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AT9919 Datenblatt(PDF) 4 Page - Microchip Technology

Teilenummer AT9919
Bauteilbeschribung  Hysteretic Buck High-Brightness LED Driver with High-Side Current Sensing
PDF  16 Pages
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Hersteller  MICROCHIP [Microchip Technology]
Direct Link  http://www.microchip.com
Logo MICROCHIP - Microchip Technology

AT9919 Datenblatt(HTML) 4 Page - Microchip Technology

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AT9919
DS20005595A-page 4
 2016 Microchip Technology Inc.
1.0
ELECTRICAL CHARACTERISTICS
Absolute Maximum Ratings†
VIN and CS to GND ...................................................................................................................................–0.3V to +45V
VDD, GATE, RAMP, DIM, ADIM to GND......................................................................................................–0.3V to +6V
CS to VIN .....................................................................................................................................................–1V to +0.3V
Operating Temperature Range............................................................................................................. –40°C to +125°C
Junction Temperature.............................................................................................................................................150°C
Storage Temperature Range ...................................................................................................................–65°C to 150°C
Continuous Power Dissipation (TA = +25°C) .......................................................................................................... 1.6W
† Notice: Stresses above those listed under “Absolute Maximum Ratings” may cause permanent damage to the
device. This is a stress rating only, and functional operation of the device at those or any other conditions above those
indicated in the operational sections of this specification is not intended. Exposure to maximum rating conditions for
extended periods may affect device reliability.
ELECTRICAL CHARACTERISTICS
Electrical Specifications: VIN = 12V, VDIM = VDD, VRAMP = GND, CVDD = 1 µF, RCS = 0.5Ω, TA = TJ = –40ºC to
+125ºC (Note 1) unless otherwise noted.
Parameter
Sym.
Min.
Typ. Max.
Unit
Conditions
Input DC Supply Voltage Range
VIN
4.5
40
V
DC input voltage
Internally Regulated Voltage
VDD
4.5
5.5
V
VIN = 6V to 40V
Supply Current
IIN
1.5
mA
GATE open
Shutdown Supply Current
IIN, SDN
900
µA
DIM < 0.7V
Current Limit
IIN, LIM
30
mA
VIN = 4.5V, VDD = 0V
8
VIN = 4.5V, VDD = 4V
Oscillator Frequency
fOSC
2
MHz
VDD Undervoltage Lockout
Threshold
UVLO
4.5
V
VDD rising
VDD Undervoltage Lockout
Hysteresis
UVLOHYST
500
mV
VDD falling
SENSE COMPARATOR
Sense Voltage Threshold High
VCS(HI)
198
230
257
mV
(VIN – VCS) rising
Sense Voltage Threshold Low
VCS(LO)
147
170
195
mV
(VIN – VCS) falling
Average Reference Voltage
VCS(AVG)
186
200
214
mV
VCS(AVG) = 0.5VCS(HI) + 0.5VCS(LO)
Propagation Delay to Output
High
tDPDH
70
ns
Falling edge of
VIN – VCS = VRS(LO) – 70 mV
Propagation Delay to Output
Low
tDPDL
70
ns
Rising edge of
VIN – VCS = VRS(HI) + 70 mV
Current Sense Input Current
ICS
1
µA
VIN – VCS = 200 mV
Current Sense Threshold
Hysteresis
VCS(HYST)
56
80
mV
DIM INPUT
Pin DIM Input High Voltage
VIH
2.2
V
Pin DIM Input Low Voltage
VIL
0.7
V
Turn-on Time
tON
100
ns
DIM rising edge to
VGATE = 0.5 x VDD, CGATE = 2 nF
Turn-off Time
tOFF
100
ns
DIM falling edge to
VGATE = 0.5 x VDD, CGATE = 2 nF
Note 1:
Limits obtained by design and characterization.
2: For design guidance only



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