RENESAS HA13164AH

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
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Colophon .7.0