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includes oscillator, mixer, limiting amplifier, AFC, quadrature discri
Top Searches for this datasheetOrder this document MC3359/D includes oscillator, mixer, limiting amplifier, AFC, quadrature discriminator, op/amp, squelch, scan control, mute switch. MC3359 designed detect narrowband signals using ceramic filter dual conversion communications equipment. MC3359 similar MC3357 except that MC3359 additional limiting stage, output, opposite polarity Broadcast Detector. MC3359 also requires fewer external parts. cost applications requiring below MC3361BP,BD recommended. applications requiring fixed, tuned, ceramic quadrature resonator, MC3357. applications requiring dual conversion RSSI, refer these devices; MC3335, MC3362 MC3363. Drain Current: (Typical) HIGH GAIN POWER Excellent Sensitivity: Input Limiting Voltage (Typical) Number External Parts Required Voltage RSSI, MC3371 SUFFIX PLASTIC PACKAGE CASE LIFETIME SUFFIX PLASTIC PACKAGE CASE 751D (SO-20L) Figure Connections Functional Block Diagram ORDERING INFORMATION Device MC3359DW MC3359P +70°C Package SO-20L Plastic Limiter Input Decoupling Limiter Mixer Output Mixer Crystal Osc. Oscillator Operating Temperature Range Input Audio Mute Scan Control Squelch Input Filter Output Filter Input Demod Output Recovered Audio Decoupling Figure Simplified Application Scanner Receiver Figure 10.245 Ceramic Filter Mute 10.7 Input Quadrature Input Demodulator Filter Demodulator CASE Input Audio Mute Scan Control Squelch Input Filter Output Filter Input Demod Output Recovered Audio Crystal Osc. Mixer Output Squelch Sensitivity 1N4148 Type Scan Control MC3359 Squelch Input Output Inverting (Filter) Input 0.001 Limiter Input Decoupling Decoupling Quad Coil 0.001 Automatic Frequency Control Recovered Audio Toko Type 7MC-8128Z 0.002 0.01 Audio Volume 0.01 Audio Quadrature Input Demodulator Filter CASE 751D Motorola, Inc. 1998 MOTOROLA RF/IF DEVICE DATA LAST ORDER 20DEC01 LAST SHIP 20JUN01 Power Narrowband MC3359 MC3359DW Broadcast Detector MC3359 MAXIMUM RATINGS 25°C, unless otherwise noted) Rating Power Supply Voltage Operating Supply Voltage Range Input Voltage (VCC Mute Function Junction Temperature Operating Ambient Temperature Range Storage Temperature Range Symbol VCC(max) Tstg Value Unit Vrms Volts) ELECTRICAL CHARACTERISTICS (VCC Vdc, 10.7 MHz, kHz, fmod kHz, source, 25°C test circuit Figure unless otherwise noted) Characteristics Drain Current (Pins Input Quieting Input Limiting Mixer Voltage Gain (Pin Open) Squelch Squelch 0.62 0.01 mVrms V/kHz V/kHz Units µVrms µVrms Mixer Third Order Intercept, Input Mixer Input Resistance Mixer Input Capacitance Recovered Audio, (Input Signal mVrms) Detector Center Frequency Slope, Center Slope, Unloaded Filter Gain (test circuit Figure Squelch Threshold, Through Scan Control Current, Mute Switch Impedance Ground High High Figure Test Circuit 10.245 Ceramic Filter muRata CFU455D Kyocera KBF455P-20A Audio Gen. Vp-p Input 10.7 Squelch Input Output Input Output 0.002 Audio Output MOTOROLA RF/IF DEVICE DATA LAST ORDER 20DEC01 LAST SHIP 20JUN01 LIFETIME MC3359 Figure Mixer Voltage Gain OUTPUT, [mVrms] 0.04 INPUT, (mVrms) Input 10.7 Output Output taken with filter removed (open) RELATIVE OUTPUT [dB] INPUT LEVEL, [dBm] Input LImiting FREQUENCY [MHz] Figure Limiting Frequency Response Response Taken special prototype. Terminals available standard device. Figure Mixer Third Order Intermodulation Performance Output taken with filter removed Desired Products OUTPUT [Vdc] Figure Detector Responses Output OUTPUT, [dBm] Order Products INPUT, [dBm] Detector Output RELATIVE FREQUENCY [kHz] Figure Relative Mixer Gain RELATIVE GAIN [dB] FREQUENCY [MHz] Derived using optimum oscillator values holding frequency RELATIVE OUTPUT [dB] Figure Overall Gain, Noise, Rejection 0.001 0.01 INPUT [mVrms] 25°C 75°C (30% MOTOROLA RF/IF DEVICE DATA LAST ORDER 20DEC01 LAST SHIP 20JUN01 Output LIFETIME MC3359 Figure Output Components Signal, Noise, Distortion RELATIVE OUTPUT [dB] 0.001 0.01 S+N+D SUPPLY CURRENT (mAdc) 10.7 Test circuit Figure Figure Audio Output Total Current Drain versus Supply Voltage AUDIO OUTPUT (Vrms) PHASE [degrees] Audio Output ICC, Mute ICC, Mute INPUT [mVrms] VCC, SUPPLY VOLTAGE (Vdc) Figure Oscillator, Temperature Power Supply Sensitivity Figure Gain Phase Response 10.706 10.704 10.702 FREQUENCY [MHz] 10.700 10.698 10.696 10.694 10.692 10.690 VCC, SUPPLY VOLTAGE [Vdc] GAIN [dB] AMBIENT TEMPERATURE [°C] DOTTED CURVES TAKEN WITH CIRCUIT VALUES FIGURE Phase Gain Vref CIRCUIT ABOVE OPEN LOOP GAIN PHASE (SOLID LINES) Temp FREQUENCY [Hz] Figure Oscillator Recommended Component Values 1000 CAPACITANCE [pF] OSCILLATOR FREQUENCY [MHz] INDUCTANCE OUTPUT [Vrms] Figure Bandpass Filter 0.001 0.17 Vrms Vref Vout GIVEN CENTER FREQUENCY A(fo) GAIN CENTER FREQUENCY 0.001 FREQUENCY [kHz] MOTOROLA RF/IF DEVICE DATA LAST ORDER 20DEC01 LAST SHIP 20JUN01 LIFETIME LIFETIME MOTOROLA RF/IF DEVICE DATA Figure Figure Representative Schematic Diagram MC3359 Oscillator Mixer Limiting Amplifier Broadcast Detector Detector LAST ORDER 20DEC01 LAST SHIP 20JUN01 MC3359 CIRCUIT DESCRIPTION MC3359 low-power circuit designed primarily voice-communication scanning receivers. also finding place narrowband data links. typical application (Figure mixer-oscillator combination converts input frequency (10.7 MHz) down kHz, where, after external bandpass filtering, most amplification done. audio recovered using conventional quadrature detector. absence input signal indicated presence noise above desired audio frequencies. This "noise band" monitored active filter detector. squelch-trigger circuit indicates presence noise tone) output which used control scanning. same time, internal switch operated which used mute audio. APPLICATIONS INFORMATION oscillator internally biased Colpitts type with collector, base, emitter connections respectively. crystal used fundamental mode, calibrated parallel resonance load capacitance. theory this means that capacitors series should fact much larger values significantly affect oscillator frequency, provide higher oscillator output. oscillator also used conventional Colpitts configuration without loss mixer conversion gain. This oscillator course, much more sensitive voltage temperature shown Figure Guidelines choosing values given Figure mixer doubly balanced reduce spurious responses. mixer measurements Figure were made using external source internal Voltage gain curves several voltages shown Figure Third Order Intercept curves Figure shown using conventional scales. Measured power gain (with input) approximately useful gain much higher because mixer input impedance over Most applications will 10.7 crystal filter ahead mixer. higher frequencies, relative mixer gain given Figure Following mixer, ceramic bandpass filter recommended. types come bandwidths from have input output impedances this reason, input stage limiting internal resistor. limiting sensitivity approximately useful frequency range about shown Figure frequency limitation high resistance values which were necessary meet power requirement. output limiter internally connected quadrature detector, including quadrature capacitor. Only parallel needed externally from VCC. shunt resistance added widen peak separation quadrature detector. detector output amplified buffered audio output, which output impedance approximately provides high impedance point output amplifier application filter de-emphasis capacitor. output, with high gain high output impedance needed, should grounded, connected double recovered audio. detector responses shown Figure Overall performance MC3359 from mixer input audio output shown Figure MC3359 also operated "single conversion" equipment; i.e., mixer used amplifier. oscillator disabled connecting this mode, overall performance identical 10.7 results Figure simple inverting provided with output providing bias (externally) input which referred internally filter made with external impedance elements discriminate between frequencies. With external detector, filtered audio signal checked presence either noise above normal audio, tone signal. open loop response this given Figure13. Bandpass filter design information provided Figure bias sets squelch-trigger circuit that high, source least audio mute (Pin open-circuit. raised noise tone detector, becomes open circuit internally short circuited ground. There hysteresis. Audio muting accomplished connecting high-impedance ground-reference point audio path between audio amplifier. voltage needed, fact desirable because audio "thump" would result during muting function. Signal swing greater than below ground should avoided. MOTOROLA RF/IF DEVICE DATA LAST ORDER 20DEC01 LAST SHIP 20JUN01 LIFETIME MC3359 OUTLINE DIMENSIONS SUFFIX PLASTIC PACKAGE CASE 707-02 ISSUE NOTES: POSITIONAL TOLERANCE LEADS (D), SHALL WITHIN 0.25 (0.010) MAXIMUM MATERIAL CONDITION, RELATION SEATING PLANE EACH OTHER. DIMENSION CENTER LEADS WHEN FORMED PARALLEL. DIMENSION DOES INCLUDE MOLD FLASH. MILLIMETERS 22.22 23.24 6.10 6.60 3.56 4.57 0.36 0.56 1.27 1.78 2.54 1.02 1.52 0.20 0.30 2.92 3.43 7.62 0.51 1.02 INCHES 0.875 0.915 0.240 0.260 0.140 0.180 0.014 0.022 0.050 0.070 0.100 0.040 0.060 0.008 0.012 0.115 0.135 0.300 0.020 0.040 SEATING PLANE SUFFIX PLASTIC PACKAGE CASE 751D-04 (SO-20L) ISSUE 0.010 (0.25) NOTES: DIMENSIONING TOLERANCING ANSI Y14.5M, 1982. CONTROLLING DIMENSION: MILLIMETER. DIMENSIONS INCLUDE MOLD PROTRUSION. MAXIMUM MOLD PROTRUSION 0.150 (0.006) SIDE. DIMENSION DOES INCLUDE DAMBAR PROTRUSION. ALLOWABLE DAMBAR PROTRUSION SHALL 0.13 (0.005) TOTAL EXCESS DIMENSION MAXIMUM MATERIAL CONDITION. MILLIMETERS 12.65 12.95 7.40 7.60 2.35 2.65 0.35 0.49 0.50 0.90 1.27 0.25 0.32 0.10 0.25 10.05 10.55 0.25 0.75 INCHES 0.499 0.510 0.292 0.299 0.093 0.104 0.014 0.019 0.020 0.035 0.050 0.010 0.012 0.004 0.009 0.395 0.415 0.010 0.029 0.010 (0.25) SEATING PLANE MOTOROLA RF/IF DEVICE DATA LAST ORDER 20DEC01 LAST SHIP 20JUN01 LIFETIME MC3359 Motorola reserves right make changes without further notice products herein. Motorola makes warranty, representation guarantee regarding suitability products particular purpose, does Motorola assume liability arising application product circuit, specifically disclaims liability, including without limitation consequential incidental damages. "Typical" parameters which provided Motorola data sheets and/or specifications vary different applications actual performance vary over time. operating parameters, including "Typicals" must validated each customer application customer's technical experts. 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