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L7585F Scheda tecnica(PDF) 13 Page - Agere Systems |
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L7585F Scheda tecnica(HTML) 13 Page - Agere Systems |
13 / 22 page ![]() Agere Communications Inc. 13 Data Sheet September 2001 L7585F Full-Feature, Low-Power SLIC and Switch Electrical Characteristics (continued) Transmit direction is tip/ring to VTX. Receive direction is RCVP(N) to tip/ring. Table 8. Transmission Characteristics 1. Set by external components in conjunction with the T7531A/T7536 codecs. Any complex impedance R1 + R2 || C between 200 Ω and 1200 Ω can be synthesized. 2. Return loss and transhybrid loss are functions of device gain accuracies and the external hybrid circuit. Guaranteed performance assumes 1% tolerance external resistors and capacitors. 3. This parameter is not tested in production; it is guaranteed by design and device characterization. 4. VTX gain depends on the resistor RGX1 from pin VITR to pin ITR. This gain assumes an ideal 8250 Ω, the recommended value. Positive cur- rent is defined as the differential current flowing from PT to PR. The transmit signal at VTX is measured with respect to pin VRTX. Parameter Min Typ Max Unit ac Termination Impedance1 200 —1200 Ω Return Loss2: 200 Hz—500 Hz 500 Hz—3400 Hz 25 29 — — — — dB dB Total Harmonic Distortion (200 Hz—4 kHz)3: Off-hook On-hook — — — — 0.3 1 % % Transmit Gain (f = 1 kHz)4: PT/PR Current to (VTX—VRTX) –291 –300 –309 V/A Receive Gain (f = 1 kHz): (RCVP—RCVN) to (PT—PR) 1.94 2 2.06 — Gain vs. Frequency (transmit and receive)3 (600 Ω termination; 1 kHz reference): 200 Hz—300 Hz 300 Hz—3.4 kHz 3.4 kHz—20 kHz 20 kHz—266 kHz –0.3 –0.05 –3.0 — 0 0 0 — 0.05 0.05 0.05 2.0 dB dB dB dB Gain vs. Level (transmit and receive; 0 dBV reference)3: –50 dB to +3 dB –0.05 0 0.05 dB Transhybrid Loss2: 200 Hz—500 Hz 500 Hz—3400 Hz 25 29 — — — — dB dB Idle-channel Noise (tip/ring; 600 Ω termination): Psophometric C-message 3 kHz Flat — — — — — — –77 13 20 dBmp dBrnC dBrn Idle-channel Noise ((VTX—VRTX); 600 Ω termination): Psophometric C-message 3 kHz Flat — — — — — — –77 13 20 dBmp0 dBrnC0 dBrn0 EMC, per EN 300 386-2 and EN61000-4-6 (3 Vrms, 80% mod- ulation, 105 kHz—80 MHz, 150 Ω source impedance)3 — — –40 dBm, 600 Ω |
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