REA03D0003-0200 Rev.2.00 Dec 24, 2008
Page 1 of 7
HA17558B Series
Dual Operational Amplifier REA03D0003-0200
Rev.2.00
Dec 24, 2008
Description
HA17558B is dual bipolar op-amp with improved characteristics compared to HA17558A. It has wide bandwidth, low
noise, high slew rate; wide operating voltage range and high gain characteristics.
This product has a wide range of applications that is appropriate for audio application, as well as AC/DC converter.
Features
Wide bandwidth: 7 MHz
High speed: 3 V/µs
Low input noise voltage: 1 µVrms
Large DC voltage gai n: 110 dB
Operating vol tage: ±2 V to ±18 V
Package outline available in Pb free lead frame:
DP-8
SOP-8 (JEITA)
SOP-8 (JEDEC)
Applications
Audio AC-3 decoder system
Audio amplifier
AC/DC converter
Ordering Information
Part No. Application Package Code (Package
Name) Packing Abbreviation
(Quantity)
HA17558B PRDP0008AF-B (DP-8FV) — (50 pcs/stick 1,000 pcs/box)
HA17558BF PRSP0008DE-B (FP-8DGV) EL (2,500 pcs/reel)
HA17558BRP
Commercial use
PRSP0008DD-C (FP-8DCV) EL (2,500 pcs/reel)
Note: This product is designed for consumer use and not for automotive and industry.
HA17558B Series
REA03D0003-0200 Rev.2.00 Dec 24, 2008
Page 2 of 7
Pin Arrangement
–+
Vout1
Vin(–)1
Vin(+)1
V
EE
V
CC
Vout2
Vin(–)2
Vin(+)2
+–
8
7
6
5
1
2
3
4
(Top view)
1
2
Circuit Schematic (1/2)
– Input
V
CC
Output
+ Input
V
EE
HA17558B Series
REA03D0003-0200 Rev.2.00 Dec 24, 2008
Page 3 of 7
Absolute Maximum Ratings
(Ta = 25°C)
Ratings
Item Symbol
HA17558B HA17558BF HA17558BRP Unit
VCC 18 18 18 V Supply Voltage VEE –18 –18 –18 V
Differential input voltage VIN (diff) ±30 ±30 ±30 V
Common mode input voltage VCM *3 ±15 ±15 ±15 V
Power dissipation PT 670 *1 385 *2 385 *2 mW
Operating temperature Topr –40 to +85 –40 to +85 –40 to +85 °C
Storage temperature Tstg –55 to +125 –55 to +125 –55 to +125 °C
Notes: 1. This is the allowable value up to Ta = 45°C. Derate by 8.3 mW/°C above that temperature.
2. These are the allowable valu es up to Ta = 60°C mounting on 40mm × 40mm × 1.6mm (t) 10% wiring density
glass epoxy board. Derate by 5.9 mW/°C above that temperature.
3. If the supply voltage is less than ±15 V, input voltage should be less than supply v oltage.
Electrical Characteristics
(Ta = 25°C, VCC = +15 V, VEE = –15 V, unless otherwise specified)
Item Symbol Min Typ Max Unit Test Conditions
Input offset voltage VIO0.5 3 mV RS 10 kΩ
Input offset current IIO5 50 nA
Input bias current IIB65 250 nA
Supply current ICC2.5 4 mA
Power supply rejection ratio PSRR 80 100 dB RS 10 kΩ
Voltage gain AV 85 110 dB RL 2 kΩ, VO = ±10 V
Common mode rejection ratio CMR 80 100 dB RS 10 kΩ
±10 ±13 — V RL 2 kΩ Output swing voltage VOS
±12 ±14 — V RL 10 kΩ
Output sink current IOSINK — 70 — mA VIN(–) = 1 V, VIN(+) = 0 V,
VO = 2 V
Output source current IOSOURCE — 45 — mA VIN(–) = 0 V, VIN(+) = 1 V,
VO = 2 V
Slew rate SR 3 V/μs
Equivalent input noise voltage VNI1 μVrms RIAA, RS = 1 kΩ, 30 kHz LPF
Gain bandwidth product fu 7 MHz f = 10 kHz
Total harmonic distortion THD 0.0045 % f = 1 kHz, VO = 1 Vrms
HA17558B Series
REA03D0003-0200 Rev.2.00 Dec 24, 2008
Page 4 of 7
Table of Graphs
Electrical Characteristics Figure
Open loop voltage gain vs. Frequency f 1
Output swing voltage vs. Frequency f 2
Output swing voltage vs. Load resistance RL 3
Equivalent input noise voltage vs. Frequency f 4
Input offset voltage vs. Temperature Ta 5
Total harmonic distortion vs. Output Voltage Vo 6
HA17558B Series
REA03D0003-0200 Rev.2.00 Dec 24, 2008
Page 5 of 7
Typical Characteristics Curves
10 kHz
Frequency f (Hz)
Figure 1. Open Loop Voltage Gain vs. Frequency Figure 2. Output Swing Voltage vs. Frequency
051015
100 1 k 10 k
Open loop voltage gain (dB)
Total harmonic distortion (%)
Frequency f (Hz)
100 1 k 10 k 100 k 1 M
Output swing voltage (V)
10
100
1
Output swing voltage (V)
Temperature Ta (°C)
–40 3510–15 60 85
Frequency f (Hz)
110 1 k100 10 k
10
15
20
25
30
Input offset voltage (mV)
Figure 5. Input Offset Voltage vs. Temperature Figure 6. Total Harmonic Distortion vs. Output Voltage
Output voltage V
O
(Vrms)
0.01 0.1 1 10
–6
–5
–4
–3
–2
–1
0
1
2
3
4
5
6
0.0001
0.01
0.001
0.1
1
10
0
20
40
60
80
100
120
0
4
8
12
16
20
24
28
32
36
40
V
CC
= +15 V,
V
EE
= –15 V,
Ta = 25°C,
R
L
= 2 kΩ
V
CC
= +15 V,
V
EE
= –15 V,
Ta = 25°C,
R
L
= 2 kΩ
V
CC
= +15 V,
V
EE
= –15 V,
Ta = 25°C
V
CC
= +15 V,
V
EE
= –15 V,
Ta = 25°C
20 kHz
1 kHz
Figure 4. Equivalent Input Noise Voltage vs. Frequency
V
CC
= +15 V,
V
EE
= –15 V,
Ta = 25°C,
R
S
= 100 Ω
V
CC
= +15 V,
V
EE
= –15 V
Load resistance (Ω)
Figure 3. Output Swing Voltage vs. Load Resistance
Equivalent Input noise voltage (nV(Hz)
0.5
)
HA17558B Series
REA03D0003-0200 Rev.2.00 Dec 24, 2008
Page 6 of 7
Package Dimensions
( Ni/Pd/Au plating )
58
41
3
1
p
1
e
D
E
b
b
A
L A
e
Z
c
0.89
θ
2.541.27
0.480.40
7.4
10.6
15°
2.792.542.29
0.310.250.191.30 0.56
0.5
e1
L
e
θ
c
bp
A
E
D
b3
Z
A15.06
6.30
9.60
Reference
SymbolDimension in Millimeters
MinNom Max
7.62
P-DIP8-6.3x9.6-2.540.54g
MASS[Typ.]
DP-8FVPRDP0008AF-B
RENESAS CodeJEITA Package Code Previous Code
A
L
e
c1
b1
D
E
A2
bp
c
θ
x
y
HE
Z
L1
4.85
1.05
0.12
6.5
0.15 0.20 0.25
0.45
0.00 0.10.20
4.4
0.420.60 0.85
2.03
Reference
SymbolDimension in Millimeters
MinNom Max
5.25
A1
0.35 0.4
6.756.35 1.27
0.15
0.75
58
4
F
*1
*2
*3pMx
y
1
Index mark
E
A
Zb
E
H
D
p
Terminal cross section
( Ni/Pd/Au plating )
c
b
1
1
Detail F
A
L
L
θ
NOTE)
1. DIMENSIONS"*1 (Nom)"AND"*2"
DO NOT INCLUDE MOLD FLASH.
2. DIMENSION"*3"DOES NOT
INCLUDE TRIM OFFSET.
e
P-SOP8-4.4x4.85-1.27 0.1g
MASS[Typ.]
FP-8DGVPRSP0008DE-B
RENESAS CodeJEITA Package Code Previous Code
HA17558B Series
REA03D0003-0200 Rev.2.00 Dec 24, 2008
Page 7 of 7
58
4
F
*1
*2
*3pMx
y
1
E
Index mark
A
D
Z
H
E
b
p
Terminal cross section
( Ni/Pd/Au plating )
c
b
1
1
Detail F
A
L
L
θ
0.75
0.10
1.27
5.80 6.20
0.400.34
A1
5.30
MaxNomMin
Dimension in Millimeters
Symbol
Reference
1.75
1.270.600.40
3.95
0.250.140.10
0.46
0.250.200.15
6.10
0.25
1.08
4.90
L1
Z
HE
y
x
θ
c
bp
A2
E
D
b1
c1
e
e
L
A
NOTE)
1. DIMENSIONS"*1 (Nom)"AND"*2"
DO NOT INCLUDE MOLD FLASH.
2. DIMENSION"*3"DOES NOT
INCLUDE TRIM OFFSET.
P-SOP8-3.95x4.9-1.27 0.085g
MASS[Typ.]
FP-8DCVPRSP0008DD-C
RENESAS CodeJEITA Package Code Previous Code
Notes:
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