AN8814SB. 4-channel driver IC for optical disk drive. ICs for Compact Disc/CD-ROM Player. Overview. Features. Applications.
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- Hector Barnaby Harrell
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1 AN884SB 4-channel driver IC for optical disk drive Overview The AN884SB is a BTL system 4-channel driver and is encapsulated in the SMD package which excels in heat radiation characteristic. 8.4±0. (5.5) (4.8) 8 5 Unit: mm Features Wide output dynamic range regardless of reference voltage of the system Driver I/O gain setting is possible with an additional external resistor 3.3 V supply voltage is available due to an external PNP-tr. Additional OP-amp. built-in ± ±0.30.7± (.35) 0 to ±0.0 Applications MD, CD/CD-ROM drive DVD/DVD-ROM drive (.) (6.4) Seating plane 0.±0. HSOP04-P-0400 Block Diagram PGND 0 PVCC P 3.3 V reg. 3 IN 8 VO+ 4 PC 7 VO 5 IN 6 VO+ 6 PC 5 VO 7 IN3 4 VO3+ 3 VO3 8 IN4 VO4+ VO4 0 PGND P 9 P Thermal protection circuit 8 7 Fin GND VREF
2 AN884SB ICs for Compact Disc/CD-ROM Player Pin Descriptions Pin No. Description Base control pin for an external transistor of 3.3 V regulator 3.3 V regulator output monitor pin 3 N.C. pin 4 Op-amp. output pin 5 Op-amp. inverted input pin 6 Op-amp. non-inverted input pin 7 Power supply pin 8 / P output pin 9 Driver power supply pin 0 Driver GND pin Motor driver-4 reverse rotation output pin Motor driver-4 forward rotation output pin 3 Motor driver-3 reverse rotation output pin 4 Motor driver-3 forward rotation output pin Pin No. Description 5 Motor driver- reverse rotation output pin 6 Motor driver- forward rotation output pin 7 Motor driver- reverse rotation output pin 8 Motor driver- forward rotation output pin 9 Driver GND pin 0 Driver power supply pin / P output pin V REF input pin 3 Motor driver- input pin 4 PC (power cut) input pin 5 Motor driver- input pin 6 PC (power cut) input pin 7 Motor driver-3 input pin 8 Motor driver-4 input pin Fin GND pin Absolute Maximum Ratings Parameter Symbol Rating Unit Supply voltage S 7 V Supply current I CC ma Power dissipation * P D 54 mw Operating ambient temperature * T opr 30 to +85 C Storage temperature * T stg 55 to +50 C Note) *: Except for the operating ambient temperature and storage temperature, all ratings are for T a = 5 C. *: T a = 85 C. Referring to " Application Circuit Example", following the allowable power dissipation characteristic curve of " Application Notes". Recommended Operating Range Parameter Symbol Range Unit Supply voltage S, P, P 4.0 to 4 V
3 AN884SB Electrical Characteristics at T a = 5 C Parameter Symbol Conditions Min Typ Max Unit Current consumption with no load I TOT = 5 V ma Motor driver to motor driver 4 Input offset voltage V IOF = 5 V, V PC = V PC = 0 V, mv Output offset voltage V OOF = 5 V, V PC = V PC = 0 V, mv Gain G = 5 V, V PC = V PC = 0 V, db Maximum output amplitude (+) V L+ = 5 V, V PC = V PC = 0 V,.4.7 V Maximum output amplitude ( ) V L = 5 V, V PC = V PC = 0 V,.7.4 V Motor driver High-level threshold voltage V PCH = 5 V, R L = 8 Ω, R = 0 kω.0 V Low-level threshold voltage V PCL = 5 V, R L = 8 Ω, R = 0 kω 0.5 V Motor driver High-level threshold voltage V PCH = 5 V, R L = 8 Ω, R = 0 kω.0 V Low-level threshold voltage V PCL = 5 V, R L = 8 Ω, R = 0 kω 0.5 V Reset circuit Reset operation release supply V RST I IN = 0 µa, R to R 4 = 0 kω..3.5 V voltage 3.3 V regulator Output voltage V REG = 5 V V Output load fluctuation V R = 5 V mv Supply voltage fluctuation V V = 5 V/ V mv Op-amp. Input offset voltage V OF = 5 V mv Input bias current I BOP = 5 V na High-level output voltage V OH = 5 V 4.0 V Low-level output voltage V OL = 5 V.5 V Output driving current sink I SIN = 5 V.0 ma Output driving current source I SOU = 5 V.0 ma 3
4 AN884SB ICs for Compact Disc/CD-ROM Player Electrical Characteristics at T a = 5 C (continued) Design reference data Note) The characteristics listed below are theoretical values based on the IC design and are not guaranteed. Parameter Symbol Conditions Min Typ Max Unit Thermal protection circuit Operating temperature T THD 80 C equilibrium value Operating temperature T THD 45 C hysteresis width Usage Notes. Avoid the short-circuits between output and, and between output pin and GND. Otherwise, the IC is likely to break down or emit smoke.. An appropriate prior study should be done for use of dip soldering. Application Notes P D T a curves of HSOP04-P-0400 P D T a Power dissipation P D (W) Independent IC without a heat sink Rth(j-a) = 9.9 C/W Mounted on standard board (glass epoxy: 75 mm 75 mm t.6 mm) Rth(j-a) = 55.8 C/W Ambient temperature T a ( C) 4
5 AN884SB Application Circuit Example RL RL V REF V 4 V 3 V V P Fin Fin R4 R3 R R S P RL4 RL3 When the AN884SB is use, take into account the following cautions and follow the power dissipation characteristic curve.. Load current I P flowing into load RL, RL is supplied through pin 0. I P = V 8 V 7 + V 6 V 5 R L R L. Load current I P flowing into load RL3, RL4 is supplied through pin 9. I P = V 4 V 3 + V V R L3 R L4 3. Dissipation increase ( P D ) inside the IC (power output stage) caused by loads RL, RL, RL3 and RL4 is as follows: P D = (P V 8 V 7 ) V 8 V 7 + (P V 6 V 5 ) + V 6 V 5 R L = (P V 4 V 3 ) V 4 V 3 R L3 R L + (P V V ) V V 4. Dissipation increase ( P S ) inside the IC (signal block supplied from pin 7) caused by loads RL, RL, RL3 and RL4 comes roughly as follows: P S = 3 { V ( S + V 8 V 7 ) + V ( S + V 6 V 5 ) R R + V3 ( S + V 4 V 3 ) + V4 ( S + V V )} R 3 R 4 5. Dissipation increase in a driver operating mode is P D + P S. 6. Allowable power dissipation without load (P D ) can be found as follows: P D = S I SVCC + P I PVCC + P I PVCC 7. Allowable power dissipation in a load operating mode (P D ) comes roughly as follows: P D = P D + P D + P S R L4 5
Maintenance/ Discontinued
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