SEMICONDUCTOR TECHNICAL DATA VOLTAGE CONTROLLED MULTIVIBRATOR. Not Recommended for New Designs

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1 IONUTOR TNI T The 1658 is a voltage controlled multivibrator which provides appropriate level shifting to produce an output compatible with III and 10,000 logic levels. requency control is accomplished through the use of voltage variable current sources which control the slew rate of a single external capacitor. The bias filter may be used to help eliminate ripple on the output voltage levels at high frequencies and the input filter may be used to decouple noise from the analog input signal. VOT ONTRO UTIVIRTOR Pinout: 16 ead Package (Top View) N N X2 IN I X1 N N UIX 16 RI P Not Recommended for New esigns V1 VX N V2 N V 8 P UIX 16 PTI P OI IR X1 11 X2 14 VX 2 UIX PTI OI P ias ilter Input ilter 4 N UIX 20 P P V1 = Pin 1 V2 = Pin 5 V = Pin 8 Pin onversion Table 16 PIN IP PIN P /7 otorola, Inc RV 1

2 1658 V2 5 V1 1 4 VX 2 1k 6 X1 11 1k 12 ias ilter 14 X k 1k 250 Input ilter V igure 1. ircuit Test Temperature TT VOT VU Vdc ±1% VI VI V3 II Note: OI package guaranteed 3 to +7 only OTORO 2 IPRO R1334 Rev 4

3 1658 TRI RTRITI (V = 5.2V, V = 0V [N] ) ymbol haracteristic in ax in ax in ax Unit ondition I Power upply rain urrent 32 mdc VI to VX imit pplies for 1 or 2 Iin Input urrent 350 µdc VI to VX 1 VO Output Voltage I Vdc V3 to VX. imits pply for 1 VO Output Voltage OW Vdc or 2 RTRITI (V = 3.2V, V = +2.0V ) ondition ymbol haracteristic in ax in Typ ax in ax Unit (ee igure 2) t+ Rise Time (10% to 0%) ns VI to VX, X14 from Pin t all Time (10% to 0%) ns 11 to Pin 14 fosc1 Oscillator requency z fosc VI to VX, X25 from Pin 11 to Pin 14 TR3 Tuning Ratio Test X25 from Pin 11 to Pin 14 1 ermanium diode (0.4 drop) forward biased from 11 to 14 (11 14). 2 ermanium diode (0.4 drop) forward biased from 14 to 11 (11 14). Output frequency at V X N 3 TR = Output frequency at V X 2.0V 4 X1 = 5.0p connected from pin 11 to pin X2 = 10p connected from pin 11 to pin 14. V +2.0Vdc 0.1µ 0.01µ V V2 ias ilter µ 13 Input ilter X VX X X 8 3.2Vdc V 0.1µ 4 oax 0.1µ hannel Input 2 oaxial ables (qual lengths, 50Ω) To cope oax hannel Input 2 50% 50% 50% 50% 0% 10% 0% 10% 50 ohm termination to ground located in each scope channel input. ll input and output cables to the scope are equal lengths of 50 ohm coaxial cable. Wire length should be < 1/4 inch from TPin to input pin and TPout to output pin. Note: ll power supply and logic levels are shown shifted 2.0V positive. t t+ t t+ igure 2. Test ircuit and Waveforms IPRO R1334 Rev 4 3 OTORO

4 , p 35 5 p 75 5 p VX = 1 Vdc VX = 2 Vdc VX = 0 Vdc f, RUNY VITION, R (z) V = Vdc V = 0 Vdc ONTRO INPUT = 4 Vdc , cx (p) f, OPRTIN RUNY (z) igure 3. Output requency versus apacitance for Various Values of Input Voltage igure 4. R Noise eviation versus Operating requency fo x ; RUNY-PITN PROUT (z-p) cx (p) = RUNY PITN PROUT T cx (p) = IR VX IR RUNY (z) VX, INPUT VOT (Vdc) V = 5.2V, V = 0V. or Use at V = 0V, V = +5V (VXP = +5V VX) VXP = Positive Input Voltage igure 5. requency apacitance Product versus ontrol Voltage (VX) OTORO 4 IPRO R1334 Rev 4

5 1658 OUTIN INION -- -T- TIN PN P N -T (0.010) T UIX RI P IU V 16 P 0.25 (0.010) T NOT: 1. INIONIN N TORNIN PR NI Y14.5, ONTROIN INION: IN. 3. INION TO NTR O WN OR PR. 4. INION Y NRROW TO 0.76 (0.030) WR T NTR T RI OY. I N IN IITR TIN PN 16 P 0.25 (0.010) T P UIX PTI P IU R NOT: 1. INIONIN N TORNIN PR NI Y14.5, ONTROIN INION: IN. 3. INION TO NTR O WN OR PR. 4. INION O NOT INU O. 5. ROUN ORNR OPTION. I IN IITR T TIN PN P 0.25 (0.010) T UIX PTI OI P IU P 8 P 0.25 (0.010) R X 45 NOT: 1. INIONIN N TORNIN PR NI Y14.5, ONTROIN INION: IITR. 3. INION N O NOT INU O PROTRUION. 4. XIU O PROTRUION 0.15 (0.006) PR I. 5. INION O NOT INU R PROTRUION. OW R PROTRUION (0.005) TOT IN X O T INION T XIU TRI ONITION. I P R IITR IN IPRO R1334 Rev 4 5 OTORO

6 1658 OUTIN INION N UIX PTI P P IU -N- Y R (0.180) T N U (0.180) T N W Z 20 1 V X VIW (0.250) T N (0.180) T N Z R (0.180) T N (0.180) T N (0.) TIN -T- PN VIW VIW (0.180) T N (0.250) T N NOT: 1. TU --, --, N -N- TRIN WR TOP O OUR XIT PTI OY T O PRTIN IN. 2. I 1, TRU POITION TO UR T TU -T-, TIN PN. 3. I R N U O NOT INU O. OW O I (0.250) PR I. 4. INIONIN N TORNIN PR NI Y14.5, ONTROIN INION: IN. 6. T P TOP Y R TN T P OTTO Y UP TO (0.300). INION R N U R TRIN T T OUTROT XTR O T PTI OY XUIV O O, TI R URR, T URR N INTR, UT INUIN NY IT TWN T TOP N OTTO O T PTI OY. 7. INION O NOT INU R PROTRUION OR INTRUION. T R PROTRUION() NOT U T INION TO RTR TN (0.40). T R INTRUION() NOT U T INION TO R TN (0.635). I R U V W X Y Z 1 1 IN IITR OTORO 6 IPRO R1334 Rev 4

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