IRS26310DJPBF International Rectifier, IRS26310DJPBF Datasheet - Page 26

IC DRIVER BRIDGE 3-PHASE 44-PLCC

IRS26310DJPBF

Manufacturer Part Number
IRS26310DJPBF
Description
IC DRIVER BRIDGE 3-PHASE 44-PLCC
Manufacturer
International Rectifier
Datasheet

Specifications of IRS26310DJPBF

Configuration
3 Phase Bridge
Input Type
Non-Inverting
Delay Time
530ns
Current - Peak
200mA
Number Of Configurations
1
Number Of Outputs
3
High Side Voltage - Max (bootstrap)
600V
Voltage - Supply
12 V ~ 20 V
Operating Temperature
-40°C ~ 125°C
Mounting Type
Surface Mount
Package / Case
44-PLCC (32 Leads)
Peak Output Current
200mA
Input Delay
530ns
Output Delay
530ns
Supply Voltage Range
12V To 20V
Driver Case Style
LCC
No. Of Pins
44
Operating Temperature Range
-40°C To +125°C
Rohs Compliant
Yes
Device Type
High Side / Low Side
Family Hvic
General Purpose HVICs
Channels
6
Topology
Three Phase
Application
General Purpose / Motor Control / PDP
Voffset
600
Io+ (ma)
200
Io- (ma)
350
Shutdown / Reset
Yes
Separate Power And Logic Ground
Yes
Integrated Bootstrap Diode
Yes
Over Current Protection
Yes
Uvlo
Vcc / Vbs
Vbsuv+ / Vccuv+ Min (v)
10.4
Vbsuv+ / Vccuv+ Typ (v)
11.1
Vbsuv+ / Vccuv+ Max (v)
11.6
Vbsuv- / Vccuv- Min (v)
10.2
Vbsuv- / Vccuv- Typ (v)
10.9
Dt / Sdt Min (ns)
190
Dt / Sdt Typ (ns)
290
Dt / Sdt Max (ns)
420
T On Min (ns)
400
T On Typ (ns)
530
T On Max (ns)
750
T Off Min (ns)
400
T Off Typ (ns)
530
T Off Max (ns)
750
Fault Reporting
Yes
Package
44 Lead
Part Status
Active & Preferred
Special Features
DC Bus Sensing with Over Voltage Protection
Lead Free Status / RoHS Status
Lead free / RoHS Compliant

Available stocks

Company
Part Number
Manufacturer
Quantity
Price
Part Number:
IRS26310DJPBF
Manufacturer:
International Rectifier
Quantity:
10 000
Part Number:
IRS26310DJPBF
Manufacturer:
IR
Quantity:
8 000
IRS26310DJPbF
Table 4: DCbus OV, UVLO, ITRIP, EN, RCIN, & FAULT truth table
Advanced Input Filter
The advanced input filter allows an improvement in the input/output pulse symmetry of the HVIC and helps to reject
noise spikes and short pulses. This input filter has been applied to the HIN, LIN, and EN inputs. The working
principle of the new filter is shown in Figures 17 and 18.
Figure 17 shows a typical input filter and the asymmetry of the input and output. The upper pair of waveforms
(Example 1) show an input signal with a duration much longer then t
; the resulting output is approximately the
FIL,IN
difference between the input signal and t
. The lower pair of waveforms (Example 2) show an input signal with a
FIL,IN
duration slightly longer then t
; the resulting output is approximately the difference between the input signal and
FIL,IN
t
.
FIL,IN
Figure 18 shows the advanced input filter and the symmetry between the input and output. The upper pair of
waveforms (Example 1) show an input signal with a duration much longer then t
; the resulting output is
FIL,IN
approximately the same duration as the input signal. The lower pair of waveforms (Example 2) show an input signal
with a duration slightly longer then t
; the resulting output is approximately the same duration as the input signal.
FIL,IN
Figure 17: Typical input filter
Figure 18: Advanced input filter
Short-Pulse / Noise Rejection
This device’s input filter provides protection against short-pulses (e.g., noise) on the input lines. If the duration of the
input signal is less than t
, the output will not change states. Example 1 of Figure 19 shows the input and output
FIL,IN
in the low state with positive noise spikes of durations less than t
; the output does not change states. Example 2
FIL,IN
of Figure 19 shows the input and output in the high state with negative noise spikes of durations less than t
; the
FIL,IN
output does not change states.
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