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LM621 Datenblatt(PDF) 4 Page - National Semiconductor (TI) |
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LM621 Datenblatt(HTML) 4 Page - National Semiconductor (TI) |
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4 / 12 page ![]() Typical Performance Characteristics for R and C Selection Graph vs Temperature Supply Currents vs Temperature Supply Currents Vsat vs Temperature Vdrop vs Temperature ( TA e 25 C) Typ Vdrop vs Iout source Typ Vsat vs Iout sink TLH8679 – 2 Description of Inputs and Outputs Pin 1 VCC1 (a5V) The logic and clock power supply pin Pin 2 DIRECTION This input determines the direction of rotation of the motor ie clockwise vs counterclockwise See truth table Pin 3 DEAD-TIME ENABLE This input enables or disables the dead-time feature Connecting a5V to pin 3 enables dead-time and grounding pin 3 disables it Pin 3 should not be allowed to float Pin 4 CLOCK TIMING An RC network connected between this pin and ground sets the period of the clock oscillator which determines the amount of dead-time See Figure 2 and text Pins 5 thru 7 HS1 HS2 and HS3 (Hall-sensor inputs) These inputs receive the rotor-position sensor inputs from the motor Three-phase motors provide all three signals four phase motors provide only two one of which is con- nected to both HS2 and HS3 Pin 8 3060 SELECT This input is used to select the re- quired decoding for three-phase motors ie either ‘‘30-de- gree’’ (a5V) or ‘‘60-degree’’ (ground) Connect pin 8 to a 5V when using a four-phase motor Pin 9 LOGIC GROUND Ground for the logic power supply Pin 10 POWER GROUND Ground for the output buffer supply Pins 11 thru 13 SOURCE OUTPUTS The three current- sourcing outputs which drive the external power devices that drive the motor Pins 14 thru 16 SINK OUTPUTS The three current-sinking outputs which drive the external power devices that drive the motor Pin 17 OUTPUT INHIBIT This input disables the LM621 outputs It is typically driven by the magnitude signal from an external signmagnitude PWM generator Pin 17 ea5V e outputs off Pin 18 VCC2 (a5to a40V) This is the supply for the collectors of the three current-sourcing outputs (pins 11 thru 13) When driving MOSFET power devices pin 18 may be connected to a voltage source of up to a40V to achieve sufficient output swing for the gate When driving bipolar power devices pin 18 should be connected to a5V to mini- mize on-chip power dissipation Undervoltage lockout auto- matically shuts down all outputs if the VCC1 supply is too low All outputs will be off if VCC1 falls below the undervol- tage lockout voltage 4 |
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