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LA75694M View Datasheet(PDF) - SANYO -> Panasonic

Part Name
Description
Manufacturer
LA75694M Datasheet PDF : 10 Pages
1 2 3 4 5 6 7 8 9 10
LA75694M
F1. 1st SIF conversion gain [VG]
(1) Internal AGC
(2) fp = 45.75MHz CW; 10mV (VIF input)
fs = 41.25MHz CW; 500µV (1st SIF input) ····· V1
(3) Detection output level at test point C (Vrms) ····· V2 (4.5MHz)
(4) VG = 20log
V2
V1
dB
F2. 4.5MHz output level [SO]
(1) Internal AGC
(2) fp = 45.75MHz CW; 10mV (VIF input)
fs = 41.25MHz CW; 10mV (1st SIF input) ····· V1
(3) Detection output level at test point C (4.5MHz) ····· SO (mVrms)
F3. 1st SIF maximum input [Si max]
(1) Internal AGC
(2) fp = 45.75MHz CW; 10mV (VIF input)
fs = 41.25MHz CW; variable (1st SIF input)
(3) Input level at which the detection output at test point C (4.5MHz) becomes SO ±2dB. ····· Si max
F4.F5. 1st SIF input resistance, Input capacitance [Ri (SIF), Ci (SIF)]
(1) Using an input analyzer, measure Ri and Ci in the input impedance measuring circuit.
C1. Converter conversion gain [VG (SIF)]
(1) Internal AGC
(2) fp = 45.75MHz CW; 10mV (VIF input)
fs = 41.25MHz CW; 316µV (1st SIF input)
(3) Measure the 6MHz component at test point E (MIX output) ····· V1
(4) Measure the 4.5MHz component at test point F (NICAM output). ····· V2
(5) VG(SIF) = 20log
V1 dB
V2
C2. SIF converter maximum output level [V max]
(1) Internal AGC
(2) fp = 45.75MHz CW; 10mV (VIF input)
fs = 41.25MHz CW; 10mV (1st SIF input)
(3) Measure the 6MHz component at test point E (MIX output). ····· V max (dBµV)
C3. Carrier suppression ratio [VGR (4.5)]
(1) Internal AGC
(2) fp = 45.75MHz CW; 10mV (VIF input)
fs = 41.25MHz CW; 316µV (1st SIF input)
(3) Measure the 6MHz component at test point E (MIX output). ····· V6 (dBµV)
(4) Measure the 4.5MHz component at test point E (MIX output). ····· V4.5 (dBµV)
(5) Perform the following calculation.
Carrier suppression ratio VGR (4.5) (dB) = V6 – V4.5
C5. OSC leakage [OSC leak]
(1) Internal AGC
(2) fp = 45.75MHz CW; 10mV (VIF input)
fs = 41.25MHz CW; 316µV (1st SIF input)
(3) Measure the 6MHz component at test point E (MIX output). ····· V6 (dBµV)
(4) Measure the 500kHz component at test point E (MIX output). ····· V0.5 (dBµV)
(5) Perform the following calculation.
Carrier suppression ratio OSC leak (dB) = V6 – V0.5
No.A0251-9/10

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