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CXA1695L

CXA1695L

  • 厂商:

    SONY(索尼)

  • 封装:

  • 描述:

    CXA1695L - All Band TV Tuner IC (VHF-CATV-UHF) - Sony Corporation

  • 数据手册
  • 价格&库存
CXA1695L 数据手册
CXA1695L All Band TV Tuner IC (VHF-CATV-UHF) Description The CXA1695L is a single chip TV tuner IC which performs as an oscillator, mixer for VHF/CATV and UHF bands. An IF amplifier is also provided. This IC achieves a large reduction of external parts in addition to miniaturizing the tuner and increasing manufacturing productivity, reliability and design efficiency. This IC is pin-compatible with the CXA1594L with improvement in noise figure and oscillation stability. 16 pin SZIP (Plastic) Structure Bipolar silicon monolithic IC Features • On-chip oscillator and mixer for UHF band • Low noise figure • Reduced spurious interference • Superior cross modulation • Stable oscillation characteristics • Ultra small package ensures tuner miniaturization Absolute Maximum Ratings (Ta=25 °C) • Supply voltage Vcc 11 V • Storage temperature Tstg –55 to +150 °C • Allowable power dissipation PD 930 mW (when mounted on board) Applications • CTV tuner • CATV UP-DOWN converter Operating Conditions • Supply voltage Vcc • Operating temperature Topr 8.1 to 9.9 –20 to +75 V °C Block Diagram and Pin Configuration VHF MIX UHF MIX – IF AMP + VHF OSC SW V REG UHF OSC 1 IF OUT 2 VHF IN 1 3 MIX OUT 1 4 VHF IN 2 5 MIX OUT 2 6 GND 7 SW 8 Vcc 9 V OSC B 10 11 12 13 14 15 16 UHF IN 1 UHF IN 2 Sony reserves the right to change products and specifications without prior notice. This information does not convey any license by any implication or otherwise under any patents or other right. Application circuits shown, if any, are typical examples illustrating the operation of the devices. Sony cannot assume responsibility for any problems arising out of the use of these circuits. —1— U OSC B2 E92Y29A51-TE U OSC B1 V OSC C U OSC C GND CXA1695L Pin Description and Equivalent Circuit Pin No. 1 Symbol IF OUT Typical pin voltage (V) Under VHF operation 4.4 Equivalent circuit Vcc Description IF output. 8 55 Under UHF operation 4.4 1 2 VHF IN 1 3.2 3.3 2 3k 3k 4 4 VHF IN 2 3.2 VHF input. Normally a decoupling capacitor is connected at pin 2 to GND and pin 4 is used for input. 3.3 3 MIX OUT 1 7.5 8 Vcc 450 450 5k Mixer output and IF amplifier input. 7.2 3 5 MIX OUT 2 7.5 5 5k 7.2 6 7 GND SW 0 3V or more 8 Vcc GND UHF/VHF switch pin. Connect 9V source through about a 10kΩ resister for VHF reception; 0V or leave open for UHF. 60k 0.4V or less 40k 7 —2— CXA1695L Pin No. 8 9 Symbol Vcc V OSC B Typical pin voltage (V) 9.0 3.5 Equivalent circuit Description Power supply VHF oscillator. Vcc 8 3.7 11 800 9 11 V OSC C 6.7 3k 3k 25p 9.0 10 UHF IN 1 3.3 3.1 10 3k 3k 12 UHF input. The balanced input to Pins 10 and 12, or a decoupling capacitor is connected at Pin 12 to GND and Pin 10 is used for input. 12 UHF IN 2 3.3 3.1 13 GND 0 9.0 6.5 800 Vcc GND UHF oscillator. 8 14 U OSC C 15 U OSC B2 3.6 3.4 14 16 3k 3k 15 16 U OSC B1 3.6 3.4 —3— CXA1695L Electrical Characteristics Item Circuit current Conversion gain ∗1 Symbol IccV IccU CG1 CG2 CG3 CG4 NF1 NF2 NF3 NF4 CM1 CM2 CM3 CM4 Max. output power Pomax (sat) ∆fsw1 ∆fsw2 ∆fsw2 ∆fsw4 ∆fst1 +B supply voltage drift ∆fst2 ∆fst3 ∆fst4 See Electrical Characteristics Test Circuit (Ta=25°C, VCC=9V) Measurement conditions Min. Typ. 45.0 45.0 20.5 21.0 26.0 27.0 9.5 10.0 6.0 7.0 99.0 97.0 90.0 90.0 Max. 58.0 58.0 23.5 24.0 29.0 30.0 12.5 13.0 10.0 11.0 Unit mA mA dB dB dB dB dB dB dB dB dBµ dBµ dBµ dBµ dBm ±300 ±400 ±600 ±700 ±200 ±300 ±400 ±400 kHz kHz kHz kHz kHz kHz kHz kHz Noise figure ∗1∗2 1% cross modulation ∗1∗3 VHF operation, no signal UHF operation, no signal VHF operation, fRF=55 MHz, input level –40 dBm VHF operation, fRF=360 MHz, input level –40 dBm UHF operation, fRF=360 MHz, input level –40 dBm UHF operation, fRF=800 MHz, input level –40 dBm VHF operation, fRF=55 MHz VHF operation, fRF=360 MHz UHF operation, fRF=360 MHz UHF operation, fRF=800 MHz VHF operation, fD=55 MHz fUD=±12 MHz VHF operation, fD=360 MHz fUD=±12 MHz UHF operation, fD=360 MHz fUD=±12 MHz UHF operation, fD=800 MHz fUD=±12 MHz 50Ωload VHF operation, fosc=100 MHz Frequency drift from 3 s to 3 min. after switch ON VHF operation, fosc=405 MHz Frequency drift from 3 s to 3 min. after switch ON UHF operation, fosc=405 MHz Frequency drift from 3 s to 3 min. after switch ON UHF operation, fosc=845 MHz Frequency drift from 3 s to 3 min. after switch ON VHF operation, fosc=100 MHz Frequency shift when VCC +9 V changes ±5 % VHF operation, fosc=405 MHz Frequency shift when VCC +9 V changes ±5 % UHF operation, fosc=405 MHz Frequency shift when VCC +9 V changes ±5 % UHF operation, fosc=845 MHz Frequency shift when Vcc +9 V changes ±5 % 17.5 18.0 23.0 24.0 95.0 93.0 86.0 86.0 +8.0 +12.0 Switch ON drift ∗1) Measured value for untuned inputs. Unbalanced input for VHF; balanced input for UHF. ∗2) Noise figure is uncorrected for image. ∗ 3) Desired signal (f D) input level is –34 dBm. Undesired signal (f UD) is 100 kHz at 40 %AM. The measurement value is undesired signal level, it measured with spectrum analyzer at S/I=46 dB. —4— Electrical Characteristics Test Circuit +9V VHF in UHF in 0.5p(SL) 51k 1T363 2T 2T 51k 1n 1n 1n 1n 1n 27p 20 1T363 8p(UJ) L1 27p Vc 2 10 12 14 16 4 Vcc VHF IN 2 GND UHF IN 1 UHF IN 2 U OSC C U OSC B1 6 8 VHF IN 1 0.5p(SL) CXA1695L MIX OUT 1 MIX OUT 2 V OSC C IF OUT SW V OSC B GND U OSC B2 1 3.6k 100p 11 13 15 3 10 5 7 9 1n 10p 68p 68p 1.2µH 16p 1p(UK) IFout 10T 10 10k 1T362 0.5p(UK) 51k 51k ON : VHF OFF: UHF 1n Vc 51k L2 68p(RH) +9V SW 1 1T363 2.2µ VH SW2 1n 51k 51 +9V L3 1n Wire diameter Coil diameter Number of windings L1 0.5 3.2 1.5T L2 0.5 3.4 2.5T L3 0.5 3.2 5.5T 1n 3k CXA1695L 51 2.2µ VL 2.2µ 51k —5— CXA1695L Description of Operation (See Electrical Characteristics Test Circuit) (1) VHF oscillator circuit The differential oscillator circuit with Pin 11 output and Pin 9 input. Connect an LC resonance circuit comprising a varicap diode to Pin 11 through a coupling capacitor. The positive feedback from the resonance circuit is applied to Pin 9 through a feedback capacitor to execute oscillation. Note that if a parasitic capacitance across Pins 9 and 11 is too large, it may cause undesired oscillation. (2) VHF mixer circuit This is a double-balanced mixer having small leakage of local oscillation signal. The RF signal input terminal are Pins 2 and 4. In normal use, the signal is input to one pin while the other pin is connected to GND by decoupling capacitor. The RF signal is converted to IF with the signal supplied from oscillator. The converted RF is sent to the IF amplifier and output to Pins 3 and 5 simultaneously. (3) UHF oscillator circuit This is the differential oscillator same circuit as the VHF oscillator. In Electrical Characteristics Test Circuit, oscillation is executed as a Colpitts oscillator using one side transistor of the differential amplifier. (4) UHF mixer circuit This is the double-balanced mixer same circuit as the VHF mixer. The RF signal input terminal are to Pins 10 and 12.These are used balanced differential input from pre-stage double tune circuit, or an unbalanced input to Pin 10 with the capacitor connected at Pin 12 to GND. Balanced input achieves better NF rather than unbalanced input. Otherwise, the conditions and usage are the same as for the VHF mixer. (5) IF amplifier circuit The mixer output signal is amplified by the IF amplifier and output to Pin 1. The output impedance is approximately 75Ω. (6) UHF/VHF switching circuit UHF / VHF modes are switched by the DC voltage at Pin 7. UHF operation is for open or 0V; VHF operation, for 3V or more. Normally, for internal protection UHF/VHF switch is performed by 9V or open through about 10kΩ resistor. Notes on Usage Care should be taken in placing external parts because high frequencies are present. Adjust accordingly to prevent heat problems with special care for Pins 6 and 13 (GND) whose heat dissipation accumulate. —6— CXA1695L Example of Representative Characteristics Circuit current vs. Sup p ly voltage Conversion gain vs. Recep tion frequency (Untuned inp ut) 40 fIF=45MHz CG - Conversion gain (dB) 50 Icc - Circuit current (mA ) 30 UHF 40 20 VHF 10 30 0 8 9 10 0 100 200 300 400 500 600 700 800 900 V cc - Sup p ly voltage (V ) Noise figure vs. Recep tion frequency (Untuned inp ut, in DSB) fIF =45MHz Recep tion frequency (MHz) Next adjacent cross modulation vs. Recep tion frequency (Untuned inp ut) 120 20 CM - Cross modulation (dBµ) 100 NF - Noise figure (dB) 15 80 fUD=fD+12MHz fUD=fD–12MHz 60 10 VHF UHF 40 fIF =45MHz Interference signals:100kHz 40% AM 20 5 0 0 100 200 300 400 500 600 700 800 900 0 100 200 300 400 500 600 700 800 900 Recep tion frequency (MHz) I/O characteristics (Untuned inp ut) 20 10 Recep tion frequency (MHz) IF outp ut level (dBm) 0 –10 –20 –30 –40 –50 fIF =45MHz fRF =100MHz (VHF) –50 –40 –30 –20 –10 0 +10 RF inp ut level (dBm) —7— CXA1695L VHF Input Impedance j25 j50 j100 j150 j10 j250 0 50 50MHz 100MHz 200MHz –j10 –j250 400MHz –j150 VHFIN1 –j25 –j100 IC VHFIN2 2 1n 3 4 S11 5 6 –j50 UHF Input Impedance j25 j50 j100 j150 j10 j250 0 50 –j10 800MHz –j250 400MHz 600MHz –j150 UHFIN1 IC UHFIN2 10 S11 11 12 1n 8 –j25 –j100 9 –j50 —8— CXA1695L IF Output Impedance j50 j25 j100 j150 j10 60MHz j250 50MHz 0 40MHz 50 –j10 –j250 –j150 –j25 –j100 –j50 —9— CXA1695L Package Outline Unit : mm 16PIN SZIP (PLASTIC) 225mil + 0.4 14.0 – 0.1 2.2 ± 0.2 + 0.3 4.35 – 0.1 1 0.4 ± 0.1 0.25 M 16 0.889 0° to 8° + 0.1 0.2 – 0.05 1.778 PACKAGE STRUCTURE PACKAGE MATERIAL SONY CODE EIAJ CODE JEDEC CODE SZIP-16P-01 SZIP016-P-0225-A LEAD TREATMENT LEAD MATERIAL PACKAGE WEIGHT EPOXY RESIN SOLDER PLATING COPPER ALLOY 0.3g —10— 3.1 SEATING PLANE 5.715 MAX
CXA1695L 价格&库存

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