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STLC3055N Datasheet(PDF) 18 Page - STMicroelectronics |
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STLC3055N Datasheet(HTML) 18 Page - STMicroelectronics |
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18 / 34 page ![]() Application information STLC3055N 18/34 4 RF1 sets the self generated battery voltage in Ring and Active (Il=0) mode as follows: VBATR should be defined considering the ring peak level required (Vringpeak=VBATR-6 V typ.). The above relation is valid provided that the Vpos power supply current capability and the RSENSE programming allow to source all the current requested by the particular ringer load configuration. 5 For high efficiency in HI-Z mode coil resistance @125 kHz must be < 3 Ω CVpos Positive supply filter capacitor with low impedance for switch mode power supply 100 μF(1) CV Battery supply filter capacitor with low impedance for switch mode power supply 100 μF 20% 100 V (2) CVB High frequency noise filter 470 nF 20% 100 V CRD (3) High frequency noise filter 100 nF 10% 15 V Q1 DC/DC converter switch P- channel MOS transistor RDS(ON) ≤ 1.2 Ω,VDS = -100 V Total gate charge = 20 nC max. with VGS = 4.5 V and VDS = 1 V ID > 500 mA Possible choiches: IRF9510 or IRF9520 or IRF9120 or equivalent D1 DC/DC converter series diode Vr > 100 V, tRR ≤ 50 ns SMBYW01-200 or equivalent RSENSE DC/DC converter peak current limiting RSENSE = 100 mV/IPK 110 m Ω @IPK = 900 mA RF1 Negative battery programming level 250 k Ω < RF1 < 300 kΩ (4) 300 k Ω 1% @ VBATR = -70 V RF2 Negative battery programming level 9.1 k Ω 1% L DC/DC converter inductor DC resistance ≤ 0.1 Ω (5) L=100 μH SUMIDA CDRH125 or equivalent 1. CVpos should be defined depending on the power supply current capability and maximum allowable ripple. 2. For low ripple application use 2 x 47 μF in parallel. 3. Can be saved if proper PCB layout avoid noise coupling on RD pin (high impedance input). 267 k Ω 280 k Ω 294 k Ω 300 k Ω VBAT(ACTIVE) -46 V -48 V -49 V -50 V VBATR(RING) -62 V -65 V -68 V -70 V Table 10. External components (continued) Name Function Formula Typ. value Table 11. External components @gain set = 0 Name Function Formula Typ. value RS Protection resistance image RS = 50 ⋅ (2Rp) 5 k Ω @ Rp = 50 Ω ZAC Two wire AC impedance ZAC = 50 ⋅ (Zs - 2Rp) 25 k Ω 1% @ Zs = 600 Ω ZA(1) SLIC impedance balancing network ZA = 50 ⋅ Zs 30 k Ω 1% @ Zs = 600 Ω |
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