HA13164AH Multiple Voltage Regulator for Car Audio REJ03F0139-0200 Rev.2.00 Jan 16, 2007 Description The HA13164AH is a compact multiple voltage regulator for car audio system. The outputs of this IC output consist of regulated 5.7 V output for a microcontroller, regulated 8 V output for CD driver, regulated 9.0 V output for audio control, regulated 10 V output for illuminations and regulated 5 V output, VCC-dependent output for external output and VCC-dependent output for remote-ANT. Functions General • ACC power monitor circuit is built-in as to detect low voltage. • Low saturation output (PNP output) used for audio output. • Adjustable voltage for illumination output by changing an external resistor. Protections • Output current limit circuit to avoid device destruction caused by shorted output, etc. • High surge input protector against VCC and ACC. • Built in a thermal shutdown circuit to prevent against the thermal destruction. Rev.2.00 Jan 16, 2007 page 1 of 16 HA13164AH Pin Description and Equivalent Circuit Function Pin No. 1 Pin Name EXT OUT Specification Equivalent Circuit VCC-1 V/300 mA min Vcc Vcc 2 ANT OUT VCC-1 V/300 mA min 90 kΩ Normal Operation Output voltage is VCC-1 V when M or H level applied to CTRL pin. TSD 0V Surge Input 0V Output voltage is VCC-1 V when M or H level to CTRL pin and H level to ANT-CTRL. 0V 0V Connected to ACC. — — 5.7 V 0V Output voltage is 5 V when M or H level applied to CTRL pin. 0V 0V Output for ACC detector 0V 0V L: ANT output OFF H: ANT output ON — — Connected to VCC — — 10 kΩ 3 ACC IN — 45 kΩ 15 kΩ 4 VDD OUT 5.7 V/100 mA min Regular 5.7 V. Vcc Vcc 175 kΩ 50 kΩ 5 SW5V OUT 5.0 V/100 mA min VDD Vcc 6 COMP OUT 5.0 V/100 mA min 50 kΩ 7 ANT CTRL — 51 kΩ 49 kΩ 8 VCC — Rev.2.00 Jan 16, 2007 page 2 of 16 HA13164AH Pin Description and Equivalent Circuit (cont.) Function Pin No. 9 Pin Name BATT DET Specification Equivalent Circuit — VDD 250 kΩ 10 AUDIO OUT 9.0 V/500 mA min Normal Operation Low battery detect. TSD Detect Surge Input Not detect Output voltage is 9 V when M or H level applied to CTRL pin. 0V 0V L: BIAS OFF M: BIAS ON H: CD ON — — Output voltage is 8 V when H level applied to CTRL pin. 0V 0V Adjustment pin for ILM output voltage. — — Output voltage is 10 V when M or H level applied to CTRL pin 0V 0V Connected to GND — — 10 kΩ Vcc Vcc 77.3 kΩ 12.3 kΩ 11 CTRL — 65 kΩ 35 kΩ 12 CD OUT 8.0 V/1.3 A min Vcc Vcc 64.7 kΩ 12.4 kΩ 13 ILM AJ — 14 ILM OUT 9.85 V/500 mA min Vcc Vcc 33.4 kΩ 5 kΩ 15 GND — Rev.2.00 Jan 16, 2007 page 3 of 16 HA13164AH Timing Chart VCC 8.5 V 9.25 V VDD OUT CTRL ANT CTRL AUDIO OUT CD OUT ILM OUT EXT OUT SW5V OUT ANT OUT ACC IN 2.8 V COMP OUT B.DET current Rev.2.00 Jan 16, 2007 page 4 of 16 2.5 V HA13164AH Block Diagram VCC ANT OUT EXT OUT 8 3 CTRL CD OUT + − 9 1 TSD 6 + − 7 4 + COMP OUT VDD OUT 11 − + 12 5 AUDIO OUT BATT.DET + − BIAS ANT CTRL ACC IN Surge protector 2 +B ACC − + − + 10 14 15 GND Rev.2.00 Jan 16, 2007 page 5 of 16 TAB GND 13 ILM AJ SW5V OUT ILM OUT HA13164AH Absolute Maximum Ratings (Ta = 25°C) Item Operating power supply voltage Symbol Rating 18 Unit V Note Vcc DC supply voltage Peak voltage Vcc(DC) Vcc(PEAK) 26 50 V V 1 2 Power dissipation Junction temperature Pd Tj 36 150 W °C 3 Operating temperature Storage temperature Topr Tstg –40 to +85 –55 to +125 °C °C Notes: Recommended power supply voltage range 10 to 16 V. 1. Applied time is less than 30 s. 2. Surge pulse as input. 3. Ta = 25°C. : Permissible power dissipation when using a heat sink of infinite area. Refer to the derating curves below. Power dissipation Pd (W) 20 15 thin = 1.6 mm, 100 cm Aluminum heat sink 11.0 W thin = 1.6 mm, 50 cm Aluminum heat sink 10 8.7 W 5 w/o heat sink 1.8 W 0 0 25 50 75 100 125 Ambient temperature Ta (°C) Rev.2.00 Jan 16, 2007 page 6 of 16 150 175 HA13164AH Electrical Characteristics (unless otherwise noted, Vcc = 13.2 V, Ta = 25°C) Item Standby current CTRL L level (STBY mode) Symbol IST VCL Min — 0 Typ 460 — Max 700 1.0 Unit µA V CTRL M level (CD OFF mode) CTRL H level (CD ON mode) VCM VCH 2.0 4.0 — — 3.0 – V V ANT CTRL L level (ANT OFF mode) ANT CTRL H level (ANT ON mode) VACL VACH 0 3.0 — — 2.0 – V V VDD OUT Output voltage Voltage regulation Vo1 ∆Vo11 5.4 — 5.7 10 6.0 50 V mV Io1 = 80 mA Vcc = 10 to 16 V, Io1 = 80 mA Load regulation Minimum I/O voltage differential ∆Vo12 ∆Vo13 — — 50 1.0 100 1.5 mV V Io1 = 0 to 80 mA Io1 = 80 mA Output current capacity Ripple rejection ratio Io1 SVR1 100 50 250 60 — — mA dB Vo1 ≥ 5.4 V f = 100 Hz, Io1 = 80 mA Output voltage Voltage regulation Vo2 ∆Vo21 7.6 — 8.0 40 8.4 100 V mV Io2 = 1.0 A Vcc = 10 to 16V, Io2 = 1.0 A Load regulation Minimum I/O voltage differential ∆Vo22 ∆Vo23 — — 70 1.0 150 1.5 mV V Io2 = 10m to 1.0 A Io2 = 1.0 A Output current capacity Ripple rejection ratio Io2 SVR2 1.3 40 2.0 45 — — A dB Vo2 ≥ 7.6 V f = 100 Hz, Io2 = 1.0 A Output voltage Voltage regulation Vo3 ∆Vo31 8.5 — 9.0 30 9.5 90 V mV Io3 = 400 mA Vcc = 10 to 16 V, Io3 = 400 mA Load regulation Minimum I/O voltage differential ∆Vo32 ∆Vo33 — — 100 0.4 200 0.9 mV V Io3 = 10 to 400 mA Io3 = 400 mA Output current capacity Ripple rejection ratio Io3 SVR3 500 45 850 50 — — mA dB Vo3 ≥ 8.5 V f = 100 Hz, Io3 = 400 mA Output voltage Voltage regulation Vo4 ∆Vo41 9.35 — 9.85 40 10.35 100 V mV Io4 = 400 mA Vcc = 12.5 to 16 V, Io4 = 400 mA Load regulation Minimum I/O voltage differential ∆Vo42 ∆Vo43 — — 50 1.0 100 1.5 mV V Io4 = 10 to 400 mA Io4 = 400 mA Output current capacity Ripple rejection ratio Io4 SVR4 500 35 900 40 — — mA dB Vo4 ≥ 9.35 V f = 100 Hz, Io4 = 400 mA Differential I/O voltage Load regulation ∆Vo51 ∆Vo52 — — 1.0 350 1.5 600 V mV Io5 = 300 mA Io5 = 10 to 300 mA Output current capacity Differential I/O voltage Io5 ∆Vo61 300 — 500 1.0 — 1.5 mA V Vo5 ≥ 11.7 V Io6 = 300 mA Load regulation Output current capacity ∆Vo62 Io6 — 300 350 500 600 — mV mA Io6 = 10 to 300 mA Vo6 ≥ 11.7 V SW5V OUT Output voltage Output current capacity Vo7 Io7 4.6 100 5.0 300 5.4 — V mA Io7 = 80 mA, VDD = no load Vo7 ≥ 4.6 V ACC OUT Output voltage Output current capacity Vo8 Io8 4.6 100 5.0 300 5.4 — V mA Io8 = 40 mA, VDD = no load Vo8 ≥ 4.6 V Rise threshold voltage Hysteresis range VTHH8 ∆VTH8 2.6 0.2 2.8 0.3 3.0 0.4 V V Threshold voltage Hysteresis range VTHH9 ∆VTH9 8.1 0.55 8.5 0.75 8.9 0.95 V V Output current capacity Io9 200 — — µA CD OUT AUDIO OUT ILM OUT EXT OUT ANT OUT BATT. DET Rev.2.00 Jan 16, 2007 page 7 of 16 Test Condition ACC = 0 V, CTRL = 0 V Vo = 0.3 V HA13164AH Evaluation Circuit HA13164AH EXT OUT 1 ANT OUT 2 C1 C2 0.1 µF EXT ACC IN 3 VDD OUT 4 SW5V COMP ANT OUT OUT CTRL 5 6 7 VCC 8 BATT AUDIO DET OUT CTRL 9 10 11 C3 0.1 µF ANT C8 + 0.1 µF VDD SW5V COMP CD OUT 12 ILM AJ 13 C9 10 µF BATT.DET AUDIO ILM OUT 14 GND 15 C10 0.1 µF CD 0.1 µF ILM SW1 SW4 100 µF ACC Rev.2.00 Jan 16, 2007 page 8 of 16 C6 C7 + ANT CTRL VCC SW2 SW3 R2 3.3 kΩ R3 3.3 kΩ 0.1 µF CTRL 5V HA13164AH Main Characteristic CTRL, ANTCTRL Vth vs. Tc 6 Vcc = 13.2 V CTRL 'L/M' Vth (1.0 V ≤ Vth ≤ 2.0 V) ANTCTRL Vth (2.0 V ≤ Vth ≤ 3.0 V) CTRL 'M/H' Vth (3.0 V ≤ Vth ≤ 4.0 V) CTRL, ANTCTRL voltage (V) 5 4 3 2 1 0 −50 0 50 Tc (°C) 100 150 B.DET Detection vs. Tc 11 ∆Vth (0.55 V ≤ ∆Vth ≤ 0.95 V) Vth (8.1 V ≤ Vth ≤ 8.9 V) 10.5 VCC voltage (V) 10 9.5 9 8.5 8 7.5 7 −50 Rev.2.00 Jan 16, 2007 page 9 of 16 0 50 Tc (°C) 100 150 HA13164AH ACC Detection vs. Tc 5 Vcc = 13.2 V Vth (2.6 V ≤ Vth ≤ 3.0 V) ∆Vth (0.2 V ≤ ∆Vth ≤ 0.4 V) ACC voltage (V) 4 3 2 1 0 −50 Rev.2.00 Jan 16, 2007 page 10 of 16 0 50 Tc (°C) 100 150 HA13164AH Vo – Io Characteristics VDD Output 7 Vcc = 13.2 V VDD output voltage (V) 6 5 4 3 2 1 0 Tc = 100°C Tc = 25°C Tc = −30°C 0 50 100 150 Io (mA) 200 250 300 Vo – Io Characteristics CD Output 10 Vcc = 13.2 V CD output voltage (V) 8 6 4 2 Tc = 100°C Tc = 25°C Tc = −30°C 0 0 Rev.2.00 Jan 16, 2007 page 11 of 16 0.5 1 1.5 Io (A) 2 2.5 3 HA13164AH Vo – Io Characteristics AUDIO output 10 Vcc = 13.2 V AUDIO output voltage (V) 8 6 4 2 Tc = 100°C Tc = 25°C Tc = −30°C 0 0 200 400 600 Io (mA) 800 1000 1200 Vo – Io Characteristics ILM output 12 Vcc = 13.2 V ILM output voltage (V) 10 8 6 4 2 Tc = 100°C Tc = 25°C Tc = −30°C 0 0 500 1000 Io (mA) Rev.2.00 Jan 16, 2007 page 12 of 16 1500 HA13164AH Vo – Io Characteristics EXT, ANT Output Vcc = 13.2 V 12 EXT output voltage (V) 10 8 6 4 2 0 Tc = 100°C Tc = 25°C Tc = −30°C 0 200 400 600 Io (mA) 800 1000 Vo – Io Characteristics COMP, SW5V Output 7 Vcc = 13.2 V COMP, SW5V output voltage (V) 6 5 COMP SW5V 4 3 2 1 0 Tc = 100°C Tc = 25°C Tc = −30°C 0 Rev.2.00 Jan 16, 2007 page 13 of 16 50 100 150 200 Io (mA) 250 300 350 HA13164AH SVR vs. Tc VDD Output 70 Vcc = 13.2 V Ripple f = 100 Hz, v = 0 dBm 60 SVR (dB) 50 40 30 20 10 0 −50 Io = 10 mA Io = 40 mA Io = 80 mA 0 50 Tc (°C) 100 150 SVR vs. Tc CD Output 70 Vcc = 13.2 V Ripple f = 100 Hz, v = 0 dBm 60 SVR (dB) 50 40 30 20 10 0 −50 Rev.2.00 Jan 16, 2007 page 14 of 16 Io = 10 mA Io = 500 mA Io = 1 A 0 50 Tc (°C) 100 150 HA13164AH SVR vs. Tc AUDIO Output 70 Vcc = 13.2 V Ripple f = 100 Hz, v = 0 dBm 60 SVR (dB) 50 40 30 20 10 0 −50 Io = 10 mA Io = 200 mA Io = 400 mA 0 50 Tc (°C) 100 150 SVR vs. Tc ILM Output 70 Vcc = 13.2 V Ripple f = 100 Hz, v = 0 dBm 60 SVR (dB) 50 40 30 20 10 0 −50 Rev.2.00 Jan 16, 2007 page 15 of 16 Io = 10 mA Io = 200 mA Io = 400 mA 0 50 Tc (°C) 100 150 HA13164AH Package Dimensions JEITA Package Code P-HSIP15-14.3x19.66-1.27 RENESAS Code PRSS0015DA-C Previous Code SP-15TGV MASS[Typ.] 3.0g Unit : mm 20.5 MAX 19.66 19.0 3.3MiN ±0.3 2-C3.0 ±0.2 3.5 TYP 3.8MAX 1.1MiN 1.28 TYP 1.50MAX ±0.2 17.9 7.8 13.8 11.3 ±0.3 3.0 ±0.2 φ 3.6 1.11±0.25 0.6 ±0.1 1.27 ±0.25 2.54 *1 ±0.25 0.25 *1 +0.10 -0.05 1.8 ±0.25 3.5 ±0.5 6.04 *1 ±0.5 *1 Note) 1. Dimension "*1" is the value after bending. ( Ni/Pd/Au plating ) Rev.2.00 Jan 16, 2007 page 16 of 16 Sales Strategic Planning Div. Nippon Bldg., 2-6-2, Ohte-machi, Chiyoda-ku, Tokyo 100-0004, Japan Notes: 1. This document is provided for reference purposes only so that Renesas customers may select the appropriate Renesas products for their use. Renesas neither makes warranties or representations with respect to the accuracy or completeness of the information contained in this document nor grants any license to any intellectual property rights or any other rights of Renesas or any third party with respect to the information in this document. 2. Renesas shall have no liability for damages or infringement of any intellectual property or other rights arising out of the use of any information in this document, including, but not limited to, product data, diagrams, charts, programs, algorithms, and application circuit examples. 3. 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