IC-Hersteller Analog Devices

IC-Hersteller (103)

Analog Devices LTC1760CFW | Demoboard DC486B

Dual Smart Battery System Manager

Details

TopologieAbwärtswandler
Eingangsspannung12-20 V
Ausgang 14 A
IC-Revision01A

Beschreibung

The LTC1760 Smart Battery System Manager is a highly-integrated SMBus Level 3 battery charger and selector intended for products using dual smart batteries. Three SMBus interfaces allow the LTC1760 to servo to the internal voltage and currents measured by the batteries while allowing an SMBus Host device to monitor either battery’s status. Charging accuracy is determined by the battery’s internal voltage and current measurements, typically better than ±0.2%.A proprietary PowerPath architecture supports simultaneous charging or discharging of both batteries. Typical battery run times are extended by up to 10%, while charging times are reduced by up to 50%. The LTC1760 automatically switches between power sources in less than 10μs to prevent power interruption upon battery or wall adapter removal.The LTC1760 implements all elements of a version 1.1 “Smart Battery System Manager” except for the generation of composite battery information. An internal multiplexer cleanly switches the SMBus Host to either of the two attached Smart Batteries without generating partial messages to batteries or SMBus Host. Thermistors on both batteries are automatically monitored for temperature and disconnection information (SafetySignal).

Eigenschaften

  • SMBus Charger/Selector for Two Smart Batteries*
  • Voltage and Current Accuracy within 0.2% of Value Reported by Battery
  • Simplifies Construction of “Smart Battery System Manager”
  • Includes All SMBus Charger V1.1 Safety Features
  • Supports Autonomous Operation without a Host
  • Allows Both Batteries to Discharge Simultaneously into Single Load with Low Loss (Ideal Diode)
  • SMBus Switching for Dual Batteries with Alarm Monitoring for Charging Battery at All Times
  • Pin Programmable Limits for Maximum Charge Current and Voltage Improve Safety
  • Fast Autonomous Power Path™ Switching (<10µs)
  • Low Loss Simultaneous Charging of Two Batteries
  • 95% Efficient Synchronous Buck Charger

  • AC Adapter Current Limiting* Maximizes Charge Rate
  • SMBus Accelerator Improves SMBus Timing**
  • Available in 48-Lead TSSOP Package

Typische Anwendungen

  • Standalone Dual Smart Battery Chargers / Battery Backup Systems
  • Portable Computers and Instruments

Weiterführende Informationen

Artikeldaten

Artikel Nr.
Daten­blatt
Simu­lation
Downloads
Status
Produktserie
L(mm)
f(mm)
C
Tol. C
VR(V (DC))
Bauform
Betriebstemperatur
DF(%)
RISO
Keramiktyp
B(mm)
H(mm)
Fl(mm)
Verpackung
L(µH)
IRP,40K(A)
ISAT,10%(A)
ISAT,30%(A)
RDC(mΩ)
fres(MHz)
Material
Muster
WCAP-CSGP MLCCs 16 V(DC), 1.6 mm, –
Simu­lation
Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.
Länge1.6 mm
Kapazität100 nF
Kapazität±10% 
Nennspannung16 V (DC)
Bauform0603 
Betriebstemperatur -55 °C up to +125 °C
Verlustfaktor3.5 %
Isolationswiderstand5 GΩ
KeramiktypX7R Klasse II 
Breite0.8 mm
Höhe0.8 mm
Pad Dimension0.4 mm
Verpackung7" Tape & Reel 
WCAP-CSGP MLCCs 25 V(DC), 2 mm, –
Simu­lation
Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.
Länge2 mm
Kapazität100 nF
Kapazität±10% 
Nennspannung25 V (DC)
Bauform0805 
Betriebstemperatur -55 °C up to +125 °C
Verlustfaktor3.5 %
Isolationswiderstand5 GΩ
KeramiktypX7R Klasse II 
Breite1.25 mm
Höhe0.8 mm
Pad Dimension0.5 mm
Verpackung7" Tape & Reel 
WCAP-CSGP MLCCs 25 V(DC), 3.2 mm, –
Simu­lation
Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.
Länge3.2 mm
Kapazität10 µF
Kapazität±20% 
Nennspannung25 V (DC)
Bauform1210 
Betriebstemperatur -55 °C up to +85 °C
Verlustfaktor10 %
Isolationswiderstand0.01 GΩ
KeramiktypX5R Klasse II 
Breite2.5 mm
Höhe2 mm
Pad Dimension0.75 mm
Verpackung7" Tape & Reel 
WA-SNSR Self-Retaining Spacer, 6.4 mm, 4.8 mm
Simu­lation
Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.
Länge6.4 mm
Bohrung in Blende4.8 mm
Betriebstemperatur -30 °C up to +85 °C
MaterialPA66 
WE-HCI SMT-Hochstrominduktivität, 10.5 mm, –
Simu­lation
Status Aktivi| Produktion ist aktiv. Erwartete Lebenszeit: >10 Jahre.
Länge10.5 mm
Bauform1050 
Betriebstemperatur -40 °C up to +150 °C
Breite10.2 mm
Höhe4.7 mm
Induktivität10 µH
Performance Nennstrom9.5 A
Sättigungsstrom 14 A
Sättigungsstrom @ 30%8.5 A
Gleichstromwiderstand16.3 mΩ
Eigenresonanzfrequenz21 MHz
MaterialSuperflux