MAX785SCAI, MAX786, MAX7860AI Selling Leads, Datasheet
MFG:1500 Package Cooled:MAMIX D/C:06+
MAX785SCAI, MAX786, MAX7860AI Datasheet download

Part Number: MAX785SCAI
MFG: 1500
Package Cooled: MAMIX
D/C: 06+
MFG:1500 Package Cooled:MAMIX D/C:06+
MAX785SCAI, MAX786, MAX7860AI Datasheet download

MFG: 1500
Package Cooled: MAMIX
D/C: 06+
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PDF/DataSheet Download
Datasheet: MAX002
File Size: 42133 KB
Manufacturer: FILTRONIC [Filtronic Compound Semiconductors]
Download : Click here to Download
PDF/DataSheet Download
Datasheet: MAX786
File Size: 313172 KB
Manufacturer: MAXIM [Maxim Integrated Products]
Download : Click here to Download
PDF/DataSheet Download
Datasheet: MAX002
File Size: 42133 KB
Manufacturer: FILTRONIC [Filtronic Compound Semiconductors]
Download : Click here to Download
The MAX786 is a system-engineered power-supply controller for notebook computers or similar batterypowered equipment. It provides two high-performance step-down (buck) pulse-width modulators (PWMs) for +3.3V and +5V. Other features include dual, low-dropout, micropower linear regulators for CMOS/RTC back-up, and two precision low-batterydetection comparators.
High efficiency (95% at 2A; greater than 80% at loads from 5mA to 3A) is achieved through synchronous rectification and PWM operation at heavy loads, and Idle ModeTM operation at light loads. The MAX786 uses physically small components, thanks to high operating frequencies (300kHz/200kHz) and a new current-mode PWM architecture that allows for output filter capacitors as small as 30F per ampere of load. Line- and loadtransient responses are terrific, with a high 60kHz unitygain crossover frequency allowing output transients to be corrected within four or five clock cycles. Low system cost is achieved through a high level of integration and the use of low-cost, external N-channel MOSFETs.
Other features include low-noise, fixed-frequency PWM operation at moderate to heavy loads, and a synchronizable oscillator for noise-sensitive applications such as electromagnetic pen-based systems and communicating computers. The MAX786 is a monolithic, BiCMOS IC available in fine-pitch, surface-mount SSOP packages.
V+ to GND................................................................-0.3V to 36V
PGND to GND ........................................................................±2V
VL to GND ..................................................................-0.3V to 7V
BST3, BST5 to GND ..................................................-0.3V to 36V
LX3 to BST3 ...............................................................-7V to 0.3V
LX5 to BST5 ...............................................................-7V to 0.3V
Inputs/Outputs to GND
(D1, D2, SHDN, ON5, REF, SS5, CS5,
FB5, SYNC, CS3,FB3, SS3, ON3) ...................-0.3V to (VL + 0.3V)
VH to GND ...............................................................-0.3V to 20V
Q1, Q2 to GND .............................................-0.3V to (VH + 0.3V)
DL3, DL5 to PGND.........................................-0.3V to (VL + 0.3V)
DH3 to LX3 ...............................................-0.3V to (BST3 + 0.3V)
DH5 to LX5 ...............................................-0.3V to (BST5 + 0.3V)
REF, VL Short to GND..................................................Momentary
REF Current.........................................................................20mA
VL Current ..........................................................................50mA
Continuous Power Dissipation (TA = +70°C)
SSOP (derate 9.52mW/°C above +70°C)........................762mW
Operating Temperature Ranges
MAX786CAI/MAX786_CAI ......................................0°C to +70°C
MAX786EAI/MAX786_EAI....................................-40°C to +85°C
Lead Temperature (soldering, 10sec) ............................+300°C
Stresses beyond those listed under "Absolute Maximum Ratings" may cause permanent damage to the device. These are stress ratings only, and functional operation of the device at these or any other conditions beyond those indicated in the operational sections of the specifications is not implied. Exposure to absolute maximum rating conditions for extended periods may affect device reliability.

