High performance video signal switcher Five inputs Dual Circuits Video Signal Switchers BA7626F,BA7626FS. 2011.03 - Rev.A 1/6



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High performance video signal switcher Five inputs Dual Circuits Video Signal Switchers BA2F,BA2FS No.110EAT01 Description The BA2F/FS is a 5-input video signal switching circuit with a broadband db amplifier that was developed for AV amplifier input switching. Just by devising a transistor buffer in the output, player switching of two VCR or other videotape players and three DVD players or other playback devices is possible. Moreover, input switching and switching of recording to a VCR or other device also can be performed independently. Since the input circuit of the BA2F/FS is terminated by 20kΩ impedance, it is suited to not only video signal but also chroma signal or audio signal switching. Features 1) 5 input line, output line switching 2) Built-in db amplifier ) 5V operating voltage 4) 20kΩ input impedance Applications AV amplifiers, Video selectors, etc. Line up matrix Part No. BA2F BA2FS Package SOP1 SSOP-A1 Input type Bias (R=20kΩ) Absolute Maximum Ratings (Ta=25 ) Parameter Symbol Ratings Unit Supply voltage Vcc V Power dissipation BA2F 00 1 Pd BA2FS 00 2 mw Operating temperature Topr -25~0 Storage temperature Tstg -55~125 1 Derating is done at.0mw/ above Ta=25.(BA2F) 2 Derating is done at.0mw/ above Ta=25.(BA2FS) Operating Range (Ta=25 ) Parameter Symbol Ratings Min. Typ. Max. Unit Power supply voltage Vcc 4.5 5.0 5.5 V 1/

Electrical characqteristics (Unless otherwise noted Ta=25, Vcc=5.0V) Limits Parameter Symbol Min. Typ. Max. Unit Conditions Circuit current ICC 15.0 20.0 ma Maximum output level Vom 2. 2.5 Vp-p f=1khz, THD=0.5% Voltage gain G V 5..2. db f=1mhz, V IN =1Vp-p Interchannel crosstalk G T -5-45 db f=4.4mhz, V IN =1Vp-p Mute level CTM -5-25 db f=4.4mhz, V IN =1Vp-p Frequency characteristic G f - 0 db 10MHz/1MHz, V IN =1Vp-p Input inpedance Z IN 1 20 24 kω pin switching level V TH 2.2. V This product is not designed for protection against radioactive rays. Truth table Input Output Input Output Input Output A B E MONOUT C D E VOUT1 C D E VOUT2 L L IN1 L L - L L IN1 H L H L H L - L H IN L H IN L H IN H H L IN4 H H L IN4 H H L IN4 H H H IN5 H H H IN5 H H H IN5 Indicates don t care (H or L) 2/

Block diagram MONOUT 1 1 IN1 2 db 15 A IN5 logic 14 VOUT1 4 1 IN4 5 db 12 E logic 11 B IN 10 VOUT2 D C Fig.1 Block diagram Application circuit 40 TV AUX BS LD FRONT REAR 2.2 2.2 2.2 1 MONOUT IN1 2 4 5 IN5 IN4 E IN D A VOUT1 B VOUT2 C 1 15 14 1 12 11 10 40 A 10 40 2.2 4 2.2 5.0V OUT VTR IN1 OUT VTR F / R REC MON Fig.2 Application circuit /

Pin descriptions (Ta=25, =5V) Pin No. Pin name Equivalent circuit BA2F/FS IN 5 12 1 IN5 IN4 IN IN1 4.V 0k 20k 200 A 11 15 E D C B A 2k 50k D QP 50k 0k 1k 1 MONOUT 20 MONOUT 2 5 200 A 40k 10 14 VOUT2 VOUT1 D 20 VOUT 00 A 15 4/

Notes for use 1) Numbers and data in entries are representative design values and are not guaranteed values of the items. 2) Although we are confident in recommending the sample application circuits, carefully check their characteristics further when using them. When modifying externally attached component constants before use, determine them so that they have sufficient margins by taking into account variations in externally attached components and the Rohm LSI, not only for static characteristics but also including transient characteristics. ) Absolute maximum ratings If applied voltage, operating temperature range, or other absolute maximum ratings are exceeded, the LSI may be damaged. Do not apply voltages or temperatures that exceed the absolute maximum ratings. If you think of a case in which absolute maximum ratings are exceeded, enforce fuses or other physical safety measures and investigate how not to apply the conditions under which absolute maximum ratings are exceeded to the LSI. 4) potential Make the pin voltage such that it is the lowest voltage even when operating below it. Actually confirm that the voltage of each pin does not become a lower voltage than the pin, including transient phenomena. 5) Thermal design Perform thermal design in which there are adequate margins by taking into account the allowable power dissipation in actual states of use. ) Shorts between pins and misinstallation When mounting the LSI on a board, pay adequate attention to orientation and placement discrepancies of the LSI. If it is misinstalled and the power is turned on, the LSI may be damaged. It also may be damaged if it is shorted by a foreign substance coming between pins of the LSI or between a pin and a power supply or a pin and a. ) Operation in strong magnetic fields Adequately evaluate use in a strong magnetic field, since there is a possibility of malfunction. 5/

Ordering part number B A 2 F S - E 2 Part No. Part No. 2 Package F: SOP1 FS: SSOP-A1 Packaging and forming specification E2: Embossed tape and reel SOP1 <Tape and Reel information> 1 10±0.2 (MAX 10.5 include BURR) Tape Quantity Embossed carrier tape 2500pcs 1.5±0.1.2±0. 4.4±0.2 1 0.MIN 0.15±0.1 Direction of feed E2 The direction is the 1pin of product is at the upper left when you hold reel on the left hand and you pull out the tape on the right hand ( ) 0.11 1.2 0.4±0.1 0.1 (Unit : mm) Reel 1pin Direction of feed Order quantity needs to be multiple of the minimum quantity. SSOP-A1.±0.2 (MAX.5 include BURR) 1 15 14 1 12 11 10 <Tape and Reel information> Tape Embossed carrier tape Quantity 2500pcs.2±0. 4.4±0.2 0.MIN Direction of feed E2 The direction is the 1pin of product is at the upper left when you hold reel on the left hand and you pull out the tape on the right hand ( ) 1 2 4 5 1.5±0.1 0.15±0.1 0.11 0. 0.1 0.±0.1 (Unit : mm) Reel 1pin Direction of feed Order quantity needs to be multiple of the minimum quantity. /

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