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STB4395 датащи(PDF) 15 Page - STMicroelectronics |
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STB4395 датащи(HTML) 15 Page - STMicroelectronics |
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15 / 16 page ![]() 9 - APPLICATIONS 9.1 - Typical DC connection schemes 9.1.1 - Internal Regulator The STB4395 has built-in internal regulators which allows 15mA to be used for external circuitry. The output of this regulator is -2.85V with respect to the positive supply rail. 9.1.2 - External Regulator The STB4395 will always generate its own supply voltage(-2.85V with respect to VP), but the I/O interfaces allow the STB4395 to swing its output levels to the supply rails (VP to VN). The system and baseband controller can therefore be connected from the same -unregulated- supply and be indi- vidually regulated, if required . 9.2 - Application Circuits 9.2.1 - Introduction The STB4395 makes use of some unusual circuit configurations : - The STB4395 operatesfrom positive ground. The decoupling of the supply lines should take into account that the a.c. ground connections will be reversed with respect to the baseband circuit and/or the microcontroller. The use of multilayer PCB is recommended. - The filters have been adapted for the best per- formance of the IC, although standard configura- tions are also considered. 9.2.2 - Fully Configured Applications Example Figure 3 is a typical application circuit for a com- plete system. It shows the typical external compo- nents to the circuit. As the reactance of the components is critical in many locations, the use of surface mounted componentsis essential. Atypical component list is also attached. It also shows the typical values for the the various VCO circuits.The values are very dependent on layout. C3 3 10n F VN VN R1 2k Ω C1 56 pF C4 5 6pF C7 56p F C1 0 56 pF R2 2k Ω R4 2 k Ω R7 2 k Ω 1 2 3 4 5 6 7 8 9 10 16 17 18 19 20 2 6 2 7 2 8 2 9 30 36 37 38 40 11 12 13 14 15 21 22 23 24 31 32 33 34 35 25 39 46 47 48 50 41 42 43 44 45 49 56 57 58 60 51 52 53 54 55 59 61 62 63 64 C1 7 100 nF C16 2-6p F C18 20 0nF L3 1 5n H L2 1 5n H R12 50 Ω C1 9 8.2 nF C15 82n F L4 56 µH R6 0 Ω R5 0 Ω R3 0 Ω R1 1 6. 8k Ω R10 6. 8k Ω R9 6.8 k Ω C8 0pF C1 2 30 0p F C1 3 30 0p F C5 0p F C2 0pF C1 4 30 0p F C1 1 10n F R13 5 .1k Ω R8 51 Ω L1 330 µH C3 10 µF C6 100 nF C9 100 nF VN VP VN VN C2 2 10 0n F VN C26 56 0pF C3 4 10n F 10n F C3 2 C38 10 0nF R1 8 5 Ω L10 8n H L8 8nH L7 10 nH L11 10n H R21 0 -10k Ω L5 8. 2nH C24 0pF R15 2k Ω C3 7 2-6p F L17 47 nH C3 6 5. 6nF C40 5 6nF R2 5 L18 47 nH 100 Ω R24 5 .1k Ω C4 6 100 nF VN 2-50 pF C44 82 0pF R26 10 k Ω L22 10 µH C47 100 nF C48 47p F L23 10 µH C49 47p F C42 2 -50p F C4 5 82 0pF C4 3 1n F L19 12 00n H L21 3 90 nH L20 3 90 nH R2 3 L16 2 70 nH L15 2 70 nH 20 Ω L13 7 50 nH L14 7 50 nH L9 8n H L6 8nH C2 7 0pF R17 20 Ω Approx value s of b uried trac k indu cta nc e s to grou nd C28 68p F R1 9 27k Ω R2 0 27k Ω C3 1 20 pF L12 56 µH C35 1 00p F C28 68p F C3 9 2-50 pF R22 10k Ω 33n F C20 R14 5 .1k Ω C21 47n F C23 4.7 pF C2 5 10 0nF C16 , C15, C1 9, C21 , C23, C4 1, C45 provision for co nn e ction to grou nd a lso SAW 8 66MHz 50 Ω 300 Ω SAW 15 0.4 MHz STB4395A TQFP 64 (from above) R16 4 .7k Ω C29 100 nF NVBAT VRD NPRGE N PRGCLK PRGD NTXEN LOCK I Q REFIQ FN EN DO FSH RSSI SYNCLK C41 1k Ω 1k Ω Figure 3 STB4395 15/16 |
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