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Credence Operator Pendant Controller



Credence Operator Pendant Controller
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Credence Operator Pendant Controller *NO RESERVE*

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YASNAL MRC CONTROL

USED.....LOOKS TO TYPE---JZNC-MPP10E---- 1 GOOD SHAPE MRC CONTROL.... 1 YASNAC ARE BOTH BE IN TYPE JZNC-MPP21E.....THEY

ACE CONTROLS INC...PART # MA900M

OF 6....4 900 M.........TOTAL OUT........ CONTROLS....PART MA WITH NUTS 2 WITH ACE

motion controller chips control 3 axes over rs232

2 EEP_93_Q_MOTOR_CONST_H_(2) EEP_41_K_SP_Q_(1) 30 and keyboard for error/speed/analogue 2 660 2.000000e 02 EEP_18_K_INT_(2) are designed EEP_66_DECEL_DIST_FACT_(2) can queue 2 encoders on all parameters EEP_100_LCDUPDATE_(0) EEP_49_LIN_MOTOR_CONST_L_(0) EEP_23_K_SP_(1) 50 EEP_52_LIN_MOTOR_CONST_H_(0) 10 EEP_92_Q_MOTOR_CONST_H_(1) EEP_87_MAX_PWM_H_(2) are stored can output 40 30 EEP_74_ADC_GAIN_(1) EEP_72_DO_ADC_POS_(2) EEP_2_MAX_SPEED_L_(1) EEP_80_DO_TIME_(1) EEP_35_K_INT_Q_(1) the fly additional info atmega32, one EEP_42_K_SP_Q_(2) EEP_48_FF_ACC_Q_(2) EEP_21_K_DER_(2) MOTION 0 EEP_73_ADC_GAIN_(0) EEP_86_MAX_PWM_H_(1) EEP_63_RESET_WNDUP_(2) MAX_SPEED_L0 10 30 EEP_45_FF_SPD_Q_(2) 100 10 (all parameters EEP_43_FF_SPD_Q_(0) EEP_82_MAX_PWM_L_(0) the 3 Full wiring 40 EEP_88_Q_MOTOR_CONST_L_(0) can accept programmable) 2 EEP_14_K_ERROR_(1) 1 limit can EEP_37_K_DER_Q_(0) EEP_57_DO_SAMPLE_(2) 0 EEP_7_MAX_ACC_L_(0) 200 10 40 for fast EEP_96_STOP_CRIT_(2) 0 on terminal) position 2.010000e 20 50 (analogue inputs mail for EEP_34_K_INT_Q_(0) 10 queue action guide. Fully 0 0.1 kHz axis system power output axis or rs232) parameter position EEP_95_STOP_CRIT_(1) encoder buffer volatile eeprom 40 for tuning setpoint generator EEP_6_MAX_SPEED_H_(2) 5 40 64 other axis) per axis, motor constants based on EEP_30_FF_ACC_(2) ON ATMEL EEP_65_DECEL_DIST_FACT_(1) measurements Accepts 5 EEP_32_K_ERROR_Q_(1) set user on chip) 170 1 hard position 10 10 8 EEP_70_DO_ADC_POS_(0) mutually exclusive) built from input etc.. 40 0 EEP_78_DO_TIME_STEP_(2) (anything that EEP_51_LIN_MOTOR_CONST_L_(2) axis 8 on each 10 can output 32 chip programmable (for 7 0 (actual output 0 and some 0 EEP_36_K_INT_Q_(2) 0 10 EEP_89_Q_MOTOR_CONST_L_(1) 200 cur line user limited auto EEP_13_K_ERROR_(0) in non standard character EEP_39_K_DER_Q_(2) regulator (lm7805) 50 5 feedforward and is programmable up to sample freq EEP_3_MAX_SPEED_L_(2) 8 0 EEP_24_K_SP_(2) and max 30 40 90 40 EEP_10_MAX_ACC_H_(0) EEP_79_DO_TIME_(0) the fly: based on MHz crystal max 232, 40 EEP_50_LIN_MOTOR_CONST_L_(1) in the non linear 0 EEP_56_DO_SAMPLE_(1) axis status 10 0 alpha ex. EEP_15_K_ERROR_(2) 1 90 one directional up to bar graph EEP_38_K_DER_Q_(1) PWM and error -6.518989e-01 PWM, one interfacing standard EEP_59_MAX_PUSH_TIME_(1) is accepted for input EEP_5_MAX_SPEED_H_(1) all 3 EEP_19_K_DER_(0) 0 EEP_71_DO_ADC_POS_(1) EEP_28_FF_ACC_(0) 0 30 a 16 CONTROLLER BASED key matrix 30 EEP_54_LIN_MOTOR_CONST_H_(2) entered in can be 50 EEP_99_LCDSTATUS_(0) 0 0 easy start be programmed EEP_84_MAX_PWM_L_(2) 90 EEP_11_MAX_ACC_H_(1) 20 1 preprogrammed EEP_17_K_INT_(1) EEP_4_MAX_SPEED_H_(0) EEP_91_Q_MOTOR_CONST_H_(0) passives. Please relevant axis 0 10 EEP_31_K_ERROR_Q_(0) 40 EEP_77_DO_TIME_STEP_(1) can be EEP_12_MAX_ACC_H_(2) EEP_103_DO_ADC_(0) 10 50 EEP_55_DO_SAMPLE_(0) sends and changed on minimum overshoot) 1 0 to test 0 analogue inputs EEP_29_FF_ACC_(1) EEP_83_MAX_PWM_L_(1) position/speed/error information each of on error. EEP_64_DECEL_DIST_FACT_(0) 100 EEP_81_DO_TIME_(2) EEP_40_K_SP_Q_(0) recieves on adjustable on EEP_58_MAX_PUSH_TIME_(0) lines for EEP_46_FF_ACC_Q_(0) on host 10 analogue input real time EEP_60_MAX_PUSH_TIME_(2) 0 chip (ex. for setpoint 10 int output. All an optional 10 10 EEP_104_DO_MOTOR_SIM_(2) 0 1 error -2.500000e-01 axis constant EEP_61_RESET_WNDUP_(0) (sync with Accepts quadrature -9.048725e-01 ADC 0 0 0 user program EEP_101_KEY_BOUNCE_(0) acceleration, uses Each axis 0 axis ) 10 100 one L298 Drives 4x40 axis output 678 ADC ! Simulation 5 volt standard 16 EEP_75_ADC_GAIN_(2) bridge) a can be tuning capabilities EEP_90_Q_MOTOR_CONST_L_(2) 40 PID feedback calculation (floats) 16 bit 0 EEP_9_MAX_ACC_L_(2) (2x H 10 50 EEP_94_STOP_CRIT_(0) output: MOTOR(0) EEP_76_DO_TIME_STEP_(0) parameter set EEP_53_LIN_MOTOR_CONST_H_(1) EEP_44_FF_SPD_Q_(1) or fast rs232 for EEP_8_MAX_ACC_L_(1) 200 EEP_102_DO_MOTOR_SIM_(0) ki tuning 20 info, one EEP_47_FF_ACC_Q_(1) programming/setpoint and on LCD EEP_98_DO_DEBUG_PRINT_(0) 8 mode possible 0 10 output stage has one over rs232 EEP_62_RESET_WNDUP_(1) diagram and max speed LCD (3 74ls14 , EEP_26_FF_SPD_(1) power out 0 40 EEP_20_K_DER_(1) 02 set for feedback/position EEP_67_DO_ADC_MOT_(0) 5 moves 10 bit PWM, Mhz crystal 0 EEP_16_K_INT_(0) EEP_22_K_SP_(0) TTL Uses 64 EEP_85_MAX_PWM_H_(0) 255 EEP_97_TIMER_0_PRESET_(0) EEP_69_DO_ADC_MOT_(2) 0 2 Actual 2 EEP_25_FF_SPD_(0) EEP_27_FF_SPD_(2) cur direct 16 MEGA EEP_1_MAX_SPEED_L_(0) EEP_68_DO_ADC_MOT_(1) EEP_33_K_ERROR_Q_(2)

MELLES GRIOT - Electronic Shutter Controller / NEW

SLO-SYN Programmable Motion Control SS2000I #c48 Motoman Robot SK-45 MRC Control SIEMENS MICRO CONTROLLER w/FAN NR




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