CERAMIC FILTERS (CERAFILr)

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1 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers CERAMIC FILTERS (CERAFILr) Murata Manufacturing Co., Ltd. Cat.No.P6E-

2 P6E.pdf.. CONTENTS CERAFILr and "CERAFIL" in this catalog are the trademarks of Murata Manufacturing Co., Ltd. Part Numbering CERAFILr Chip Type SFECV Series 3 Chip CERAFILr SFECV Series Notice 6 CERAFILr Small Chip Type SFECS Series Chip CERAFILr SFECS Series Notice CERAFILr Standard Lead Type CERAFILr Low-loss Type 4 CERAFILr Low-profile Type CERAFILr Lower Spurious Response Type CERAFILr Wider Band-width Type 3 CERAFILr Narrow Band Type 5 CERAFILr For FM -IF Tuners 8 CERAFILr Three-Elements Type SFTLA Series Lead Type CERAFILr Test Circuit and Characteristics Data 36 Lead Type CERAFILr Characteristics Data and Notice Discriminators Chip Type CDACV Series 38 Chip Type Discriminators CDACV Series Notice 4 Discriminators Chip Low-profile Type CDSCA Series 4 Chip Type Discriminators CDSCA Series Notice 44 Discriminators CDALA Series 45 Lead Type Discriminators Notice 49 Packaging 5 Test Circuit of Ceramic Discriminator 53 3 Example of Appllied Circuit 54 Recycled Paper

3 P6E.pdf.. o Part Numbering CERAFIL r for FM The structure of the "Global Part Numbers" that have been adopted since June and the meaning of each code are described herein. ( If you have any questions about details, inquire at your usual Murata sales office or distributor. ) (Global Part Number) SF q E w LA e M r FAA t -R y qproduct ID Product ID SF woscillation/numbers of Element Code E T K V estructure/size Code Lp Cp Ceramic Filters Oscillation/Numbers of Element Elements Thickness Expander mode 3 Elements Thickness Expander mode Elements Thickness Expander mode (nd Harmonic) Elements Thickness Expander mode (3rd Over Tone) Structure/Size Lead Type Chip Type p is expressed "A" or subsequent code, which indicates the size. tproduct Specification Code FAA ypackaging Code -B -R -R -A -A Product Specification Four-digit alphanumerics express pass-bandwidth, center frequency tolerance, rank, series, others. Packaging Bulk Plastic Taping ø8mm Plastic Taping ø33mm 5pcs. /Radial Taping H =8mm pcs. /Radial Taping H =8mm Radial taping is applied to lead type and plastic taping to chip type. With non-standard products, two-digit alphanumerics indicating "Individual Specification" is added between "tproduct Specification" and "ypackaging". rnominal Center Frequency Expressed by four-digit alphanumerics. The unit is in hertz (MHz). Decimal point is expressed by capital letter "M". Discriminators for FM (Global Part Number) CD q A w LA e M r GA t y -R u qproduct ID Product ID CD woscillation Code A estructure/size Code Lp Cp Discriminators Oscillation Thickness Expander mode Structure/Size Lead Type Chip Type p is expressed "A" or subsequent code, which indicates the size. rnominal Center Frequency Expressed by four-digit alphanumerics. The unit is in hertz (MHz). Decimal point is expressed by capital letter "M". tproduct Specification yic Code GA Code upackaging Code -B -A -R -R Product Specification Two-digit alphanumerics express type, center frequency, rank, others Bulk Radial Taping H =8mm Plastic Taping (ø8mm) Plastic Taping (ø33mm) Radial taping is applied to lead type and plastic taping to chip type. With non-standard products, an alphanumerics indicating "Individual Specification" is added between "yic" and "upackaging". IC Applicable IC Control Code Packaging

4 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers CERAFILr Chip Type SFECV Series 6.9±.3 SFECVM series for FM-receivers are monolithic type ceramic filters which utilize the energy trapped thickness vibration-mode of the piezoelectric ceramic. By taking advantage of the very low profile, new SFECV series and PFWCC(kHz filter for AM receiver) enable costomers to make AM/FM set so thin, and it can be of help to the total chip circuit. Features. Super-thin. Only.5mm. The most suitable ceramic filter available for thinning substrates.. Heat resistant. Reflow soldering can be performed because of its excellent heat resistance. 3. Piezoelectric element is connected in the sandwich shape by heat resistant substrate, thus it has excellent mechanical strength, and it is suitable for automatic mounting. 4. Various bandwidths are available. Select a suitable type in accordance with the desired selectivity. 5. Electrical characteristics are the same as conventional "CERAFIL"..9±.3.5±..±.5 4.5±.4 * * Bottom Electrode.±.3.±.5.5±. (3) () () * Side Electrode.±.5.±.5.±.5 ** : EIAJ Monthly Code ** : Center Frequency Rank Code : Marking () : Input (in mm) Applications. Small, thin radios. Automotive radios 3. Headphone steros Part Number Center Frequency (fo) (MHz) 3dB Bandwidth (khz) Attenuation (khz) Insertion Loss (db) Spurious Attenuation (db) SFECVMKA-R. ±3kHz within ±3kHz 3 max. within6. ±.db 35 min. SFECVMJA-R. ±3kHz within5 ±4kHz 38 max.. max. 3 min. SFECVMHA-R. ±3kHz within8 ±4kHz 4 max. within4. ±. db 35 min. SFECVMGA-R. ±3kHz within3 ±5kHz 5 max. within3.5 ±. db 35 min. SFECVMFA-R. ±3kHz within8 ±5kHz 59 max. within3. ±. db 35 min. Area of Attenuation : [within db] Area of Spurious Attenuation : [within 9MHz to MHz] Center frequency(fo) defined by the center of 3dB bandwidth. Center Frequency Rank Code CODE D B A C E 3kHz Step.64MHz±3kHz.6MHz±3kHz.MHz±3kHz.3MHz±3kHz.6MHz±3kHz 5kHz Step.65MHz±5kHz.65MHz±5kHz.MHz±5kHz.5MHz±5kHz.5MHz±5kHz Z M Combination A,B,C,D,E Combination A,B,C 3

5 P6E.pdf.. Frequency Characteristics SFECVMKA-R SFECVMJA-R SFECVMHA-R 6. SFECVMGA-R SFECVMFA-R Frequency Characteristics (Spurious) SFECVMKA-R SFECVMJA-R Continued on the following page.

6 P6E.pdf.. Continued from the preceding page. Frequency Characteristics (Spurious) SFECVMHA-R SFECVMGA-R SFECVMFA-R Standard Land Pattern Dimensions Test Circuit... (): Input (): Ground (3): Output R () (3) Rg () 4. S.S.G. =-dbm E R C E RF Voltmeter Land (in mm) Rg = 5Ω R = 8Ω ±5% R = 33Ω ±5% C = ± pf (Including stray capacitance and Input capacitance of RF Volt Meter) E : S.S.G. S.S.G. Output Voltage 5

7 P6E.pdf.. Chip CERAFILr SFECV Series Notice Notice (Soldering and Mounting). Standard Reflow Soldering Condition () Reflow 4 3 5sec. Temperaturu( C) 5 Gradual Cooling () Soldering Iron Lead terminal is directly contacted with the tip of soldering iron of 8±5 C for 3.±.5 seconds. 6 3 Time(sec.). Wash The component cannot be withstand washing. Notice (Handling). The component will be damaged when an excessive stress is applied.. The component may be damaged if excess mechanical stress is applied to it mounted on the printed circuit board. 3. Design layout of components on the PC board to minimize the stress imposed on the warp or flexure of the board. 4. After installing chips, if solder is excessively applied to the circuit board, mechanical stress will cause destruction resistance characteristics to lower. To prevent this, be extremely careful in determining shape and dimension before designing the circuit board diagram. 5. When the positioning claws and pick up nozzle are worn, the load is applied to the chip while positioning is concentrated to one positioning accuracy, etc. Careful checking and maintenance are necessary to prevent unexpected trouble. 6. When correcting chips with a soldering iron, the tip of the soldering iron should not directly touch the chip component. Depending on the soldering conditions, the effective area of terminations may be reduced. the use of solder containing Ag should be done to prevent the electrode erosion.. Do not clean or wash the component as it is not hermetically sealed. 8. In case of covering filter with over coat, conditions such as material of resin, cure temperature, and so on should be evaluated well. 9. Do not use strong acidity flux, more than.wt% chlorine content, in re-flow soldering.. Accurate test circuit values are required to measure electrical characteristics.it may be a cause of miscorrelation if there is any deviation, especially stray capacitance, from the test circuit in the specification. [Component direction] [Component layout close to board] Perforation B A Slit C Put the component lateral to the direction in which stress acts. Susceptibility to stress is in the order of : A>C>B 6

8 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers CERAFILr Small Chip Type SFECS Series SFECSM series for FM-receivers are small, high performance and super thin (.4mm) filters. Piezoelectric element is connected in the sandwich shape by ceramics substrate. They have.4mm thickness and small mounting area. (3.5x3.mm) New SFECS series and PFWCC(kHz filter for AM receiver) enable customers to make AM/FM set so thin and small sized. Features. The filters are mountable by automatic placers.. They are slim, at only.4mm thickness, and have a small mounting area (3.5x3.mm) enabling flexible PCB design. 3. Various bandwidths are available. Select a suitable type in accordance with the desires selectivity. 4. Operating temperature range : - to 8 (degree C) Storage temperature range : -4 to 85 (degree C) 3.45T. F A 3.T. (.35) (.35).4T. Input electrode marker.4 W.3 Y T.3.6T T.3.85T.3.T.3.T.3.T.3 () () (3) (4) (.3) (.3) () : Input (3) : Float (Signal line) (4) : Output (*) : Reference : EIAJ Monthly Code (in mm) Applications. Small, thin radios. Headphone stereos Part Number Center Frequency (fo) (MHz) 3dB Bandwidth (khz) Attenuation (khz) Insertion Loss (db) Spurious Attenuation (db) SFECSMHA-R. ±3kHz within8 ±4kHz 4 max. within4.5 ±. db 3 min. SFECSMGA-R. ±3kHz within3 ±5kHz 5 max. within3.5 ±. db 3 min. SFECSMFA-R. ±3kHz within8 ±5kHz 59 max. within3. ±. db 3 min. Area of Attenuation : [within db] Area of Spurious Attenuation : [within 9MHz to MHz] Center frequency(fo) defined by the center of 3dB bandwidth. Center Frequency Rank Code CODE D B A C E 3kHz Step.64MHz±3kHz.6MHz±3kHz.MHz±3kHz.3MHz±3kHz.6MHz±3kHz 5kHz Step.65MHz±5kHz.65MHz±5kHz.MHz±5kHz.5MHz±5kHz.5MHz±5kHz Z M Combination A,B,C,D,E Combination A,B,C

9 P6E.pdf.. Frequency Characteristics SFECSMHA-R SFECSMGA-R SFECSMFA-R Frequency Characteristics (Spurious) SFECSMHA-R SFECSMGA-R SFECSMFA-R

10 P6E.pdf.. Standard Land Pattern Dimensions Test Circuit. (3).3.3 (4) Rg E R () () (4) R C E.3 () () (3)..5 S.S.G. =-dbm RF Voltmeter () : Input (3) : Float Signal Line (4) : Out put It shows solder resist land pattern. (in mm) Rg=5Ω R=8Ω R=33Ω C=pF (Including stray capacitance and Input capacitance of RF Voltmeter) () : Input (3) : Float (4) : Output 9

11 P6E.pdf.. Chip CERAFILr SFECS Series Notice Notice (Soldering and Mounting). Standard Reflow Soldering Condition () Reflow Temperature ( C) 4 Pre-heating (- C) Peak (4 C max.) Heating ( C) Gradual Cooling () Soldering Iron Filter shall be soldered at 8±5 C for 3.±.5 seconds. The soldering iron shall not touch the filter white soldering. 3 sec. min. 6- sec. 3 sec. max. sec. min.. Wash The component cannot be withstand washing. Notice (Handling). The component will be damaged when an excessive stress is applied.. The component may be damaged if excess mechanical stress is applied to it mounted on the printed circuit board. 3. Design layout of components on the PC board to minimize the stress imposed on the warp or flexure of the board. 4. After installing chips, if solder is excessively applied to the circuit board, mechanical stress will cause destruction resistance characteristics to lower. To prevent this, be extremly careful in determining shape and dimension before designing the circuit board diagram. 5. When the positioning claws and pick up nozzle are worn, the load is applied to the chip while positioning is concentrated to one positioning accuracy, etc. Careful checking and maintenance are necessary to prevent unexpected trouble. 6. When correcting chips with a soldering iron, the tip of the soldering iron should not directly touch the chip component. Depending on the soldering conditions, the effective area of terminations may be reduced. The use of solder containing Ag should be done to prevent the electrode erosion.. Do not clean or wash the component as it is not hermetically sealed. 8. In case of covering filter with over coat, conditions such as material of resin, cure temperature, and so on should be evaluated well. 9. Do not use strong acidity flux, more than.wt% chlorine content, in re-flow soldering.. Accurate test circuit values are required to measure electrical characteristics. It may be a cause of mis-correlation if there is any deviation, especially stray capacitance, from the test circuit in the specification. [Component layout close to board] Perforation B A Slit C Susceptibility to stress is in the order of : A>C>B

12 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers CERAFILr Standard Lead Type.±. SFELAM series for FM-receivers are monolithic type ceramic filters which use the energy trapped thickness vibration-mode of the piezoelectric ceramic. M A R K I N G E I A J C O D E.±. 3 Features. These miniature filters have high mechanical strength.. Low loss, favorable waveform symmetry, and high selectivity. 3. Various band widths are available for applications in wide to narrow bands. 4. Small dispersion and stable characteristics. 5. Change in center frequency is typically within ±3ppm/(degree C) at - to 8 (degree C). 6. High reliability. SFELAMHA-B.38±..±..5±..3±..5±..5±. (3) ().±. M A R K I N G () 5.±. 3.±. () : Input (in mm) E I A J C O D E.±..38±..±..5±. 5.±..5±..5±. SFELAMGA-B.3±. (3) () () 3.±. () : Input (in mm).±. M A R K I N G E I A J C O D E.±..38±..±..5±. 5.±..5±..5±. SFELAMFA-B.3±. (3) () () 3.±. () : Input (in mm) Part Number Center Frequency (fo) (MHz) 3dB Bandwidth (khz) Attenuation (khz) Insertion Loss (db) Spurious Attenuation (db) SFELAMHA-B. ±3kHz within8 ±4kHz 5 max.. max. 4 min. SFELAMGA-B. ±3kHz within3 ±5kHz 5 max. within4. ±.db 4 min. SFELAMFA-B. ±3kHz within8 ±5kHz 65 max. within4. ±.db 3 min. Area of Attenuation : [within db] Area of Spurious Attenuation : [within 9MHz to MHz] Center frequency(fo) defined by the center of 3dB bandwidth.

13 P6E.pdf.. 3 Center Frequency Rank Code CODE D B A C E 3kHz Step.64MHz±3kHz.6MHz±3kHz.MHz±3kHz.3MHz±3kHz.6MHz±3kHz 5kHz Step.65MHz±5kHz.65MHz±5kHz.MHz±5kHz.5MHz±5kHz.5MHz±5kHz Z M Combination A,B,C,D,E Combination A,B,C Frequency Characteristics SFELAMHA-B SFELAMGA-B SFELAMFA-B Frequency Characteristics (Spurious) SFELAMHA-B SFELAMGA-B Continued on the following page.

14 P6E.pdf.. Continued from the preceding page. Frequency Characteristics (Spurious) SFELAMFA-B Spurious Response SFELAMFA-B

15 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers CERAFILr Low-loss Type.±. SFELAM series for FM-receivers are monolithic type ceramic filters which use the energy trapped thickness vibration-mode of the piezoelectric ceramic. M A R K I N G E I A J C O D E.±. 4 Features. Insertion loss is to.5db lower than conventional products. This types are useful for elevating the sensitivity of sets.. Small dispersion and stable characteristics. 3. Excellent shape factor of frequency response. 4. Good waveform symmetry. SFELA_JAA-B.38±..±..5±..3±..5±..5±. (3) () () 5.±. 3.±. () : Input (in mm).±. M A R K I N G E I A J C O D E.±..38±..±..5±. 5.±..5±..5±. SFELA_HAA-B.3±. (3) () () 3.±. () : Input (in mm).±..±. M A R K I N G M A R K I N G E I A J C O D E.±. E I A J C O D E.±..38±..38±..±..±..5±. 5.±..5±. 5.±..5±..5±..5±..5±. SFELA_GAA-B.3±. (3) () () 3.±. () : Input (in mm) SFELA_FAA-B.3±. (3) () () 3.±. () : Input (in mm) Part Number Center Frequency (fo) (MHz) 3dB Bandwidth (khz) Attenuation (khz) Insertion Loss (db) Spurious Attenuation (db) SFELAMJAA-B. ±3kHz within5 ±4kHz 36 max. within4.5 ±.db 35 min. SFELAMHAA-B. ±3kHz within8 ±4kHz 4 max. within3.5 ±.5dB 35 min. SFELAMGAA-B. ±3kHz within3 ±5kHz 5 max. within3. ±.db 35 min. SFELAMFAA-B. ±3kHz within8 ±5kHz 59 max. within.5 ±.db 3 min. Area of Attenuation : [within db] Area of Spurious Attenuation : [within 9MHz to MHz] Center frequency(fo) defined by the center of 3dB bandwidth. 4

16 P6E.pdf.. Center Frequency Rank Code CODE 3kHz Step 5kHz Step D.64MHz±3kHz.65MHz±5kHz B.6MHz±3kHz.65MHz±5kHz A.MHz±3kHz.MHz±5kHz C.3MHz±3kHz.5MHz±5kHz E.6MHz±3kHz.5MHz±5kHz Z Combination A,B,C,D,E M Combination A,B,C Frequency Characteristics SFELAMJAA-B SFELAMHAA-B SFELAMGAA-B SFELAMFAA-B Frequency Characteristics (Spurious) SFELAMJAA-B SFELAMHAA-B Continued on the following page. 5

17 P6E.pdf.. Continued from the preceding page. Frequency Characteristics (Spurious) SFELAMGAA-B SFELAMFAA-B

18 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers CERAFILr Low-profile Type.5±. SFELBM series for FM-receivers are monolithic type ceramic filters which use the energy trapped thickness vibration-mode of the piezoelectric ceramic. M A R K I N G E I A J C O D E 6. max. Features. Installed height is 5 mm, making it well suited for compact, thin sets.. Environmental reliability is the same as those of the ceramic filter SFELAM series. SFELBMKA-B.5±..3±..5±..3±..5±..5±. () () (3) 5.±. 3.±. () : Input in mm 5.5±..5±. M A R K I N G E I A J C O D E 6. max. M A R K I N G E I A J C O D E 6. max..5±..3±..5±..3±..5±. 5.±..5±. 5.±..5±..5±..5±..5±. SFELBMJA-B.3±. () () (3) 3.±. () : Input in mm SFELBMHA-B.3±. () () (3) 3.±. () : Input in mm.5±..5±. M A R K I N G E I A J C O D E 6. max. M A R K I N G E I A J C O D E 6. max..5±..3±..5±..3±..5±. 5.±..5±. 5.±..5±..5±..5±..5±. SFELBMGA-B.3±. () () (3) 3.±. () : Input in mm SFELBMFA-B.3±. () () (3) 3.±. () : Input in mm Part Number Center Frequency (fo) (MHz) 3dB Bandwidth (khz) Attenuation (khz) Insertion Loss (db) Spurious Attenuation (db) SFELBMKA-B. ±3kHz within ±3kHz 35 max. within. ±.db 3 min. SFELBMJA-B. ±3kHz within5 ±4kHz 36 max. within4.5 ±.db 35 min. SFELBMHA-B. ±3kHz within8 ±4kHz 4 max. within3.5 ±.db 35 min. SFELBMGA-B. ±3kHz within3 ±5kHz 5 max. within3. ±.db 4 min. SFELBMFA-B. ±3kHz within8 ±5kHz 65 max. within3. ±.db 3 min. Area of Attenuation : [within db] Area of Spurious Attenuation : [within 9MHz to MHz] Center frequency(fo) defined by the center of 3dB bandwidth.

19 P6E.pdf.. Center Frequency Rank Code CODE D B A C E 3kHz Step.64MHz±3kHz.6MHz±3kHz.MHz±3kHz.3MHz±3kHz.6MHz±3kHz 5kHz Step.65MHz±5kHz.65MHz±5kHz.MHz±5kHz.5MHz±5kHz.5MHz±5kHz Z M Combination A,B,C,D,E Combination A,B,C Frequency Characteristics SFELBMKA-B 8. SFELBMJA-B SFELBMHA-B SFELBMGA-B SFELBMFA-B

20 P6E.pdf.. Frequency Characteristics (Spurious) SFELBMKA-B SFELBMJA-B SFELBMHA-B SFELBMGA-B SFELBMFA-B

21 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers CERAFILr Lower Spurious Response Type.5±. SFELAM series for FM-receivers are monolithic type ceramic filters which use the energy trapped thickness vibration-mode of the piezoelectric ceramic. MARKING EIAJ CODE.±. Features. This type has lower spurious response compared to the standard filters.. This types are suitable for higher spurious suppression radio. SFELAMKAB-B.38±..±..5±..3±..5±..5±. 5.±. 3.±. (3) () () 6.5±. MARKING.5±. MARKING EIAJ CODE.±. EIAJ CODE.±..38±..38±..±..±..5±. 5.±..5±. 5.±..5±..5±..5±..5±. SFELAMJAB-B.3±. 3.±. SFELAMHAB-B.3±. 3.±. (3) () () (3) () ().5±..5±. MARKING MARKING EIAJ CODE.±. EIAJ CODE.±..38±..38±..±..±..5±. 5.±..5±. 5.±..5±..5±..5±..5±. SFELAMGAB-B.3±. 3.±. SFELAMFAB-B.3±. 3.±. (3) () () (3) () () Part Number Center Frequency (fo) (MHz) 3dB Bandwidth (khz) Attenuation (khz) Insertion Loss (db) Spurious Attenuation (db) SFELAMKAB-B. ±3kHz within ±3kHz 35 max.. ±.db 45 min. SFELAMJAB-B. ±3kHz within5 ±4kHz 38 max. 5.5 ±.db 45 min. SFELAMHAB-B. ±3kHz within8 ±4kHz 5 max. 5. ±.db 45 min. SFELAMGAB-B. ±3kHz within3 ±5kHz 5 max. 3. ±.db 45 min. SFELAMFAB-B. ±3kHz within8 ±5kHz 65 max. 3. ±.db 45 min. Area of Attenuation : [within db] Area of Spurious Attenuation : [within 9MHz to MHz] Center frequency(fo) defined by the center of 3dB bandwidth.

22 P6E.pdf.. Center Frequency Rank Code CODE D B A C E 3kHz Step.64MHz±3kHz.6MHz±3kHz.MHz±3kHz.3MHz±3kHz.6MHz±3kHz 5kHz Step.65MHz±5kHz.65MHz±5kHz.MHz±5kHz.5MHz±5kHz.5MHz±5kHz Z M Combination A,B,C,D,E Combination A,B,C Frequency Characteristics SFELAMKAB-B SFELAMJAB-B SFELAMHAB-B SFELAMGAB-B SFELAMFAB-B

23 P6E.pdf.. Frequency Characteristics (Spurious) SFELAMKAB-B SFELAMJAB-B SFELAMHAB-B SFELAMGAB-B SFELAMFAB-B

24 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers CERAFILr Wider Band-width Type.±. SFELAM Series for FM-receivers are monolithic type ceramic filters which use the energy trapped thickness vibration-mode of the piezoelectric ceramic. M A R K I N G E I A J C O D E.±. Features. Realizes wider or narrower band characteristics not obtained by conventional ceramic filters.. Temperature characteristics are the best available, the same as those of Murata's conventional ceramic filters. Thus, even in the case of narrow band filters, the center frequency is stable even if temperature changes. SFELAMEA-B.38±..±..5±..3±..5±..5±. (3) () () 5.±. 3.±. () : Input (in mm).±. M A R K I N G.38±. E I A J C O D E.±..±..5±. 5.±..5±..5±. SFELAMDF-B.3±. (3) () () 3.±. () : Input (in mm) Part Number Center Frequency (fo) (MHz) Nominal Center Frequency(fn) (MHz) 3dB Bandwidth (khz) Attenuation (khz) Insertion Loss (db) Spurious Attenuation (db) SFELAMEA-B. ±3kHz - within33 ±5kHz 68 max. within4. ±.db 3 min. SFELAMDF-B -. fn±5 min. 95 max. within3. ±.db min. Area of Attenuation : [within db] Area of Spurious Attenuation : [within 9MHz to MHz] Center frequency(fo) defined by the center of 3dB bandwidth. (fn) means nominal center frequency. Center Frequency Rank Code CODE 3kHz Step 5kHz Step D B A C E.64MHz±3kHz.6MHz±3kHz.MHz±3kHz.3MHz±3kHz.6MHz±3kHz.65MHz±5kHz.65MHz±5kHz.MHz±5kHz.5MHz±5kHz.5MHz±5kHz Z M Combination A,B,C,D,E Combination A,B,C 3

25 P6E.pdf.. Frequency Characteristics SFELAMEA-B SFELAMDF-B Frequency Characteristics (Spurious) SFELAMEA-B SFELAMDF-B

26 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers CERAFILr Narrow Band Type.±. SFELAMLFTA/KAH, SFVLA/SFKLA series realizes narrower band characteristics not obtained by conventional ceramic filters. Besides, low spurious and temperature characteristics is stable. This series suits for European car-audio or AM up conversion use that needs narrow band characteristics..38±..±..5±. M A R K I N G E I A J C O D E.±. 5.±. SFKLAMNF-B.3±..5±..5±..5. (3) () () 3.5 in mm.±..±. MARKING EIAJ CODE.±. MARKING EIAJ CODE.±..65±..65±..4±..5±. 5.±..4±..5±. 5.±. SFVLAMMF-B.3±..5±..5±. (3) () () 3.±. () : Input in mm SFVLAMLF-B.3±..5±..5±. (3) () () 3.±. () : Input in mm 8.±..±. MARKING EIAJ CODE.±. M A R K I N G E I A J C O D E.±..38±..±..5±. 5.±..38±..±..5±. 5.±. SFELAMLFTA-B.3±..5.5 ±. ±. (3) () () 3.±. (in mm) () Input () Ground (3) Output SFELAMKAH-B.3±..5±..5±. (3) () () 3.±. () : Input (in mm) Part Number Center Frequency (fo) (MHz) Nominal Center Frequency(fn) (MHz) 3dB Bandwidth (khz) Attenuation (khz) Insertion Loss (db) Spurious Attenuation (db) SFKLAMNF-B. ±5kHz - min. 95 max. 6. max. 4 min. SFVLAMMF-B -. fn±3 min. 35 max. within5.5 ±.5dB 3 min. SFVLAMLF-B -. fn±5 min. max. within5.5 ±.5dB 3 min. SFELAMLFTA-B -. fn±5 min. 8 max. within. ±.db 3 min. SFELAMKAH-B. ±3kHz - within ±3kHz 35 max. within. ±.db 3 min. Area of Attenuation : [within db] Area of Spurious Attenuation : [within 9MHz to MHz] 5

27 P6E.pdf.. Center Frequency Rank Code CODE D B A C E 3kHz Step.64MHz±3kHz.6MHz±3kHz.MHz±3kHz.3MHz±3kHz.6MHz±3kHz 5kHz Step.65MHz±5kHz.65MHz±5kHz.MHz±5kHz.5MHz±5kHz.5MHz±5kHz Z M Combination A,B,C,D,E Combination A,B,C Frequency Characteristics SFKLAMNF-B SFVLAMMF-B Attenuation ( db ) Frequency ( khz ) SFVLAMLF-B 3. SFELAMLFTA-B SFELAMKAH-B

28 P6E.pdf.. Frequency Characteristics (Spurious) SFKLAMNF-B SFVLAMMF-B Attenuation ( db ) Frequency ( MHz ) SFVLAMLF-B SFELAMLFTA-B SFELAMKAH-B

29 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers CERAFILr For FM -IF Tuners 9. max. SFELAM series for FM-receivers are monolithic type ceramic filters which use the energy trapped thickness vibration-mode of the piezoelectric ceramic. MARKING EIAJ CODE. max. 9 Features. Little dispersion of amplitude characteristics and phase characteristics (G. D. T. characteristics).. The SFELAMG_X series has G. D. T characteristics and is useful for obtaining low distortion. SFELAMF_L series, in these ceramic filters, being in harmony with flatness of G. D. T., roundness of the amplitude and selectivity characteristics, therefore, these ceramic filters are suitable to high-grade stereo tuners. Even if mismatching condition, they can keep little distortion because of low Qm of ceramic material. The SFELAMFAG series is based on SFELAMFA/GA/HA, and it obtains high selectivity with low loss. There is little dispersion of amplitude and G. D. T. characteristics, and low distortion rate can be obtained. 3. All products are inspected for symmetry and roundness of amplitude characteristics, and the flatness of G. D. T. characteristics. SFELAMJAXE-B SFELAMHAG-B.38±..±..5±..3±..38±..±..3±..5±. (3).5±..5±. (3) () ().±. M A R K I N G.5±..5±. () E I A J C O D E () 3.±. 5.±..±. 4. max. 5.±. () : Input (in mm) 9. max. MARKING EIAJ CODE. max..38±..±..5±. 5.±. SFELAMHAXD-B.3±..5±..5±. 4. max. (3) () ().±..±. M A R K I N G M A R K I N G E I A J C O D E.±. E I A J C O D E.±..38±..38±..±..±..5±. 5.±..5±. 5.±..5±..5±..5±..5±. SFELAMGAG-B.3±. (3) () () 3.±. () : Input (in mm) SFELAMGALM-B.3±. (3) () () 3.±. () : Input (in mm) Continued on the following page. 8

30 P6E.pdf.. Continued from the preceding page. 9. max..±. MARKING EIAJ CODE. max. M A R K I N G E I A J C O D E.±..38±..±..5±. 5.±..38±..±..5±. 5.±. SFELAMGAXA-B.3±..5±..5±. 4. max. () : Input (3) () () in mm SFELAMFAG-B.3±..5±..5±. (3) () () 3.±. () : Input (in mm).±. 9. max. M A R K I N G E I A J C O D E.±. MARKING EIAJ CODE. max..38±..±..5±. 5.±..38±..±..5±. 5.±. SFELAMGALP3-B.3±..5±..5±. (3) () () 3.±. () : Input (in mm) SFELAMGAXX-B.3±..5±..5±. 4. max. () : Input (3) () () in mm.±. M A R K I N G E I A J C O D E.±..38±..±. 9.5±. 5.±..5±..5±. SFELAMFALL-B.3±. (3) () () 3.±. () : Input (in mm) Part Number Center Frequency (fo) (MHz) 3dB Bandwidth (khz) Attenuation (khz) Insertion Loss (db) Spurious Attenuation (db) GDT Bandwidth (khz) SFELAMJAXE-B. ±3kHz within5 ±3kHz 5 max. 4. max. 35 min. fo±5 min.[within.5µsec.] SFELAMHAG-B. ±3kHz within8 ±4kHz 5 max.. max. 4 min. fo±45 min.[within.5µsec.] SFELAMHAXD-B. ±3kHz within8 ±3kHz 53 max. 4. max. 33 min. fo±6 min.[within.5µsec.] SFELAMGAG-B. ±3kHz within3 ±5kHz 6 max.. max. 4 min. fo±6 min.[within.5µsec.] SFELAMGALM-B. ±3kHz within3 ±5kHz 6 max. within9. ±.db 3 min. fo±6 min.[within.5µsec.] SFELAMGAXA-B. ±3kHz within ±4kHz 6 max..5 max. 3 min. fo±8 min.[within.5µsec.] SFELAMFAG-B. ±3kHz within8 ±5kHz 65 max. within4. ±.db 3 min. fo±85 min.[within.5µsec.] SFELAMGALP3-B. ±3kHz within5 ±5kHz 65 max.. max. 3 min. fo±65 min.[within.5µsec.] SFELAMGAXX-B. ±3kHz within5 ±4kHz 6 max.. max. 5 min. fo± min.[within.µsec.] SFELAMFALL-B. ±3kHz within8 ±5kHz max. within. ±.db 5 min. fo± min.[within.5µsec.] Area of Attenuation : [within db] Area of Spurious Attenuation : [within 9MHz to MHz] Center frequency(fo) defined by the center of 3dB bandwidth. 9

31 P6E.pdf.. Center Frequency Rank Code CODE D B A C E 3kHz Step.64MHz±3kHz.6MHz±3kHz.MHz±3kHz.3MHz±3kHz.6MHz±3kHz 5kHz Step.65MHz±5kHz.65MHz±5kHz.MHz±5kHz.5MHz±5kHz.5MHz±5kHz Z M Combination A,B,C,D,E Combination A,B,C Freq. Characteristics SFELAMJAXE-B 5. SFELAMHAG-B SFELAMHAXD-B SFELAMGAG-B SFELAMGALM-B SFELAMGAXA-B Continued on the following page. 3

32 P6E.pdf.. Continued from the preceding page. Freq. Characteristics SFELAMFAG-B 5. SFELAMGALP3-B SFELAMGAXX-B SFELAMFALL-B Spurious Frequency SFELAMJAXE-B SFELAMHAG-B SFELAMHAXD-B SFELAMGAG-B Continued on the following page. 3

33 P6E.pdf.. Continued from the preceding page. Spurious Frequency SFELAMGALM-B SFELAMGAXA-B SFELAMFAG-B SFELAMGALP3-B SFELAMGAXX-B SFELAMFALL-B

34 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers CERAFILr Three-Elements Type SFTLA Series.±. SFTLAM series for FM-receivers are monolithic type ceramic filters which use the energy trapped thickness vibration-mode of the piezoelectric ceramic. M A R K I N G E I A J C O D E 6.±. Features. It has an excellent shape factor, and it is possible to obtain.5 times more excellent selectivity than SFELAM series (by detuning -3 or 4kHz).. Good performance of spurious suppression. 3. Having the same terminal pitch as the SFELAM series, it easily replaces that series. 4. By replacing two SFELAM series filters with one SFTLAM filter,more compact sets can be made. 5. Well-suited for -chip ICs. SFTLAMHA-B.4±..65±..4±..5±..3±..5±..5±. (3) ().±. M A R K I N G () E I A J C O D E 5.±. 3.±. 6.±. () : Input in mm.4±..65±..4±..5±. 5.±..5±..5±. SFTLAMGA-B.3±. 3.±. () : Input (3) () () in mm.±. M A R K I N G E I A J C O D E 6.±..4±..65±..4±..5±. 5.±..5±..5±. SFTLAMFA-B.3±. 3.±. () : Input (3) () () in mm Part Number Center Frequency (fo) (MHz) 3dB Bandwidth (khz) Attenuation (khz) Insertion Loss (db) Spurious Attenuation (db) SFTLAMHA-B. ±3kHz within8 ±4kHz 55 max. within5.5 ±.5dB 5 min. SFTLAMGA-B. ±3kHz within3 ±4kHz 65 max. within6. ±.db 5 min. SFTLAMFA-B. ±3kHz within8 ±5kHz max. within6. ±.db 5 min. Area of Attenuation : [within 4dB] Area of Spurious Attenuation : [within 9MHz to MHz] Center frequency(fo) defined by the center of 3dB bandwidth. 33

35 P6E.pdf.. Center Frequency Rank Code CODE D B A C E 3kHz Step.64MHz±3kHz.6MHz±3kHz.MHz±3kHz.3MHz±3kHz.6MHz±3kHz 5kHz Step.65MHz±5kHz.65MHz±5kHz.MHz±5kHz.5MHz±5kHz.5MHz±5kHz Z M Combination A,B,C,D,E Combination A,B,C Frequency Characteristics SFTLAMHA-B 8. SFTLAMGA-B SFTLAMFA-B Frequency Characteristics (Spurious) SFTLAMHA-B SFTLAMGA-B Continued on the following page. 34

36 P6E.pdf.. Continued from the preceding page. Frequency Characteristics (Spurious) SFTLAMFA-B

37 P6E.pdf.. Lead Type CERAFILr Test Circuit and Characteristics Data Test Circuit R () () (3) () : Input () : Output (3) :Ground Rg RF S.S.G R C Voltmeter Rg R = R = 33Ω C = pf (Including stray capacitance and input capacitance of RF voltmeter.) Temperature Characteristics Variation (khz) Variation (db) Variation (khz) W4 W Y Y4 W W Y Y W4 W Y Y4 Center frequency Y Insertion loss Y 3dB Band width Y SFELAMGA-B W W4 W6 W8 Temperature ( C) W W4 W6 W8 Temperature ( C) W W4 W6 W8 Temperature ( C) Variation (khz) Variation (db) Variation (khz) W4 W Y Y4 W W Y Y W4 W Y Y4 Center frequency SFELAMHA-B Y W W4 W6 W8 Temperature ( C) Insertion loss Y W W4 W6 W8 Temperature ( C) 3dB Band width Y W W4 W6 W8 Temperature ( C) Matching Conditions When using ceramic filters, it is most important to match the input/output load to impedance 33 ohm (only SFELAMDF-B is 4 ohm matching). Waveform symmetry is damaged when reactance is added to the input/output load. Two ceramic filters directly connected can be used for high selelctivity. For reducing waveform variation, it is recommended to input a buffer AMP between ceramic filters. The SFELAM and SFTLAM series are of input/output symmetric structure so that in theory there is no input/output directionality. Actual circuits may use different input/output loading conditions (for example, mismatched impedance) or capacitance load. In such cases, the waveform will be a little changed by the direction of the input/output of the ceramic filters. 36

38 P6E.pdf.. Lead Type CERAFILr Characteristics Data and Notice Loaded Resistance and Waveform (RgR=33ohm) R=Ω R=56Ω SFELAMGA-B Group Delay Time (µsec.) Group Delay Time (µsec.) R=33Ω R=kΩ Group Delay Time (µsec.) Group Delay Time (µsec.) Loaded Capacitance and Waveform (RgR=R=33ohm) C=pF C=56pF SFELAMGA-B Group Delay Time (µsec.) Group Delay Time (µsec.) C=33pF C=8pF Group Delay Time (µsec.) Group Delay Time (µsec.) Notice (Soldering and Mounting) The component cannot be withstand washing. Notice (Handling). Do not use this product with bend. The component may be damaged if excess mechanical stress is applied to it mounted on the printed circuit board.. The component may be damaged when an excess stress will be applied. 3. All kinds of re-flow soldering must not be applied on the component. 4. Do not clean or wash the component as it is not hermetically sealed. 5. Do not use strong acidity flux, more than.wt% chlorine content, in flow soldering. 6. In case of covering discriminator with over coat, conditions such as material of resin, cure temperature, and so on should be evaluated well.. Accurate test circuit values are required to measure electrical characteristics. It may be a cause of mis-correlation if there is any deviation, especially stray capacitance, from the test circuit in the specification. 3

39 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers Discriminators Chip Type CDACV Series CDACVM series forms a resonator on a piezoelectric ceramic substrate. In combination with ICs, this type obtains stable demodulation characteristics in wide bandwidths. 3.4±.5.6±.3.5±.3 Features. Compact and excellent mechanical strength.. Can be combined with various ICs. The IC is determined by the last number in the part number. 3. Stable demodulation characteristics can be obtained without adjustment. 4. The MG type for wide bandwidths and the MC type for narrow bandwidths are available. 5. Stable temperature characteristics. 6. We recommend kits : ceramic discriminator CDACVM series and "CERAFIL" SFECVM of the same frequency rank..9±.3.9±.3 : EIAJ Monthly Code : Rank in mm Part Number Center Frequency (fo) (MHz) Recovered Audio 3dB BW (khz) Recovered Audio Output (mv) Distortion (%) IC Detection Method CDACVMGA-R. ±3kHz fo±5 min. 55 min.. max. CX9 Quadrature CDACVMGA6-R. ±3kHz 3 min. within6 to 9mV.9 max. TA8F Quadrature CDACVMGA46-R. ±3kHz 33 min. 8 min..5 max. LA83 Quadrature CDACVMGA69-R. ±3kHz 33 min. 8 min.. max. CXA538N Quadrature CDACVMCA-R. ±3kHz fo±5 min. 55 min.. max. CX9 Quadrature Center Frequency Rank Code CODE D B A C E 3kHz Step.64MHz±3kHz.6MHz±3kHz.MHz±3kHz.3MHz±3kHz.6MHz±3kHz 5kHz Step.65MHz±5kHz.65MHz±5kHz.MHz±5kHz.5MHz±5kHz.5MHz±5kHz Z M Combination A,B,C,D,E Combination A,B,C Standard Land Pattern Dimensions

40 P6E.pdf.. CDACVMGA-R Test Circuit Frequency Characteristics AFC S.S.G. Fg=5 8.µ REF CX9 CDALAMGA 9 8 Vcc=3.V 3 k µ Unit R : Ω C : F AF OUTPUT Recovered AF Output Voltage (mv) AF Output Distortion Distortion (%) Input signal conditions Input Level Mod. Freq. Freq.Dev. dbµ Hz ±.5kHz CDACVMGA6-R Test Circuit Frequency Characteristics VCC 3V DC Out AF Out 33p k.5µ IF in.µ µ.33µ.µ SFELAMDF 4k TA8F (TOSHIBA).µ CDACVMGA6 Unit R : Ω C : F Recovered AF Output Voltage (mv) AF Output Distortion Distortion (%) CDACVMGA46-R AFC 3.3µ Test Circuit CSBLA456KEZF5.µ AF OUT p 5.6k.4µ.µ µ µ µ Frequency Characteristics AF Output. Input signal conditions Input Level Mod. Freq. Freq.Dev. 8dBµ Hz ±.5kHz 6.8k LA83 (SANYO) IF-IN µ CDALAMGA46.µ µ.4µ REG Vcc (5V) 3k µ µ Unit R : Ω C : F Recovered AF Output Voltage (mv) Distortion Distortion (%) Input signal conditions Input Level Mod. Freq. Freq.Dev. dbµ Hz ±5kHz Continued on the following page. 39

41 P6E.pdf.. Continued from the preceding page. CDACVMGA69-R Test Circuit Frequency Characteristics CDACVMGZ69-B VCC (3V) Reg 3.3µ.k.µ µ µ CXA538N µ.µ.µ.µ µ AF OUT.µ 3.3k VCC (3V) AFC IF IN.µ 3.3k 33µ µ 4.µ Unit R : Ω C : F Recovered AF Output Voltage (mv) AF Output Distortion Distortion (%) Input signal conditions Input Level dbµ Mod.Freq. Hz Freq.Dev. ±5kHz CDACVMCA-R Test Circuit Vcc 3V AF OUT AFC OUT INPUT S.S.G.(Rg=5) Frequency Characteristics µ µ.µ µ 4.µ.µ 8.µ CX9 (SONY) µ p CDACVMCZ-B REG OUT Unit R : Ω C : F Recovered AF Output Voltage (mv) AF Output Distortion. Distortion (%) Input signal conditions Input Level dbµ Mod.Freq. Hz Freq.Dev. ±.5kHz 4

42 P6E.pdf.. Chip Type Discriminators CDACV Series Notice Notice (soldering and mounting). Standard Reflow Soldering Condition () Reflow 4 3 5sec. Temperature ( C) 5 Gradual Cooling 6 3 Time (sec.) () Soldering Iron Lead terminal is directly contacted with the tip of soldering iron of 8±5 C for 3.±.5 seconds.. Wash The component cannot be withstand washing. Notice (handling). The component may be damaged if excess mechanical stress is applied to it mounted on the printed circuit board.. Design layout of components on the PC board to minimize the stress imposed on the warp or flexure of the board. 3. After installing chips, if solder is excessively applied to the circuit board, mechanical stress will cause destruction resistance characteristics to lower. To prevent this, be extremely careful in determining shape and dimension before designing the circuit board diagram. 4. When the positioning claws and pick up nozzle are worn, the load is applied to the chip while positioning is concentrated to one positioning accuracy, etc. Careful checking and maintenance are necessary to prevent unexpected trouble. 5. When correcting chips with a soldering iron, the tip of the soldering iron should not directly touch the chip component. Depending on the soldering conditions, the effective area of terminations may be reduced. the use of solder containing Ag should be done to prevent the electrode erosion. 6. Do not clean or wash the component as it is not hermetically sealed.. In case of covering discriminator with over coat, conditions such as material of resin, cure temperature, and so on should be evaluated well. 8. Accurate test circuit values are required to measure electrical characteristics. It may be a cause of mis-correlation if there is any deviation, especially stray capacitance, from the test circuit in the specification. [Component direction] [Component layout close to board] Perforation B A Slit C Put the component lateral to the direction in which stress acts. Susceptibility to stress is in the order of : A>C>B 4

43 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers Discriminators Chip Low-profile Type CDSCA Series CDSCAM series forms a resonator on a piezo electric ceramic sabstrate. In combination with ICs, this type obtains stable demoduration characteristics in wide bandwidth..3±..±. 4.5±. 4.max.±..4max.4±.5 Features. Compact and high reliability and recommended for automotive applications.. Can be combined with various ICs. The IC is determined by the last number in the part number. 3. Stable demoduration characteristics can be obtained without adjustment. 4. Stable temperature characteristics. 5. Recommended for Pb free soldering..4(ref.).8±..5±..4(ref.).8±..max.5±. (in mm) Part Number Center Frequency (fo) (MHz) Recovered Audio 3dB BW (khz) Recovered Audio Output (mv) Distortion (%) IC Detection Method CDSCAMGF-R. (fn) fn±8 min. 5 min. 3. max. TA3F Quadrature (fn) means nominal center frequency. Standard Land Pattern Dimensions (in mm) 4

44 P6E.pdf.. Test Circuit Frequency Characteristics Vcc (5.V) AF OUT.µF.µF µF TA3F µF S.S.G..µF pf.µf.µf X R C X: CDSCAMGF-B R:. [kohm] C: open Recovered AF Output Voltage (mv) AF Output Distortion Distortion (%). Input signal conditions Input Level Mod. Freq. Freq.Dev. dbµ Hz ±4kHz

45 P6E.pdf.. Chip Type Discriminators CDSCA Series Notice Notice (Soldering and Mounting). Standard Reflow Soldering Condition () Reflow 6 5 sec 4 Temperature ( C) Gradual Cooling 5 () Soldering Iron Lead terminal is directly contacted with the tip of soldering iron of 8±5 C for 3. seconds±.5 seconds. 6 6 Time (sec.). Wash The component cannot be withstand washing. Notice (Handling). The component mounted on the PCB may be damaged if excess mechanical stress is applied.. Layout the components on the PCB to minimize the stress imposed by the warp or flexure of the board. 3. After installing components, if solder is excessively applied to the circuit board, mechanical stress will cause destruction resistance characteristics to be lower. To prevent this, be extremely careful in determining shape and dimension before designing the circuit board diagram. 4. When the positioning claw or pick up nozzle are worn, the excess load is applied to the components while positioning or placing are performed. Careful checking and maintenance are necessary to prevent unexpected trouble. 5. When correcting component's position with a soldering iron, the tip of the soldering iron should not directly touch the chip component. Depending on the soldering conditions, the effective area of terminations may be reduced. The use of solder containing Ag should be considerd to prevent the electrode erosion. 6. Do not clean or wash the component as it is not hermetically sealed.. In case of overcoating the part, coating conditions such as material, curing temperature, and so on must be evaluated deeply. 8. Accurate test circuit values are required to measure electrical characteristics. It may be a cause of mis-correlation if there is any deviation, especially stray capacitance, from the test circuit in the specification. [Component direction] [Component layout close to board] Perforation B A Slit C Put the component laterally to the direction in which stress acts. Susceptibility to stress is in the order of : A>C>B 44

46 P6E.pdf.. Ceramic Filters (CERAFILr) for FM Receivers Discriminators CDALA Series CDALAM series forms a resonator on a piezoelectric ceramic substrate. In combination with ICs, this type obtains stable demodulation characteristics in wide bandwidths. M A R K I N G 8.±. E I A J C O D E 5.±. Freq. Rank (Color Dot).4±. Features. Compact and excellent mechanical strength.. Can be combined with various ICs. The IC is determined by the last number in the part number. 3. Stable demodulation characteristics can be obtained without adjustment. 4. The MG type for wide bandwidths and the MC type for narrow bandwidths are available. 5. Stable temperature characteristics. 6. We recommend combination : ceramic discriminator CDALAM series and "CERAFIL" SFELAM of the same frequency rank. CDALAMG_ Series.5±..3±. M A R K I N G.65±. 5.±. 8.±. E I A J C O D E 5.±. 3.±. 5.±. (in mm) Freq. Rank (Color Dot).4±..5±..65±. 5.±. CDALAMC_ Series.3±. 5.±. 3.±. (in mm) Part Number Center Frequency (fo) (MHz) Recovered Audio 3dB BW (khz) Recovered Audio Output (mv) Distortion (%) IC Detection Method CDALAMGA-B. ±3kHz 345 min. 5 min..6 max. CX9 Quadrature CDALAMGA6-B. ±3kHz 3 min. within6 to 9mV.9 max. TA8F Quadrature CDALAMGA8-B. ±3kHz 3 min. 6 min..9 max. TA83N Quadrature CDALAMGA46-B. ±3kHz 33 min. 8 min.. max. LA83 Quadrature CDALAMGA48-B. ±3kHz 4 min. min.. max. LA835 Quadrature CDALAMGA9-B. ±3kHz 3 min. 6 min.. max. TA3P Quadrature CDALAMCA-B. ±3kHz 4 min. 35 min. - CX9 Quadrature CDALAMCA5A-B. ±3kHz min. 6 min. 6. max. LA Quadrature CDALAMCA4-B. ±3kHz 3 min. 4 min.. max. TEA5 Quadrature Center Frequency Rank Code CODE D B A C E 3kHz Step.64MHz±3kHz.6MHz±3kHz.MHz±3kHz.3MHz±3kHz.6MHz±3kHz 5kHz Step.65MHz±5kHz.65MHz±5kHz.MHz±5kHz.5MHz±5kHz.5MHz±5kHz Z M Combination A,B,C,D,E Combination A,B,C 3 45

47 P6E.pdf.. CDALAMGA-B Test Circuit Frequency Characteristics 5 AFC S.S.G. Fg=5 8.µ REF CX9 CDALAMGA 9 8 Vcc=3.V 3 k µ Unit R : Ω C : F AF OUTPUT Recovered AF Output Voltage (mv) AF Output Distortion Distortion (%) Input signal conditions Input Level Mod. Freq. Freq.Dev. dbµ 4Hz ±.5kHz CDALAMGA6-B Test Circuit VCC 3V DC Out AF Out 5 Frequency Characteristics 33p k.5µ IF in.µ µ.33µ.µ SFELAMDF 4k TA8F (TOSHIBA).µ CDACVMGA6 Unit R : Ω C : F Recovered AF Output Voltage (mv) AF Output Distortion Distortion (%) Input signal conditions Input Level Mod. Freq. Freq.Dev. 8dBµ Hz ±.5kHz CDALAMGA8-B 3 Test Circuit F in Vcc 3V DC out AF out SFELAMDF CDALAMGA8 k.µ.33µ 33p 4k.µ.µ TA83N (TOSHIBA) µ.µ Unit R : Ω C : F Recovered AF Output Voltage ( mv ) Frequency Characteristics AF Output Distortion Distortion (%) Vcc 3V Frequency ( MHz ). Input signal conditions Input Level 8 dbµ Mod. Freq. Hz Freq. Dev. ±.5 khz 46 Continued on the following page.

48 P6E.pdf.. Continued from the preceding page. CDALAMGA46-B Test Circuit CSBLA456KEZF5.µ AF OUT Frequency Characteristics IF-IN AFC 3.3µ 3 5 REG p 5.6k.4µ.µ µ µ µ k.4µ µ LA83 (SANYO) µ CDALAMGA46.µ Vcc (5V) 3k µ µ Unit R : Ω C : F Recovered AF Output Voltage ( mv ) AF Output Distortion Distortion ( % ) Frequency ( MHz ). Input signal conditions Input Level dbµ Mod. Freq. Hz Freq. Dev. ±5 khz CDALAMGA48-B 3.3µ AFC 4n Vt 5k Test Circuit CSBLA456KEZF5 33n L. P. F. 5p 33n L. P. F. 5k µ µ µ Rch Lch 5 Frequency Characteristics AF Output IF-IN 3 5 4n LA835 (SANYO) µ µ µ.4µ µ REG. 5 k k 3k k.4µ µ CDALAMGA48 VCC(V) Unit R : Ω C : F Recovered AF Output Voltage (mv) Distortion Distortion (%) Input signal conditions Input Level Mod. Freq. Freq.Dev. dbµ Hz ±5kHz CDALAMGA9-B Test Circuit DC OUT Frequency Characteristics.µ AF OUT µ.µ 33p 4 3 TA3P(TOSHIBA) IF-IN 9 8 k CDALAMGZ9-B.33µ Vcc(3.V) 4.µ Unit R : Ω C : F Recovered AF Output Voltage (mv) AF Output Distortion. Distortion (%) 3 Input signal conditions Input Level Mod.Freq. Freq.Dev. 8dBµ Hz ±.5kHz Continued on the following page. 4

49 P6E.pdf.. Continued from the preceding page. CDALAMCA-B Test Circuit Frequency Characteristics VCC 5V AF Output AFC.µ IF in 33µ CDALAMCA µ µ µ k.µ 4.µ µ CX9 (SONY) Ref..µ Unit R : Ω C : F Recovered AF Output Voltage ( mv ) AF Output Distortion Distortion ( % ) Frequency ( MHz ). Input signal conditions Input Level dbµ Mod. Freq. 4 Hz Freq. Dev. ±.5 khz CDALAMCA5A-B Test Circuit Frequency Characteristics 5 5 DC Bias 5V DATA OUT.µ DC Bias 5.V 5.6k 4p.µ IC : LA (SANYO) 4p Vcc=V p k p.p 33µ k k k -.µ k k IF IN.µ.µ.µ Demod.OUT 5p.µ CDALAMCA5A Unit R : Ω C : F Recovered AF Output Voltage ( mv ) AF Output Distortion Distortion ( % ) Input signal conditions Input Level dbµ Mod. Freq. Hz Freq. Dev. ±5 khz.6..8 Frequency ( MHz ) CDALAMCA4-B Test Circuit VCC (3V) Frequency Characteristics.µ µ AF-OUT 3 µ µ.µ TEA5 (PHILIPS) µ.µ 8.µ 5 S.S.G. µ DC-OUT Unit R : Ω C : F Recovered AF Output Voltage ( mv ) AF Output Distortion Distortion (%). Input signal conditions Input Level dbµ Mod. Freq. Hz Freq. Dev. ±.5 khz Frequency ( MHz ) 48

50 P6E.pdf.. Lead Type Discriminators Notice Notice (Soldering and Mounting) The component cannot be withstand washing. Notice (Handling). Do not use this product with bend. The component may be damaged if excess mechanical stress is applied to it mounted on the printed circuit board.. The component may be damaged when an excess stress will be applied. 3. All kinds of re-flow soldering must not be applied on the component. 4. Do not clean or wash the component as it is not hermetically sealed. 5. Do not use strong acidity flux, more than.wt% chlorine content, in flow soldering. 6. In case of covering discriminator with over coat, conditions such as material of resin, cure temperature, and so on should be evaluated well.. Accurate test circuit values are required to measure electrical characteristics. It may be a cause of mis-correlation if there is any deviation, especially stray capacitance, from the test circuit in the specification. 3 49

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