LON
LOP
DSL
VB
VS
IR2114SSPbF/IR21141SSPbF
IR2214SSPbF/IR22141SSPbF
Product Summary
Package
Deadtime matching (max)
Desat blanking time (typ)
Soft shutdown time (typ)
DSH, DSL input voltage
Deadtime (typ)
threshold (typ)
Data Sheet No. PD60213 revG
I
O
V
24-Lead SSOP
+/- (min)
V
OFFSET
OUT
DC+
DC-
10.4 V – 20 V
1200 V max.
1.0 A / 1.5 A
Motor
600 V or
9.25 µs
330
75 ns
8.0 V
3
1
µs
ns

Related parts for IR2214SSPBF

IR2214SSPBF Summary of contents

Page 1

... Undervoltage conditions in floating and low voltage circuits are managed independently. Typical connection BUS uP, Control (Up to 1200 V) www.irf.com IR2114SSPbF/IR21141SSPbF IR2214SSPbF/IR22141SSPbF HALF-BRIDGE GATE DRIVER IC Product Summary Deadtime matching (max) Desat blanking time (typ) DSH, DSL input voltage Soft shutdown time (typ) Package VCC VB ...

Page 2

Absolute Maximum Ratings Absolute maximum ratings indicate sustained limits beyond which damage to the device may occur. All voltage parameters are absolute voltages referenced to V and power dissipation ratings are measured under board mounted and still air conditions. Symbol ...

Page 3

Static Electrical Characteristics COM = 600 V or 1200 V and Pins Symbol Definition V ...

Page 4

Pins: HOP, LOP Symbol V High level output voltage Output high first stage short circuit pulsed current O1+ Output high second stage short circuit pulsed current I O2+ Note 1: Refer to Fig. 5 Pins: HON, LON, ...

Page 5

AC Electrical Characteristics and °C unless otherwise specified Symbol Definition t Turn on propagation delay on t Turn off propagation delay off t ...

Page 6

CCUV BSUV Figure 1: Undervoltage Diagram FAULT/SD SY_FLT schmitt trigger Figure 3: FAULT/SD and SY_FLT Diagram 200ns oneshot on/off internal signal Figure 5: HOP and ...

Page 7

HIN LIN (HOP=HON) LO (LOP=LON) HIN/LIN DSH/DSL SSD Driver Enable HO/LO Figure 9: Soft Shutdown Timing Waveform www.irf.com IR211(4,41)/IR221(4,41)SSPbF 50% 50 out 90% 10% Figure 7: Switching Time Waveforms Ton1 Io1+ Io2+ ...

Page 8

HIN LIN 8V 8V DSH DSL 50% t SY_FLT,DESAT1 SY_FLT t SY_FLT,DESAT2 FAULT/SD FLTCLR t t DESAT2 DESAT1 90% 50% 50% SoftShutdown 10% HON Turn-On Propagation Delay LON LIN 50% HIN HO (HOP=HON) LO (LOP=LON) ...

Page 9

Lead Assignments 24-Lead SSOP Lead Definitions Symbol V Low side gate driver supply CC V Logic ground SS HIN Logic input for high side gate driver outputs (HOP/HON) LIN Logic input for low side gate driver outputs (LOP/LON) Dual function ...

Page 10

VCC SCHMITT TRIGGER HIN INPUT INPUT SHOOT HOLD THROUGH LOGIC LIN PREVENTION (DT) Deadtime UV_VCC DETECT UV_VCC SSD HOLD FAULT LOGIC SY_FLT managemend FAULT SD FAULT/SD (See figure 14) FLT_CLR VSS FUNCTIONAL BLOCK DIAGRAM FAULT DESAT EVENT Soft ShutDown Stable ...

Page 11

HO/LO Status 0 1 SSD LO/HO LO /HO n-1 n-1 IR2214 Logic Table: Output Drivers Status Description INPUTS Operation Hin Lin FLT_CLR Shutdown Fault Clear Normal Operation ...

Page 12

Features Description 1.1 Start-Up Sequence At power supply start-up recommended to keep the FLT_CLR pin active until the supply voltages are properly established. This prevents spurious diagnostic signals being generated. All protection functions are operating independently from ...

Page 13

One Shot DesatHS/LS Figure 13: High and Low Side Output Stage SY_FLT (external hold) FAULT/SD (external hard shutdown) FLTCLR The external sensing diode should have BV > 600 V or 1200 V and low stray capacitance (in order ...

Page 14

FAULT VCC VB VCC VB LIN HOP LIN HOP HIN HON HIN HON FLT_CLR SSH FLT_CLR SSH DSH DSH SY_FLT SY_FLT VS VS LOP LOP FAULT/SD FAULT/SD LON LON SSL SSL DSL DSL VSS COM VSS COM phase U phase ...

Page 15

HIN LIN DSH DSL SY_FLT FAULT/SD FLT_CLR HO(HOP/HON) LO(LOP/LON) Figure 17: I/O Timing Diagram with SY_FLT and FAULT/SD as Output SY_FLT FAULT/SD FLT_CLR HO (HOP/HON) LO (LOP/LON) Figure 18: I/O Logic Diagram with SY_FLT and FAULT/SD as Input Referred to ...

Page 16

Sizing Tips 2.1 Bootstrap Supply The V voltage provides the supply to the high side BS driver circuitry of the gate driver. This supply sits on top of the V voltage and so it must be floating. The S ...

Page 17

Some Important Considerations Voltage Ripple: There are three different cases to consider (refer to Fig. 19). I < the load current flows in the low side LOAD IGBT (resulting CEon = − − V ...

Page 18

I Vcc/Vb avg C RES R DRp R Gon COM/Vs Figure 21: R Sizing Gon = + where TOT DRp Gon R = gate on-resistor Gon R = driver equivalent on-resistance DRp When R > 7 Ω, ...

Page 19

As an example, table 3 reports R (calculated with the Goff above mentioned disequation) for two popular IGBTs to withstand dV / V/ns . out IGBT Qge Qgc IRGP30B120K( IRG4PH30K( ...

Page 20

PCB Layout Tips 3.1 Distance from High to Low Voltage The IR2x14/1 pin out maximizes the distance between floating (from DC- to DC+) and low voltage pins. It’s strongly recommended to place components tied to floating voltage on the ...

Page 21

Figures 25-83 provide information on the experimental performance of the IR211(4,41)/ IR221(4,41)SSPbF HVIC. The line plotted in each figure is generated from actual lab data. A large number of individual samples from multiple wafer lots were tested at three temperatures ...

Page 22

Exp. 1.50 1.10 -50 - Temperature ( C) Figure 31. V Logic Input Voltage vs. Temperature IH 0.60 Exp. 0.50 0.40 0.30 0.20 0.10 0.00 -50 - Temperature ( ...

Page 23

Exp. 1.70 1.40 1.10 -50 - Temperature ( C) Figure 37. V FLTCLR Logic Input Voltage vs. IH Temperature 0.60 0.50 Exp. 0.40 0.30 0.20 -50 - Temperature ( C) ...

Page 24

Exp. 1.60 1.20 0.80 -50 - Temperature ( C) Figure 43. V SYFLT Logic Input Voltage vs. Temperature IH 0.60 0.50 Exp. 0.40 0.30 0.20 -50 - Temperature ( C) ...

Page 25

Exp. 375 200 -50 - Temperature ( C) Figure 49 vs. Temperature Exp -50 - Temperature ( C) Figure 51. V ...

Page 26

Exp. 30 -50 - Temperature ( C) Figure 55. SY_FLT Open Drain Resistance vs. Temperature 490 430 Exp. 370 310 250 -50 - Temperature ( C) Figure 57. ...

Page 27

Exp -50 - Temperature ( C) Figure 61. TfH Turn Off Fall Time vs. Temperature 780 660 540 Exp. 420 300 -50 - Temperature ( C) Figure ...

Page 28

Exp -50 - Temperature ( C) Figure 67. t vs. Temperature DSAT2 4.50 3.50 2.50 Exp. 1.50 0.50 -50 - Temperature ( C) Figure 69. t vs. ...

Page 29

Exp. 1.10 0.75 0.40 -50 - Temperature ( C) Figure 73. IO2+L SC Pulsed Current vs. Temperature 3.50 3.05 Exp. 2.60 2.15 1.70 1.25 -50 - Temperature ( C) Figure ...

Page 30

Exp -50 - Temperature ( C) Figure 79. IO1+L SC Pulsed Current vs. Temperature 0.02 -0.03 Exp. -0.08 -0.13 -0.18 -0.23 -0.28 -50 - Temperature ( C) ...

Page 31

Case Outline www.irf.com IR211(4,41)/IR221(4,41)SSPbF 31 ...

Page 32

F NOTE : CONTROLLING DIM ENSION CARRIER TAPE DIMENSION FOR 24SSOP:2000 units per reel Code REEL DIMENSIONS FOR 24SSOP Code ...

Page 33

... SSOP IR2214SSPbF 24-Lead SSOP IR22141SSPbF 24-Lead SSOP Tape & Reel IR2114SSPbF 24-Lead SSOP Tape & Reel IR21141SSPbF 24-Lead SSOP Tape & Reel IR2214SSPbF 24-Lead SSOP Tape & Reel IR22141SSPbF WORLDWIDE HEADQUARTERS: 233 Kansas Street, El Segundo, CA 90245 Tel: (310) 252-7105 http://www.irf.com www ...

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