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L297D Arkusz danych(PDF) 4 Page - STMicroelectronics |
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L297D Arkusz danych(HTML) 4 Page - STMicroelectronics |
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4 / 11 page ![]() N ° NAME FUNCTION 19 HALF/FULL Half/full step select input. When high selects half step operation, when low selects full step operation. One-phase-on full step mode is obtained by selecting FULL when the L297’s translator is at an even-numbered state. Two-phase-on full step mode is set by selecting FULL when the translator is at an odd numbered position. (The home position is designate state 1). 20 RESET Reset input. An active low pulse on this input restores the translator to the home position (state 1, ABCD = 0101). PIN FUNCTIONS - L297/L297D (continued) CIRCUIT OPERATION The L297 is intended for use with a dual bridge driver, quad darlington array or discrete power devices in step motor driving applications. It re- ceives step clock, direction and mode signals from the systems controller (usually a microcomputer chip) and generates control signals for the power stage. The principal functions are a translator, which gen- erates the motor phase sequences, and a dual PWM chopper circuit which regulates the current in the motor windings.The translator generatesthree different sequences, selected by the HALF/FULL input. These are normal (two phases energised), wave drive (one phase energised) and half-step (alternately one phase energised/two phases en- ergised). Two inhibit signals are also generated by the L297 in half step and wave drive modes. These signals, which connect directly to the L298’senable inputs, are intended to speed current decay when a winding is de-energised. When the L297 is used to drive a unipolar motor the chopper acts on these lines. An input called CONTROL determines whether the chopper will act on the phase lines ABCD or the inhibit lines INH1 and INH2. When the phase lines are chopped the non-active phase line of each pair (AB or CD) is activated (rather than interrupting the line then active).In L297 + L298 configurationsthis technique reduces dissipation in the load current sense resistors. A common on-chip oscillator drives the dual chop- per.It suppliespulses at the chopper rate which set the two flip-flops FF1 and FF2. When the current in a winding reaches the programmed peak value the voltage across the sense resistor (connected to one of the sense inputs SENS1 or SENS2) equals Vref and the corresponding comparator resets its flip flop, interrupting the drive current until the next oscillator pulse arrives. The peak current for both windingsis programmedby a voltage divideron the Vref input. Ground noise problems in multiple configurations can be avoided by synchronising the chopper os- cillators. This is done by connecting all the SYNC pins together, mounting the oscillator RC network on one device only and grounding the OSC pin on all other devices. Symbol Parameter DIP20 SO20 Unit Rth-j-amb Thermal resistance junction-ambient max 80 100 °C/W THERMAL DATA 4/11 L297-L297D |
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