HITACHI HA13164

HA13164A
Multiple Voltage Regulator
ADE-207-342 (Z)
Rev.0
Jun. 2001
General Description
The HA13164A 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 remort-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 resister.
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.
HA13164A
Pin Description and Equivalent Circuit
Pin
Function
No.
Pin Name
Specification
1
EXT OUT
VCC-1V/300mA min
Equivalent Circuit
Normal Operation
Vcc
ANT OUT
0V
0V
0V
Connected to ACC. —
—
Regular 5.7V.
5.7V
0V
0V
0V
Vcc
Output voltage is
5V when M or H
level applied to
CTRL pin.
Output for ACC
detector
0V
0V
50kΩ
L: ANT output OFF —
H: ANT output ON
—
VCC-1V/300mA min
90kΩ
10kΩ
3
ACCIN
Surge Input
0V
Output voltage is
VCC-1 V when M
or H level applied to
CTRL pin.
Vcc
2
TSD
—
Output voltage is
VCC-1 V when M
or H level to CTRL
pin and H level to
ANT-CTRL.
45kΩ
15kΩ
4
VDD OUT
5.7V/100mA min
Vcc
Vcc
175kΩ
50kΩ
5
6
7
SW5VOUT
COMPOUT
ANT CTRL
5.0V/100mA min
VDD
5.0V/100mA min
—
51kΩ
49kΩ
Rev.0, Jun. 2001, page 2 of 18
HA13164A
Pin Description and Equivalent Circuit (cont)
Pin
No.
Function
Pin Name
Specification
8
VCC
—
9
BATT DET
—
Equivalent Circuit
VDD
250kΩ
10
AUDIOOUT
Normal Operation
TSD
Surge Input
Connected to VCC
—
—
Low battery detect.
Detect
Not detect
Output voltage is
9V when M or H
level applied to
CTRL pin.
0V
0V
L: BIAS OFF
M: BIAS ON
H: CD ON
—
—
Output voltage is
8V when H level
applied to CTRL
pin.
0V
0V
Adjustment pin for
ILM output voltage.
—
—
Output voltage is
10V when M or H
level applied to
CTRL pin
0V
0V
Connected to GND
—
—
10kΩ
Vcc
9.0V/500mA min
Vcc
77.3kΩ
12.3kΩ
11
CTRL
—
65kΩ
35kΩ
12
CD OUT
8.0V/1.3A min
Vcc
Vcc
64.7kΩ
12.4kΩ
13
ILM AJ
—
14
ILM OUT
9.85V/500mA min
Vcc
Vcc
33.4kΩ
5kΩ
15
GND
—
Rev.0, Jun. 2001, page 3 of 18
HA13164A
Timing Chart
VCC
8.5V
9.25V
VDD
CTRL
ANTCTRL
AUDIO
CD
ILM
EXT
SW5V
ANT
2.8V
ACC
COMP
B.DET current
Rev.0, Jun. 2001, page 4 of 18
2.5V
HA13164A
Block Diagram
VCC
8
3
+B
ACC
ACC
+
−
ANT OUT
EXT OUT
CTRL
CC OUT
+
−
1
TSD
6
+
−
7
4
+
COMP OUT
VDD OUT
11
+
−
12
5
AUDIO OUT
BATT.DET
Surge protector
2
BIAS
ANT CTRL
9
−
+
+
−
10
14
15
GND
TAB
GND
SW5V
ILM OUT
13
ILM AJ
Rev.0, Jun. 2001, page 5 of 18
HA13164A
Absolute Maximum Ratings
(Ta = 25°C)
Item
Symbol
Value
Unit
Note
Operating power supply voltage
Vcc
18
V
DC supply voltage
Vcc(DC)
26
V
1
Peak voltage
Vcc(PEAK)
50
V
2
Power dissipation
Pd
36
W
3
Junction temperature
Tj
150
°C
Operating temperature
Topr
–40 to +85
°C
Storage temperature
Tstg
–55 to +125
°C
Notes: Recommended power supply voltage range 10V to 16V.
1. Applied time is less than 30 sec.
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 = 1.6mm, 100cm2 Aluminum heat sink
10
thin = 1.6mm, 50cm2 Aluminum heat sink
11.0W
8.7W
5
w/o heat sink
1.8W
0
0
25
50
75
100
125
Ambient temperature Ta (°C)
Rev.0, Jun. 2001, page 6 of 18
150
175
HA13164A
Electrical Characteristics
(unless otherwise noted, Vcc = 13.2 V, Ta = 25°C)
Item
Symbol Min
Typ
Max
Unit Test Condition
Standby current
IST
—
460
700
µA
CTRL L level (STBY mode)
VCL
0
—
1.0
V
CTRL M level (CD OFF mode)
VCM
2.0
—
3.0
V
CTRL H level (CD ON mode)
VCH
4.0
—
—
V
ANT CTRL L level (ANTOFF mode)
VACL
0
—
2.0
V
ANT CTRL H level (ANT ON mode)
VACH
3.0
—
—
V
VDD
OUT
CD
OUT
AUDIO
OUT
ILM
OUT
EXT12
OUT
ACC = 0V, CTRL = 0V
Output voltage
Vo1
5.4
5.7
6.0
V
Io1 = 80mA
Voltage regulation
∆Vo11
—
10
50
mV
Vcc = 10 to 16V, Io1 = 80mA
Load regulation
∆Vo12
—
50
100
mV
Io1 = 0 to 80mA
Minimum I/O voltage differential
∆Vo13
—
1.0
1.5
V
Io1 = 80mA
Output current capacity
Io1
100
250
—
mA
Vo1 ≥ 5.4V
Ripple rejection ratio
SVR1
50
60
—
dB
f = 100Hz, Io1 = 80mA
Output voltage 2
Vo2
7.6
8.0
8.4
V
Io2 = 1.0A
Voltage regulation
∆Vo21
—
40
100
mV
Vcc = 10 to 16V, Io2 = 1.0A
Load regulation
∆Vo22
—
70
150
mV
Io2 = 10m to 1.0A
Minimum I/O voltage differential
∆Vo23
—
1.0
1.5
V
Io2 = 1.0A
Output current capacity
Io2
1.3
2.0
—
A
Vo2 ≥ 7.6V
Ripple rejection ratio
SVR2
40
45
—
dB
f = 100Hz, Io2 = 1.0A
Output voltage 3
Vo3
8.5
9.0
9.5
V
Io3 = 400mA
Voltage regulation
∆Vo31
—
30
90
mV
Vcc = 10 to 16V, Io3 = 400mA
Load regulation
∆Vo32
—
100
200
mV
Io3 = 10 to 400mA
Minimum I/O voltage differential
∆Vo33
—
0.4
0.9
V
Io3 = 400mA
Output current capacity
Io3
500
850
—
mA
Vo3 ≥ 8.5V
Ripple rejection ratio
SVR3
45
50
—
dB
f = 100Hz, Io3 = 400mA
Output voltage 4
Vo4
9.35
9.85
10.35
V
Io4 = 400mA
Voltage regulation
∆Vo41
—
40
100
mV
Vcc = 12.5 to 16V, Io4 = 400mA
Load regulation
∆Vo42
—
50
100
mV
Io4 = 10 to 400mA
Minimum I/O voltage differential
∆Vo43
—
1.0
1.5
V
Io4 = 400mA
Output current capacity
Io4
500
900
—
mA
Vo4 ≥ 9.35V
Ripple rejection ratio
SVR4
35
40
—
dB
f = 100Hz, Io4 = 400mA
Differential I/O voltage
∆Vo51
—
1.0
1.5
V
Io5 = 300mA
Load regulation
∆Vo52
—
350
600
mV
Io5 = 10 to 300mA
Output current capacity
Io5
300
500
—
mA
Vo5 ≥ 11.7V
Rev.0, Jun. 2001, page 7 of 18
HA13164A
Electrical Characteristics (cont)
(unless otherwise noted, Vcc = 13.2 V, Ta = 25°C)
Item
Symbol Min
Typ
Max
Unit Test Condition
Differential I/O voltage
∆Vo61
—
1.0
1.5
V
Io6 = 300mA
Load regulation
∆Vo62
—
350
600
mV
Io6 = 10 to 300mA
Output current capacity
Io6
300
500
—
mA
Vo6 ≥ 11.7V
SW5V
OUT
Output voltage
Vo7
4.6
5.0
5.4
V
Io7 = 80mA, VDD = no load
Output current capacity
Io7
100
300
—
mA
Vo7 ≥ 4.6V
ACC
OUT
Output voltage
Vo8
4.6
5.0
5.4
V
Io8 = 40mA, VDD = no load
Vo8 ≥ 4.6V
ANT
OUT
BATT.
DET
Output current capacity
Io8
100
300
—
mA
Rise threshold voltage
VTHH8
2.6
2.8
3.0
V
Hysteresis range
∆VTH8
0.2
0.3
0.4
V
Threshold voltage
VTHH9
8.1
8.5
8.9
V
Hysteresis range
∆VTH9
0.55
0.75
0.95
V
Output current capacity
Io9
200
—
—
µA
Rev.0, Jun. 2001, page 8 of 18
Vo = 0.3V
HA13164A
Evaluation Circuit
HA13164
EXT
1
ANT
2
C1
0.1
µF
EXT
ACC
3
VDD
4
C2
0.1
µF
SW5V
5
C3
0.1
µF
VDD
ANT
COMP ANT CTRL VCC BATT.DET AUDIO
6
7
8
9
10
SW5V
CTRL
11
CD
12
+ C8
10
µF
COMP
BATT.DET AUDIO
ILM.AJ
13
ILM
14
C9
0.1
µF
CD
GND
15
C10
0.1
µF
ILM
SW1
SW4
C6
100
µF
ACC
ANT CTRL VCC
+
SW2 SW3
R2
3.3kΩ
C7
0.1
µF
R3
3.3kΩ
CTRL
5V
Rev.0, Jun. 2001, page 9 of 18
HA13164A
Main Characteristic
CTRL, ANTCTRL Vth vs. Tc
6
Vcc = 13.2V
CTRL 'L/M' Vth (1.0V ≤ Vth ≤ 2.0V)
ANTCTRL Vth (2.0V ≤ Vth ≤ 3.0V)
CTRL 'M/H' Vth (3.0V ≤ Vth ≤ 4.0V)
CTRL, ANTCTRL voltage (V)
5
4
3
2
1
0
–50
0
50
Tc (°C)
100
150
B.DET Detection vs. Tc
11
∆Vth (0.55V ≤ ∆Vth ≤ 0.95V)
Vth (8.1V ≤ Vth ≤ 8.9V)
10.5
VCC voltage (V)
10
9.5
9
8.5
8
7.5
7
–50
Rev.0, Jun. 2001, page 10 of 18
0
50
Tc (°C)
100
150
HA13164A
ACC Detection vs. Tc
5
Vcc = 13.2V
Vth (2.6V ≤ Vth ≤ 3.0V)
∆Vth (0.2V ≤ ∆Vth ≤ 0.4V)
ACC voltage (V)
4
3
2
1
0
–50
0
50
Tc (°C)
100
150
Rev.0, Jun. 2001, page 11 of 18
HA13164A
Vo – Io Characteristics VDD Output
7
Vcc = 13.2V
6
VDD output voltage (V)
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 = 13.2V
CD output voltage (V)
8
6
4
2
Tc = 100°C
Tc = 25°C
Tc = –30°C
0
0
Rev.0, Jun. 2001, page 12 of 18
0.5
1
1.5
Io (A)
2
2.5
3
HA13164A
Vo – Io Characteristics AUDIO output
10
Vcc = 13.2V
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 = 13.2V
ILM output voltage (V)
10
8
6
4
2
Tc = 100°C
Tc = 25°C
Tc = –30°C
0
0
500
1000
1500
Io (mA)
Rev.0, Jun. 2001, page 13 of 18
HA13164A
Vo – Io Characteristics EXT, ANT Output
Vcc = 13.2V
12
EXT output voltage (V)
10
8
6
4
2
0
Tc = 100°C
Tc = 25°C
Tc = –30°C
0
200
400
600
800
1000
Io (mA)
Vo – Io Characteristics COMP, SW5V Output
7
Vcc = 13.2V
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.0, Jun. 2001, page 14 of 18
50
100
150
200
Io (mA)
250
300
350
HA13164A
SVR vs. Tc VDD Output
70
Vcc = 13.2V
Ripple f = 100Hz, v = 0dBm
60
SVR (dB)
50
40
30
20
10
0
–50
Io = 10mA
Io = 40mA
Io = 80mA
0
50
Tc (°C)
100
150
SVR vs. Tc CD Output
70
Vcc = 13.2V
Ripple f = 100Hz, v = 0dBm
60
SVR (dB)
50
40
30
20
10
0
–50
Io = 10mA
Io = 500mA
Io = 1A
0
50
Tc (°C)
100
150
Rev.0, Jun. 2001, page 15 of 18
HA13164A
SVR vs. Tc AUDIO Output
70
Vcc = 13.2V
Ripple f = 100Hz, v = 0dBm
60
SVR (dB)
50
40
30
20
10
0
–50
Io = 10mA
Io = 200mA
Io = 400mA
0
50
Tc (°C)
100
150
SVR vs. Tc ILM Output
70
Vcc = 13.2V
Ripple f = 100Hz, v = 0dBm
60
SVR (dB)
50
40
30
20
10
0
–50
Rev.0, Jun. 2001, page 16 of 18
Io = 10mA
Io = 200mA
Io = 400mA
0
50
Tc (°C)
100
150
HA13164A
Package Dimensions
3.8 Max
19.0 ± 0.3
3.0 ± 0.2
3.0 ± 0.2
17.90
7.8
13.8
1.5 Max
11.3 ± 0.3
3.0 ± 0.2
Unit: mm
φ 3.6 ± 0.2
19.66
20.5 Max
1.80 ± 0.25
15
1
1.11 ± 0.25
1.27
2.54±0.25
0.6 ± 0.1
0.10
0.25 +– 0.05
3.5 ± 0.5
6.04 ± 0.50
Hitachi Code
JEDEC
EIAJ
Mass (reference value)
SP-15TA
—
—
3.10 g
Rev.0, Jun. 2001, page 17 of 18
HA13164A
Disclaimer
1. Hitachi neither warrants nor grants licenses of any rights of Hitachi’s or any third party’s patent,
copyright, trademark, or other intellectual property rights for information contained in this document.
Hitachi bears no responsibility for problems that may arise with third party’s rights, including
intellectual property rights, in connection with use of the information contained in this document.
2. Products and product specifications may be subject to change without notice. Confirm that you have
received the latest product standards or specifications before final design, purchase or use.
3. Hitachi makes every attempt to ensure that its products are of high quality and reliability. However,
contact Hitachi’s sales office before using the product in an application that demands especially high
quality and reliability or where its failure or malfunction may directly threaten human life or cause risk
of bodily injury, such as aerospace, aeronautics, nuclear power, combustion control, transportation,
traffic, safety equipment or medical equipment for life support.
4. Design your application so that the product is used within the ranges guaranteed by Hitachi particularly
for maximum rating, operating supply voltage range, heat radiation characteristics, installation
conditions and other characteristics. Hitachi bears no responsibility for failure or damage when used
beyond the guaranteed ranges. Even within the guaranteed ranges, consider normally foreseeable
failure rates or failure modes in semiconductor devices and employ systemic measures such as failsafes, so that the equipment incorporating Hitachi product does not cause bodily injury, fire or other
consequential damage due to operation of the Hitachi product.
5. This product is not designed to be radiation resistant.
6. No one is permitted to reproduce or duplicate, in any form, the whole or part of this document without
written approval from Hitachi.
7. Contact Hitachi’s sales office for any questions regarding this document or Hitachi semiconductor
products.
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Copyright  Hitachi, Ltd., 2000. All rights reserved. Printed in Japan.
Colophon 2.0
Rev.0, Jun. 2001, page 18 of 18