MC12009 MOTOROLA | Alldatasheet

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Technical content

/C0077/C0067/C0049/C0050/C0048/C0048/C0057 /C0077/C0067/C0049/C0050/C0048/C0049/C0049 /C0077/C0067/C0049/C0050/C0048/C0049/C0051 SEMICONDUCTOR TECHNICAL DATA MECL PLL COMPONENTS DUAL MODULUS PRESCALER 11 6 (Top View) VCCO Q Q MTTL V CC MTTL Output VEE VCC E5 MECL PIN CONNECTIONS Order this document by MC12009/D P SUFFIX PLASTIC PACKAGE CASE 648 Clock VBB E2 MECL E1 MECL E3 MECL E4 MECL ( – ) ( + ) Device Operating Temperature Range Package

ORDERING INFORMATION

MC12011P T A = – 35° to +85°C Plastic MC12013P /C0068/C0117/C0097/C0108 /C0077/C0111/C0100/C0117/C0108/C0117/C0115 /C0080/C0114/C0101/C0115/C0099/C0097/C0108/C0101/C0114 These devices are two–modulus prescalers which will divide by 5 and 6, 8 and 9, and 10 and 11, respectively. A MECL–to–MTTL translator is provided to interface directly with the MC12014 Counter Control Logic. In addition, there is a buffered clock input and MECL bias voltage source.

  • MC12009 480 MHz (/C00665/6), MC12011 550 MHz (/C00668/9), MC12013

550 MHz (/C006610/11)

  • MECL to MTTL Translator on Chip
  • MECL and MTTL Enable Inputs
  • 5.0 or –5.2 V Operation*
  • Buffered Clock Input — Series Input RC Typ, 20 Ohms and 4 pF
  • VBB Reference Voltage
  • 310 Milliwatts (Typ) * When using a 5.0 V supply, apply 5.0 V to Pin 1 (VCCO ), Pin 6 (MTTL VCC ), Pin 16 (VCC ), and ground Pin 8 (VEE ). When using –5.2 V supply, ground Pin 1 (VCCO ), Pin 6 (MTTL VCC ), and Pin 16 (VCC ) and apply –5.2 V to Pin 8 (VEE ). If the translator is not required, Pin 6 may be left open to conserve dc power drain. MAXIMUM RATINGS Characteristic Symbol Rating Unit (Ratings above which device life may be impaired) Power Supply Voltage (VCC = 0) VEE –8.0 Vdc Input Voltage (VCC = 0) Vin 0 to VEE Vdc Output Source Current Continuous Surge IO /C011650 /C0116100 mAdc Storage Temperature Range Tstg –65 to +175 °C (Recommended Maximum Ratings above which performance may be degraded) Operating Temperature Range MC12009, MC12011, MC12013 TA –30 to +85 °C DC Fan–Out (Note 1) (Gates and Flip–Flops) n 70 — NOTES: 1. AC fan–out is limited by desired system performance. 2. ESD data available upon request.  Motorola, Inc. 1997 Rev 2

2 MOTOROLA RF/IF DEVICE DATA

Figure 1. Logic Diagrams Figure 2. Typical Frequency Synthesizer Application

3MOTOROLA RF/IF DEVICE DATA ELECTRICAL CHARACTERISTICS (Supply Voltage = –5.2 V, unless otherwise noted.) Pi Test Limits Pin Under –30°C +25°C +85°C Characteristic Symbol Under Test Min Max Min Max Min Max Unit Power Supply Drain Current ICC1 8 –88 –80 –80 mAdcpp y ICC2 6 5.2 5.2 5.2 mAdc Input Current IinH1 15 375 375 375 375 250 250 250 250 250 250 250 250 µAdc IinH2 4 1.7 1.7 6.0 6.0 2.0 2.0 6.0 6.0 2.0 2.0 6.4 6.4 mAdc IinH4 9 100 100 100 100 100 100 µAdc Leakage Current IinL1 15 –10 –10 –10 –10 –10 –10 –10 –10 –10 –10 –10 –10 µAdc IinL2 9 –1.6 –1.6 –1.6 –1.6 –1.6 –1.6 mAdc Reference Voltage VBB 14 –1.360 –1.160 Vdc Logic ‘1’ Output Voltage VOH1 (Note 1) –1.100 –1.100 –0.890 –0.890 –1.000 –1.000 –0.810 –0.810 –0.930 –0.930 –0.700 –0.700 Vdc Logic ‘0’ Output Voltage VOL1 (Note 1) –1.990 –1.990 –1.675 –1.675 –1.950 –1.950 –1.650 –1.650 –1.925 –1.925 –1.615 –1.615 Vdc VOL2 7 –4.26 –4.40 –4.48 Logic ‘1’ Threshold Voltage VOHA (Note 2) –1.120 –1.120 –1.020 –1.020 –0.950 –0.950 Vdc Logic ‘0’ Threshold Voltage VOLA (Note 3) –1.655 –1.655 –1.630 –1.630 –1.595 –1.595 Vdc Short Circuit Current IOS 7 –65 –20 –65 –20 –65 –20 mAdc 1. Test outputs of the device must be tested by sequencing through the truth table. All input, power supply and ground voltages must be maintained between tests. The clock input is the waveform shown. 2. In addition to meeting the output levels specified, the device must divide by 5, 8 or 10 during this test. The clock input is the waveform shown. 3. In addition to meeting the output levels specified, the device must divide by 6, 9 or 11 during this test. The clock input is the waveform shown. Each MECL 10,000 series circuit has been designed to meet the dc specifications shown in the test table, after thermal equilibrium has been established. The circuit is in a test socket or mounted on a printed circuit board and transverse air flow greater than 500 linear fpm is maintained. Outputs are terminated through a 50 Ω resistor to –2.0 V. Test procedures are shown for only one gate. The other gates are tested in the same manner. VIHmax VILmin Clock Input

4 MOTOROLA RF/IF DEVICE DATA

ELECTRICAL CHARACTERISTICS (Supply Voltage = –5.2 V, unless otherwise noted.) (continued) TEST VOLTAGE/CURRENT VALUES Volts @ Test Temperature VIHmax VILmin VIHAmin VILAmax VIH VILH Pin Under TEST VOLTAGE APPLIED TO PINS LISTED BELOW GdCharacteristic Symbol U nder Test VIHmax VILmin VIHAmin VILAmax VIH VIL Gnd Power Supply Drain Current ICC1 8 1,16 ICC2 6 4 5 6 Input Current IinH1 15 1,16 1,16 1,16 1,16 IinH2 4 IinH3 5 4 5 6 IinH4 9 1,16 1,16 Leakage Current IinL1 15 1,16 1,16 1,16 1,16 IinL2 9 1,16 1,16 Reference Voltage VBB 14 1,16 Logic ‘1’ Output Voltage VOH1 (Note 1.) 11,12,13 11,12,13 9,10 9,10 1,16 1,16 VOH2 7 5 4 6 Logic ‘0’ Output Voltage VOL1 (Note 1.) 11,12,13 11,12,13 9,10 9,10 1,16 1,16 VOL2 7 4 5 6 Logic ‘1’ Threshold Voltage VOHA (Note 2.) 11,12,13 11,12,13 1,16 1,16 Logic ‘0’ Threshold Voltage VOLA (Note 3.) 11,12,13 11,12,13 1,16 1,16 Short Circuit Current IOS 7 5 4 7 6 1. Test outputs of the device must be tested by sequencing through the truth table. All input, power supply and ground voltages must be maintained between tests. The clock input is the waveform shown. 2. In addition to meeting the output levels specified, the device must divide by 5, 8 or 10 during this test. The clock input is the waveform shown. 3. In addition to meeting the output levels specified, the device must divide by 6, 9 or 11 during this test. The clock input is the waveform shown. VIHmax VILmin Clock Input

5MOTOROLA RF/IF DEVICE DATA ELECTRICAL CHARACTERISTICS (Supply Voltage = –5.2 V, unless otherwise noted.) (continued) TEST VOLTAGE/CURRENT VALUES Volts mA @ Test Temperature VIHT VILT VEE IL IOL IOH Pin Under TEST VOLTAGE APPLIED TO PINS LISTED BELOW GdCharacteristic Symbol U nder Test VIHT VILT VEE IL IOL IOH Gnd Power Supply Drain Current ICC1 8 8 1,16 ICC2 6 8 6 Input Current IinH1 15 9,10 9,10 9,10 1,16 1,16 1,16 1,16 IinH2 4 IinH3 5 8 6 IinH4 9 1,16 1,16 Leakage Current IinL1 15 8,15 8,11 8,12 8,13 1,16 1,16 1,16 1,16 IinL2 9 1,16 1,16 Reference Voltage VBB 14 8 14 1,16 Logic ‘1’ Output Voltage VOH1 (Note 1.) 1,16 1,16 VOH2 7 8 7 6 Logic ‘0’ Output Voltage VOL1 (Note 1.) 1,16 1,16 VOL2 7 8 7 6 Logic ‘1’ Threshold Voltage VOHA (Note 2.) 9,10 9,10 1,16 1,16 Logic ‘0’ Threshold Voltage VOLA (Note 3.) 9,10 9,10 1,16 1,16 Short Circuit Current IOS 7 8 6 1. Test outputs of the device must be tested by sequencing through the truth table. All input, power supply and ground voltages must be maintained between tests. The clock input is the waveform shown. 2. In addition to meeting the output levels specified, the device must divide by 5, 8 or 10 during this test. The clock input is the waveform shown. 3. In addition to meeting the output levels specified, the device must divide by 6, 9 or 11 during this test. The clock input is the waveform shown. VIHmax VILmin Clock Input

6 MOTOROLA RF/IF DEVICE DATA

ELECTRICAL CHARACTERISTICS (Supply Voltage = 5.0 V, unless otherwise noted.) Pi Test Limits Pin Under –30°C +25°C +85°C Characteristic Symbol Under Test Min Max Min Max Min Max Unit Power Supply Drain Current ICC1 8 –88 –80 –80 mAdcpp y ICC2 6 5.2 5.2 5.2 mAdc Input Current IinH1 15 375 375 375 375 250 250 250 250 250 250 250 250 µAdc IinH2 4 1.7 1.7 6.0 6.0 2.0 2.0 6.0 6.0 2.0 2.0 6.4 6.4 mAdc IinH4 9 100 100 100 100 100 100 µAdc Leakage Current IinL1 15 –10 –10 –10 –10 –10 –10 –10 –10 –10 –10 –10 –10 µAdc IinL2 9 –1.6 –1.6 –1.6 –1.6 –1.6 –1.6 mAdc Reference Voltage VBB 14 3.67 3.87 Vdc Logic ‘1’ Output Voltage VOH1 (Note 4.) 3.900 3.900 4.110 4.110 4.000 4.000 4.190 4.190 4.070 4.070 4.300 4.300 Vdc VOH2 7 2.4 2.6 2.8 Logic ‘0’ Output Voltage VOL1 (Note 4.) 3.070 3.070 3.385 3.385 3.110 3.110 3.410 3.410 3.135 3.135 3.445 3.445 Vdc VOL2 7 0.94 0.80 0.72 Logic ‘1’ Threshold Voltage VOHA (Note 5.) 3.880 3.880 3.980 3.980 4.050 4.050 Vdc Logic ‘0’ Threshold Voltage VOLA (Note 6.) 3.405 3.405 3.430 3.430 3.465 3.465 Vdc Short Circuit Current IOS 7 –65 –20 –65 –20 –65 –20 mAdc 4. Test outputs of the device must be tested by sequencing through the truth table. All input, power supply and ground voltages must be maintained between tests. The clock input is the waveform shown. 5. In addition to meeting the output levels specified, the device must divide by 5, 8 or 10 during this test. The clock input is the waveform shown. 6. In addition to meeting the output levels specified, the device must divide by 6, 9 or 11 during this test. The clock input is the waveform shown. Each MECL 10,000 series circuit has been designed to meet the dc specifications shown in the test table, after thermal equilibrium has been established. The circuit is in a test socket or mounted on a printed circuit board and transverse air flow greater than 500 linear fpm is maintained. Outputs are terminated through a 50 Ω resistor to –2.0 V. Test procedures are shown for only one gate. The other gates are tested in the same manner. VIHmax VILmin Clock Input

7MOTOROLA RF/IF DEVICE DATA ELECTRICAL CHARACTERISTICS (Supply Voltage = 5.0 V, unless otherwise noted.) (continued) TEST VOLTAGE/CURRENT VALUES Volts @ Test Temperature VIHmax VILmin VIHAmin VILAmax VIH VILH Pin Under TEST VOLTAGE APPLIED TO PINS LISTED BELOW (VEE ) Characteristic Symbol U nder Test VIHmax VILmin VIHAmin VILAmax VIH VIL (VEE ) Gnd Power Supply Drain Current ICC1 8 8 ICC2 6 4 5 8 Input Current IinH1 15 IinH2 4 IinH3 5 4 5 8 IinH4 9 Leakage Current IinL1 15 8,15 8,11 8,12 8,13 IinL2 9 Reference Voltage VBB 14 8 Logic ‘1’ Output Voltage VOH1 (Note 4.) 11,12,13 11,12,13 9,10 9,10 VOH2 7 5 4 8 Logic ‘0’ Output Voltage VOL1 (Note 4.) 11,12,13 11,12,13 9,10 9,10 VOL2 7 4 5 8 Logic ‘1’ Threshold Voltage VOHA (Note 5.) 11,12,13 11,12,13 Logic ‘0’ Threshold Voltage VOLA (Note 6.) 11,12,13 11,12,13 Short Circuit Current IOS 7 5 4 7 8 4. Test outputs of the device must be tested by sequencing through the truth table. All input, power supply and ground voltages must be maintained between tests. The clock input is the waveform shown. 5. In addition to meeting the output levels specified, the device must divide by 5, 8 or 10 during this test. The clock input is the waveform shown. 6. In addition to meeting the output levels specified, the device must divide by 6, 9 or 11 during this test. The clock input is the waveform shown. VIHmax VILmin Clock Input

8 MOTOROLA RF/IF DEVICE DATA

ELECTRICAL CHARACTERISTICS (Supply Voltage = 5.0 V, unless otherwise noted.) (continued) TEST VOLTAGE/CURRENT VALUES Volts mA @ Test Temperature VIHT VILT VCC IL IOL IOH Pin Under TEST VOLTAGE APPLIED TO PINS LISTED BELOW (VEE ) Characteristic Symbol U nder Test VIHT VILT VCC IL IOL IOH (VEE ) Gnd Power Supply Drain Current ICC1 8 1,16 8 ICC2 6 6 8 Input Current IinH1 15 9,10 9,10 9,10 1,16 1,16 1,16 1,16 IinH2 4 IinH3 5 6 8 IinH4 9 1,16 1,16 Leakage Current IinL1 15 1,16 1,16 1,16 1,16 8,15 8,11 8,12 8,13 IinL2 9 1,16 1,16 Reference Voltage VBB 14 1,16 14 8 Logic ‘1’ Output Voltage VOH1 (Note 4.) 1,16 1,16 VOH2 7 6 7 8 Logic ‘0’ Output Voltage VOL1 (Note 4.) 1,16 1,16 VOL2 7 6 7 8 Logic ‘1’ Threshold Voltage VOHA (Note 5.) 9,10 9,10 1,16 1,16 Logic ‘0’ Threshold Voltage VOLA (Note 6.) 9,10 9,10 1,16 1,16 Short Circuit Current IOS 7 6 8 4. Test outputs of the device must be tested by sequencing through the truth table. All input, power supply and ground voltages must be maintained between tests. The clock input is the waveform shown. 5. In addition to meeting the output levels specified, the device must divide by 5, 8 or 10 during this test. The clock input is the waveform shown. 6. In addition to meeting the output levels specified, the device must divide by 6, 9 or 11 during this test. The clock input is the waveform shown. VIHmax VILmin Clock Input

10 MOTOROLA RF/IF DEVICE DATA

All Pulse Generators are EH 137 or equiv. All input and output cables to the scope are equal lengths of 50–ohm coaxial cable. The 1950–ohm resistor at Pin 7 and the scope termination impedance constitute a 40 : 1 attenuator probe. C T = 15 pF = total parasitic capacitance which includes probe, wiring, and load capacitance. Unused output connected to a 50–ohm resistor to ground.

100 Vin

Figure 5. AC Test Circuit

Figure 6. Maximum Frequency Test Circuit

5 Cycles 4 Cycles

5 Cycles6 Cycles

Figure 7. State Diagram Clock Transition when the counter is in state 1100.

12 MOTOROLA RF/IF DEVICE DATA

Figure 8. Divide By 10/11 (MC12013) local oscillator of two–way radios. 6, 9, or 11 occurs when all inputs E1 through E5 are low.

Figure 9. Divide By 20/21 (MC12013) E4 and E5 are used rather than E1. With E1 + E2 + E3 = 0, operation remains as shown. Figure 10. Divide By 40/41 (MC12013) driving the translator section.

14 MOTOROLA RF/IF DEVICE DATA

15MOTOROLA RF/IF DEVICE DATA P SUFFIX PLASTIC PACKAGE CASE 648–08 ISSUE R NOTES: 1. DIMENSIONING AND TOLERANCING PER ANSI Y14.5M, 1982. 2. CONTROLLING DIMENSION: INCH. 3. DIMENSION L TO CENTER OF LEADS WHEN FORMED PARALLEL. 4. DIMENSION B DOES NOT INCLUDE MOLD FLASH. 5. ROUNDED CORNERS OPTIONAL. –A– B F C S H G D J L M 16 PL SEATING 916 K PLANE–T– MAM0.25 (0.010) T DIM MIN MAX MIN MAX MILLIMETERSINCHES A 0.740 0.770 18.80 19.55 B 0.250 0.270 6.35 6.85 C 0.145 0.175 3.69 4.44 D 0.015 0.021 0.39 0.53 F 0.040 0.70 1.02 1.77 G 0.100 BSC 2.54 BSC H 0.050 BSC 1.27 BSC J 0.008 0.015 0.21 0.38 K 0.110 0.130 2.80 3.30 L 0.295 0.305 7.50 7.74 M 0 10 0 10 S 0.020 0.040 0.51 1.01 /C0095/C0095/C0095/C0095 OUTLINE DIMENSIONS Motorola reserves the right to make changes without further notice to any products herein. Motorola makes no warranty, representation or guarantee regarding the suitability of its products for any particular purpose, nor does Motorola assume any liability arising out of the application or use of any product or circuit, and specifically disclaims any and all liability, including without limitation consequential or incidental damages. “Typical” parameters which may be provided in Motorola data sheets and/or specifications can and do vary in different applications and actual performance may vary over time. All operating parameters, including “Typicals” must be validated for each customer application by customer’s technical experts. Motorola does not convey any license under its patent rights nor the rights of others. Motorola products are not designed, intended, or authorized for use as components in systems intended for surgical implant into the body, or other applications intended to support or sustain life, or for any other application in which the failure of the Motorola product could create a situation where personal injury or death may occur. Should Buyer purchase or use Motorola products for any such unintended or unauthorized application, Buyer shall indemnify and hold Motorola and its officers, employees, subsidiaries, affiliates, and distributors harmless against all claims, costs, damages, and expenses, and reasonable attorney fees arising out of, directly or indirectly, any claim of personal injury or death associated with such unintended or unauthorized use, even if such claim alleges that Motorola was negligent regarding the design or manufacture of the part. Motorola and are registered trademarks of Motorola, Inc. Motorola, Inc. is an Equal Opportunity/Affirmative Action Employer. Mfax is a trademark of Motorola, Inc. How to reach us: USA / EUROPE / Locations Not Listed: Motorola Literature Distribution;JAPAN : Nippon Motorola Ltd.: SPD, Strategic Planning Office, 141, P.O. Box 5405, Denver, Colorado 80217. 1–303–675–2140 or 1–800–441–2447 4–32–1 Nishi–Gotanda, Shagawa–ku, Tokyo, Japan. 03–5487–8488 Customer Focus Center: 1–800–521–6274 Motorola Fax Back System – US & Canada ONLY 1–800–774–1848 51 Ting Kok Road, Tai Po, N.T., Hong Kong. 852–26629298 – http://sps.motorola.com/mfax/ HOME PAGE : http://motorola.com/sps/ 12009/D