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LB1960MC fiches techniques PDF

ON Semiconductor - 2-phase Half-Wave Driver

Numéro de référence LB1960MC
Description 2-phase Half-Wave Driver
Fabricant ON Semiconductor 
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LB1960MC fiche technique
Ordering number : ENA2078
LB1960MC
Monolithic Digital IC
For Fan Motor
2-phase Half-Wave Driver
http://onsemi.com
Overview
The LB1960MC is a 2-phase half-wave driver for fan motor. The LB1960MC is a compact package. Low external parts
count, easy wiring, and small PCB area allow use also with miniature fan motors.
Functions
Dual power supply voltage design (5/12V) and wide voltage handling range.
(3V also supported for rotation functions only)
Constant-voltage Hall bias power supply (1.3V across HB to GND) assures stable Hall output over entire temperature
and power supply voltage range. External limiting resistor not required.
Built-in Hall amplifier with hysteresis (supports core without commutating pole).
Built-in lockup protection and automatic recovery circuits (External capacitor for rotation detection need only be
0.1μF, allowing compact, cost-saving design).
Built-in output transistor with output withstand voltage 24V (max)/output current 500mA (average), 1A (peak).
Built-in thermal protection circuit.
Specifications
Maximum Ratings at Ta = 25°C
Parameter
Symbol
Conditions
Ratings
Unit
Maximum supply voltage
Maximum output current
Maximum output voltage
Maximum HB output current
VCC max
IOUT ave
IOUT peak
VOUT max
IH max
t 1ms
18
500
1000
Internal
10
V
mA
mA
V
mA
Allowable power dissipation
Pd max
Mounted on a specified board *
750 mW
Operating temperature
Topr
-30 to +85
°C
Storage temperature
Tstg
-55 to +150
°C
* Specified board: 114.3mm × 76.1mm × 1.6mm, glass epoxy board.
Caution 1) Absolute maximum ratings represent the value which cannot be exceeded for any length of time.
Caution 2) Even when the device is used within the range of absolute maximum ratings, as a result of continuous usage under high temperature, high current,
high voltage, or drastic temperature change, the reliability of the IC may be degraded. Please contact us for the further details.
Stresses exceeding Maximum Ratings may damage the device. Maximum Ratings are stress ratings only. Functional operation above the Recommended Operating
Conditions is not implied. Extended exposure to stresses above the Recommended Operating Conditions may affect device reliability.
Semiconductor Components Industries, LLC, 2013
May, 2013
70412 SY 20120417-S00001 No.A2078-1/4

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