| поискавой системы для электроныых деталей |
|
STLC3055N датащи(PDF) 19 Page - STMicroelectronics |
|
|
|||||||||||||||||||||||||||||
STLC3055N датащи(HTML) 19 Page - STMicroelectronics |
|
19 / 34 page ![]() STLC3055N Application information 19/34 ZB(1) Line impedance balancing network ZB = 50 ⋅ Zl 30 k Ω 1% @ Zl = 600 Ω CCOMP AC feedback loop compensation fo = 250 kHz CCOMP = 1/(2 π⋅fo⋅100⋅(RP)) 120 pF 10% 10 V @ Rp = 50 Ω CH Trans-Hybrid Loss frequency compensation CH = CCOMP 120 pF 10% 10 V RTTX(2) Pulse metering cancellation resistor RTTX = 50Re (Zlttx+2Rp) 15 k Ω @Zlttx = 200 Ω real CTTX(2) Pulse metering cancellation capacitor CTTX = 1/{50 ⋅2π⋅fttx[- lm(Zlttx)]} 100nF 10% 10V(3) @ Zlttx = 200 Ω real RLV Pulse metering level resistor RLV = 63.3·103·· α·V LOTTX α = (|Zlttx + 2Rp|/|Zlttx|) 16.2 k Ω @ V LOTTX = 170mVrms CS Pulse metering shaping capacitor CS = τ/(2⋅RLV) 100 nF 10% 10V @ τ = 3.2 ms, RLV = 16.2 kΩ CFL Pulse metering filter capacitor CFL = 2/(2 π⋅fttx⋅RLV) 1.5 nF 10% 10 V @fttx = 12 kHz RLV = 16.2 k Ω 1. In case Zs=Zl, ZA and ZB can be replaced by two resistors of same value: RA=RB=|Zs|. 2. Defining ZTTX as the impedance of RTTX in series with CTTX, RTTX and CTTX can also be calculated from the following formula: ZTTX=50*(Zlttx+2Rp). 3. In this case CTTX is just operating as a DC decoupling capacitor (fp=100 Hz). Table 11. External components @gain set = 0 (continued) Name Function Formula Typ. value Table 12. External components @gain set = 1 Name Function Formula Typ. value RS Protection resistance image RS = 25 ⋅ (2Rp) 2.55 k Ω @ Rp = 50 Ω ZAC Two wire AC impedance ZAC = 25 ⋅ (Zs - 2Rp) 12.5 k Ω 1% @ Zs = 600 Ω ZA(1) SLIC impedance balancing network ZA = 25 ⋅ Zs 15 k Ω 1% @ Zs = 600 Ω ZB(1) Line impedance balancing network ZB = 25 ⋅ Zl 15 k Ω 1% @ ZI = 600 Ω CCOMP AC feedback loop compensation fo = 250kHz CCOMP = 2/(2 π⋅fo⋅100⋅(RP)) 220 pF 10% 10VL @ Rp = 50 Ω CH Trans-Hybrid Loss frequency compensation CH = CCOMP 220 pF 10% 10 V RTTX(2) Pulse metering cancellation resistor RTTX = 25Re (Zlttx+2Rp) 7.5 k Ω @Zlttx = 200 Ω real CTTX(2) Pulse metering cancellation capacitor CTTX = 1/25 ⋅2π⋅fttx⋅[-lm(Zlttx)] 100 nF 10% 10 V(3) @ Zlttx = 200 Ω real RLV Pulse metering level resistor RLV = 31.7·103·· α·V LOTTX α = (|Zlttx + 2Rp|/|Zlttx|) 16.2 k Ω @ V LOTTX = 340 mVrms |
|
ссылки URL |
| Вашему бизинису помогли Аллдатащит? [ DONATE ] |
Что такое Аллдатащит | реклама | контакт | Конфиденциальность | Ссылка на техническое описание | обмен ссыками | поиск по производителю All Rights Reserved©Alldatasheet.com |
| Russian : Alldatasheetru.com | Korean : Alldatasheet.co.kr | Spanish : Alldatasheet.es | French : Alldatasheet.fr | Italian : Alldatasheetit.com Portuguese : Alldatasheetpt.com | Polish : Alldatasheet.pl | Vietnamese : Alldatasheet.vn Indian : Alldatasheet.in | Mexican : Alldatasheet.com.mx | British : Alldatasheet.co.uk | New Zealand : Alldatasheet.co.nz |
|
Family Site : ic2ic.com |
icmetro.com |