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A3980KLP Datasheet(PDF) 6 Page - Allegro MicroSystems

Part # A3980KLP
Description  Automotive DMOS Microstepping Driver with Translator
PDF  18 Pages
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Manufacturer  ALLEGRO [Allegro MicroSystems]
Direct Link  http://www.allegromicro.com
Logo ALLEGRO - Allegro MicroSystems

A3980KLP Datasheet(HTML) 6 Page - Allegro MicroSystems

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Automotive DMOS Microstepping Driver
with Translator
A3980
5
Allegro MicroSystems, Inc.
115 Northeast Cutoff
Worcester, Massachusetts 01615-0036 U.S.A.
1.508.853.5000; www.allegromicro.com
Characteristics
Symbol
Test Conditions
Min.
Typ.1
Max.
Units
Current Control
Blank Time
tBLANK
RT = 56 K , CT = 680 pF
700
950
1200
ns
Fixed Off Time
tOFF
RT = 56 K , CT = 680 pF
30
38
46
μs
Mixed Decay Trip Points
PFDH
PFDL
––
0.60 VDD
0.21 VDD
–
V
Crossover Dead Time
tDT
–
100
475
800
ns
Recommended Reference Input Voltage
VREF
–
0.8
–
4V
Reference Input Current2
IREF
–
–3
0
3
μA
Current Trip-Level Error3
errI
2 V < VREF < 4 V, %ITripMAX = 38%
2 V < VREF < 4 V, %ITripMAX = 70%
2 V < VREF < 4 V, %ITripMAX = 100%
––
±15
±10
±5
%
Thermal Protection
Thermal Shutdown
TSD
–
160
170
180
ºC
Thermal Shutdown Hysteresis
TSDH
––
15
–
ºC
Diagnostics
Max VDS on High-Side Bridge FETs
VDSHT
Sampled after tBLANK + tSCT
–
1.5
–
V
Max VDS on Low-Side Bridge FETs
VDSLT
Sampled after tBLANK + tSCT
–
1.5
–
V
VDS Fault Measurement Delay
tSCT
––
700
–
ns
Minimum Load Current
IOC
w.r.t. ITRIPMAX at Home position
–
35
–
%
VBB Overvoltage Lockout
VOVB
VBB rising
32
34
36
V
VBB Overvoltage Lockout Hysteresis
VOVBH
–
2
–
4V
VREG Undervoltage Lockout
VUVR
VREG falling
5.3
5.7
6.0
V
VDD Enable Threshold
VUVD
VDD rising
2.45
2.7
2.95
V
VDD Enable Threshold Hysteresis
VUVDH
–
50
100
–
mV
ELECTRICAL CHARACTERISTICS (continued) at TJ = –40°C to +150ºC, VBB = 14 V, VDD = 3.0 to 5.5 V (unless otherwise noted)
1Typical data are for initial design estimations only, and assume optimum manufacturing and application conditions. Performance may vary
for individual units, within the specified maximum and minimum limits.
2Negative current is defined as coming out of (sourcing from) the specified device pin.
3errI = (ITrip – IProg) ⁄ IProg, where IProg = %ITripMAX
×ITripMAX.



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