Dual Operational Amplifier Semiconductor
http:// www.auk.co.kr
SN358/P
Description
The SN358/P consists of two independent high gain Internally frequency compensated operational amplifiers designed to operate from a single power supply over a wide range of voltage.
SOP-8
Application
◈ Transducer amplifier ◈ DC gain blocks ◈ Conventional operational amplifiers
DIP-8 Features and Benefits
◈ Input common mode voltage range includes ground
ORDERING INFORMATION
Product SN358 SN358P Marking SN358 SN358P Package SOP-8 DIP-8
◈ Internally frequency compensated for unity gain ◈ Large DC voltage gain : 100dB ◈ Wide bandwidth for unity gain : 1 MHz ◈ Very low power consumption
▲ Marking Information
◈ Wide supply voltage range :
SN358(①) AUK YYWW(②)
[ Single : 3V ~ 30V, Dual : ±1.5 ~ ±15V ]
① Device Code ② Year & Week Code
KSD-I7F015-001 October, 2010 REV. 01
1
SN358/P
◈ Internal Block Diagram
◈ Pin Description No
1 2 3 4 5 6 7 8
Symbol
Out1 IN1(-) IN1(+) GND IN2(+) IN2(-) Out2 VCC
I/O
O I I GND I I O PWR OP-Amp1 Output
Description
OP-Amp1’s Inverting Input OP-Amp1’s Non-inverting Input GND OP-Amp2’s Non-inverting Input OP-Amp2’s Inverting Input OP-Amp2 Output VCC for Dual Operational Amplifier KSD-I7F015-001
2
October, 2010 REV. 01
SN358/P
Absolute maximum ratings
Characteristic
Supply voltage Differential input voltage Input voltage Power Dissipation Operating temperature Storage temperature PD Topr Tstg
Symbol
VCC VIND VIN SOP-8 DIP-8
Ratings
36 or ±18 32 -0.3 ~ +32 600 1000 -45 ~ +85 -55 ~ 150
Unit
V V V mW mW
°C °C
Electrical Characteristics
(Unless otherwise specified. VCC = 5V and –45 °C ≤ Ta ≤ +85 °C)
Characteristic
Input offset voltage Input offset voltage drift Input offset current Input offset current drift Input bias current
Symbol
VIOS ΔVIOS/ΔT IIOS ΔIIOS/ΔT IIB
Test Condition
5V ≤ VCC ≤ 30V Rg = 0Ω (Ta=25 °C) (Ta=25 °C) (Ta=25 °C) (Ta=25 °C) Rg = 0Ω, 0V ≤ VIC ≤ VCC-1.5V
Min. Typ. Max.
0 0 10 45 40 1 0.7 100 28 3 90 100 40 20 20 8 50 40 ±2 7 ±5 ±7 ±9 ±50 ±150 250 500 VCC –1.5 VCC –2 2 1.2 20 60
Unit
mV μV/ °C nA pA/ °C nA V V mA V/mV V mV dB dB mA mA μA mA 3
Input common mode voltage range
VICR
VCC = 30V VCC = 30V, RL = ∞ VCC = 5V, RL = ∞ VCC = 15V RL ≥ 2 KΩ VCC = 30V VCC =5V, RL ≤10 KΩ (Ta=25 °C) (Ta=25 °C) VCC = 15V VIN+ = 1V, VIN- = 0V VCC = 15V (Ta=25 °C) (Ta=25 °C) VIN+ = 0V, VIN- = 1V VOUT = 200mV, VIN+ = 0V, VIN- = 1V Ta=25 °C (Ta=25 °C) (Ta=25 °C) RL=2 KΩ RL=10 KΩ 25 15 26 27 65 65 20 10 10 5 12 -
Supply current Large signal voltage gain
ICC GV VOH VOL
Output voltage swing Common mode rejection ratio Power supply rejection ratio Output source current
CMRR PSRR IO+
Output sink current
IO-
Output short circuit to ground
ISC
KSD-I7F015-001 October, 2010 REV. 01
SN358/P
Typical Applications
Inverting Amplifier Non-inverting Amplifier
R2 R1
R2 R1
_ +
RL
_ +
RL
Power Amplifier
R1 R2
VS
_ +
VIN(+) R3 RL
VO
Fixed Current Sources
VS
R3
R1
R2
_ +
R4 I1 I2
KSD-I7F015-001 October, 2010 REV. 01
4
SN358/P
Electrical Characteristic Curves
Fig. 1 ICC-VCC Fig. 2 IIB-VCC
Fig. 3 VIOS-Ta
Fig. 4 IO-Ta
Fig. 5 CMRR-f
Fig. 6 VOR-f
KSD-I7F015-001 October, 2010 REV. 01
5
SN358/P
Outline Dimension (Unit : mm)
※ Recommend PCB solder land (Unit : mm)
KSD-I7F015-001 October, 2010 REV. 01
6
SN358/P
Outline Dimension (Unit : mm)
KSD-I7F015-001 October, 2010 REV. 01
7
SN358/P
The AUK Corp. products are intended for the use as components in general electronic equipment (Office and communication equipment, measuring equipment, home appliance, etc.). Please make sure that you consult with us before you use these AUK Corp. products in equipments which require high quality and / or reliability, and in equipments which could have major impact to the welfare of human life(atomic energy control, airplane, spaceship, transportation, combustion control, all types of safety device, etc.). AUK Corp. cannot accept liability to any damage which may occur in case these AUK Corp. products were used in the mentioned equipments without prior consultation with AUK Corp.. Specifications mentioned in this publication are subject to change without notice. KSD-I7F015-001 October, 2010 REV. 01
8
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