Ordering number: EN982C Monolithic Linear IC LA2000 Audio Level Sensor Overview Package Dimensions LA2000 is an IC for detecting interprogram spaces to pick out the starting point of a program immediately preceding or following a musical program recorded on tape, and to detect end of tape. unit : mm 3017B-SIP9 [LA2000] Used in . Radio-cassette recorders . Cassette decks . Car stereos Applications SANYO : SIP9 . Detection of spaces between programs recorded on tape . Detection of end of tape . Other Features . Has transistors capable of driving plungers with maximum . . . 600 mA, and a protective diode to prevent induced reverse voltages. Can provide designated time delays by externally connected capacitors and resistors. Has a comparator with stable hysteresis to handle variations in power supply voltage. Detects unrecorded portions of tape. Specifications Maximum Ratings at Ta = 25 °C Parameter Maximum supply voltage Symbol Conditions Ratings Unit VCC max 15 V Allowable power dissipation Pd max 540 mW Flow-in current I6 max 600 mA Operating temperature Topr –20 to +75 °C Storage temperature Tstg –40 to +125 °C Note: 1. The voltage at pin 8 must not exceed the supply voltage at pin 9. 2. The maximum current flowing into pin 8 should be no greater than 0.5 mA. SANYO Electric Co.,Ltd. Semiconductor Bussiness Headquarters TOKYO OFFICE Tokyo Bldg., 1-10, 1 Chome, Ueno, Taito-ku, TOKYO, 110 JAPAN 53096HA(II)/0267KI/5085MW/MW No.982-1/8 LA2000 Operating Conditions at Ta = 25°C Parameter Symbol Operating voltage range Conditions VCC op Ratings Unit 3.5 to 14 V Electrical Characteristics at Ta = 25°C, VCC = 9.0 V, f = 1 kHz Parameter Circuit current Output transistor saturating voltage Output diode forward voltage Output-off level in input equivalent Comparator-on level Comparator-off level Pin 8 high level Output transistor leakage current Output diode leakage current 1. Symbol ICC Conditions f = 1 kHz, VIN = –45 dB VCE (sat) typ 6 max 12 Unit mA I6 = 600 mA 1.5 2.5 V VF IF = 600 mA 1.5 2.0 V VIN f = 1 kHz –43 –50 –54 dBm 3.0 1.8 0.45 3.5 2.2 0.55 4.0 2.6 V V V IL-TR 100 µA IL-Di 100 µA VTH-H VTH-L V8 pin min Description of external parts C1 Input coupling capacitor 0.47 to 2.2 µF recommended. C2 NF capacitor Capacitance is reduced, so the off level in input equivalent becomes lower in the bass frequency range. We recommend 1 to 10 µF. C3, R1 For designation of time delays Any time delay can be obtained by adequate choice of C3 and R1. We recommend 150 k to 500 kΩ for R1. C4, R3 Power supply ripple filter R2 Bias resistor 2. For diode when pin 8 is used to drive external transistors. A 1 kΩ resistor is recommended. Individual pins and their operations VIN Input signal level, VIN – dBm As shown above, when input level is raised and the pin 2 voltage reaches the VTH-H level of the comparator, pins 6 and 8 turn over. (VIN = –45 dBm). Pin 6 is for driving plungers, When it is on the ‘‘L’’ side, pin 6 turns on and can draw current up to 600 mA maximum (restricted by duty-cycle chart). It is not to be on continuously for more than 3 seconds. Pin 7 is a diode that prevents reverse voltages induced when the plunger is turned off from on. Pin 8 functions in phase with pin 6 and can drive external transistors (such as for MUTE ). . . . No.982-2/8 LA2000 3. Time delays and obtaining CRs When input signals that have been applied at a level not less than –45 dBm are removed, discharging occurs through the CR connected at pin 2, lowering pin 2 potential. A time delay is provided before the hysteresis comparator turns over. E1 E0 =− t E0 : Initial voltage E1 : Threshold voltage τ : Time constant eτ Accordingly, t = −τIn E1 E0 E1/E0, within the IC, is 0.26. A desired time is obtained by an appropriate choice of τ (τ = C3R1). Therefore, the time delay is obtained by the following formula: t = 1.34 × C3R1 (sec) We recommend 150 k to 500 kΩ for R when determining CR. usage notes .ICMaximum ratings . . . . When maximum ratings are surpassed, destruction or deterioration may result. Use the IC in the range where the maximum rating is not exceeded. Interpin short circuits and reverse insertions These cause destruction or deterioration of the IC: be careful when mounting on circuit board. Voltage applied to pin 8 should never exceed pin 9 voltage. The current flowing into pin 8 is to be 0.5 mA maximum. Pin 4 is unconnected, but is not to be used for GND or an interconnecting terminal. I6 – Duty cycle Collector current, I6 – mA Ta = 60°C or lower Duty cycle – % Allowable power dissipation, Pd max – mW 4. Pd max – Ta Ambient temperature, Ta – °C Note: IC = 600 mA continuous is within 3 seconds IC = 300 mA continuous is within 30 seconds IC = 100 mA or less can be left on at all times. No.982-3/8 LA2000 Test Circuit Unit (resistance: Ω, capacitance: F) Test Conditions Test items Symbol Circuit current Output transistor saturation voltage SW-1 SW-2 SW-3 SW-4 Conditions ICC 1 1 1 3 Measure current flowing into pin 9 at VIN = –45 dB VCE (sat) 2 2 2 3 Measure VIN at pin 6 Output diode forward voltage VF 2 4 2 1 Output-off level in input equivalent VIN 1 1 1 3 Measure VIN at pin 6 Input level (V.V) when pin 6 turns over Comparator-on level VH 2 3 1 3 Measure V3 When pin 6 turns over Comparator-off level VL 2 3 1 3 Measure V3 When pin 6 turns over Vp-8 2 4 1 3 Measure V2 at pin 8 Output transistor leakage current ITL 2 4 3 3 Measure M3 Output diode leakage current IDL 2 4 4 2 Measure M2 Pin 8 high level Equivalent Circuit Block Diagram No.982-4/8 LA2000 Sample Application Circuit 1 Mechanism-coupled switch (OFF at play mode) 600 mA max Plunger Unit (resistance: Ω, capacitance: F) Pin 4 is unconnected but is not be used for GND or an interconnection terminal. Sample Printed Pattern (copper foil side) Unit (resistance: Ω, capacitance: F) No.982-5/8 LA2000 Sample Application Circuit 2 Use a mechanism for the plunger off while functioning for program selection Unit (resistance: Ω, capacitance: F) Quiescent Operating Supply voltage, VCC – V V2pin, VH, VL – VCC V2pin, VH, VL – V Circuit current, ICC – mA ICC – VCC Supply voltage, VCC – V No.982-6/8 LA2000 VIN – f VIN – VCC Off On Input level, VIN – dBm Input level, VIN – dBm Input level when pin 6 ‘‘L’’ → ‘‘H’’ Frequency, f – Hz V2pin – VIN V2pin – V V2pin – V Supply voltage, VCC – V V2pin – f Frequency, f – Hz V2pin – VCC V2pin – V Output transistor saturation voltage, VCE (sat) – V VIN Input level, VIN – dBm VCE (sat) – IC Supply voltage, VCC – V Collector current, IC – mA V2pin – Ta V2pin – V Output diode forward voltage, VF – V VF – Di Diode forward current, Di – mA Ambient temperature, Ta – °C No.982-7/8 LA2000 V2pin – Ta V2pin – mV Input level, VIN – dBm VIN – Ta Ambient temperature, Ta – °C Off level On level Ambient temperature, Ta – °C Circuit current, ICC – mA ICC – Ta Ambient temperature, Ta – °C No products described or contained herein are intended for use in surgical implants, life-support systems, aerospace equipment, nuclear power control systems, vehicles, disaster/crime-prevention equipment and the like, the failure of which may directly or indirectly cause injury, death or property loss. Anyone purchasing any products described or contained herein for an above-mentioned use shall: 1 Accept full responsibility and indemnify and defend SANYO ELECTRIC CO., LTD., its affiliates, subsidiaries and distributors and all their officers and employees, jointly and severally, against any and all claims and litigation and all damages, cost and expenses associated with such use: 2 Not impose any responsibility for any fault or negligence which may be cited in any such claim or litigation on SANYO ELECTRIC CO., LTD., its affiliates, subsidiaries and distributors or any of their officers and employees jointly or severally. Information (including circuit diagrams and circuit parameters) herein is for example only; it is not guaranteed for volume production. SANYO believes information herein is accurate and reliable, but no guarantees are made or implied regarding its use or any infringements of intellectual property rights or other rights of third parties. This catalog provides information as of May, 1996. Specifications and information herein are subject to change without notice. No.982-8/8