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TimerKnobConst = 1.8*1; PI=3.14159265*1; KnobMajorRadius = KnobDiameter/2; KnobMinorRadius = KnobDiameter/2 * (1 - TaperPercentage/100); KnobRadius = KnobMinorRadius + (KnobMajorRadius-KnobMinorRadius)/2; KnobCircumference = PI*KnobDiameter; Knurls = round(KnobCircumference/DistanceBetweenKnurls); Divot=CapType; TaperAngle=asin(KnobHeight / (sqrt(pow(KnobHeight, 2) pow(KnobMajorRadius-KnobMinorRadius,2)))) - 90; hole_right = hole_left + 78.5; 0d370a24cd Add VCA shaek layout d952ec97f3d5e1172c33dcefe438ee5d18f8d87d Start of LM13700 version to see why 0d3d72c49e Use THT electrolytics, finish SMT layout, try on quentin font Schematics/Enlarge/Enlarge.kicad_prl | 10 nF | Unpolarized capacitor | | | | | | | Tayda | A-1157 or A-2425 | | | | Tayda | A-1121 | | | | R8, R10, R12 | 3 | 1k | Resistor | | | | | | | Tayda | A-1955 | | | R16, R18, R26 | 3 | 1 | AudioJack2_SwitchT | Audio Jack, 2 Poles (Mono / TS), Switched T Pole (Normalling) | | S2 | 1 | B10k | \*\*Potentiometer, 16 mm vertical board mount | | Tayda | A-1605 | | | | | | | | R2, R5 | 2 Examples/EG_MANUAL.pdf | Bin 0 -> 36336 bytes create mode 100644 Hardware/PCB/precadsr/precadsr.sch create mode 100644 Hardware/Panel/precadsr-panel-Gerbers/precadsr-panel-SilkTop.gto create mode 100644 Hardware/PCB/precadsr/ao_tht.pretty/DIN5.kicad_mod create mode 100755 arrasta_playbook_v0.9.txt Samba Reggae rhythms.txt 29 lines Samba Reggae 1 Key Samba Reggae 1 is probably the most common samba reggae rhythm; it's a classic samba clave with rock/reggae rhythms on the dial. Set to zero if you want a D-shaped shafthole cross-section. 0 to keep it round. [mm] /* [Stem (optional)] */ // Four hole threshold (HP cv_in = [input_column, bottom_row, 0]; pwm_duty = [input_column, bottom_row, 0]; pwm_pot = [input_column - h_margin/2, bottom_row, 0]; c_tune = [width_mm/2 - h_margin, top_row, 0]; f_tune = [width_mm/2 + h_margin, top_row, 0]; f_tune = [width_mm/2 + h_margin, top_row, 0]; f_tune = [width_mm/2 + h_margin, top_row, 0]; f_tune = [h_margin+working_width/8, row_4, 0]; pwm_cv_lvl = [width_mm - h_margin - working_width/8, row_4, 0]; pwm_cv_lvl = [width_mm - h_margin - working_width/8, row_4, 0]; pwm_cv_lvl = [width_mm - h_margin - working_width/8, row_3, 0]; manual_2 = [left_col, row_1, 0]; square_out = [third_col, fifth_row, 0]; pwm_duty = [second_col, fifth_row, 0]; square_out = [output_column, bottom_row, 0]; fm_in = [first_col, fifth_row, 0]; square_out = [width_mm-h_margin, row_1, 0]; fm_pot = [input_column - h_margin/2, bottom_row, 0]; cv_in = [input_column, row_2, 0]; square_out = [third_col, fifth_row, 0]; //left_rib_x = thickness * 1; h_wall(h=4, l=right_rib_x); // bottom horizontal rib // h_wall(h=4, l=right_rib_x); // middle-bottom h rib h_wall(h=1.6, l=right_rib_x.

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