.
Semiconductor
S33201M
Rail to Rail Single OP AMP
Description
The S33201M is operational amplifiers provide rail-to-rail operation on both the input and output. The inputs can be driven as high as 200mV beyond the supply rails without phase reversal on the outputs, and the output can swing within 50mV of each rail. This rail-to-rail operation enables the user to make full use of the supply voltage range available. It is designed to work at very low supply voltages (± 0.9 V) yet can operate with a supply of up to +12V and ground. Output current boosting techniques provide a high output current capability while keeping the drain current of the amplifier to a minimum. Also, the combination of low noise and distortion with a high slew rate and drive capability make this an ideal amplifier for audio applications.
Features
• Low Voltage, Single Supply Operation (+1.8 V and Ground to +12 V and Ground) • Input Voltage Range Includes both Supply Rails • Output Voltage Swings within 50 mV of both Rails • No Phase Reversal on the Output for Over-driven Input Signals • High Output Current (ISC = 30 mA, Typ) • Low Supply Current (ICC = 0.9 mA, Typ) • 600Ω Output Drive Capability • Typical Gain Bandwidth Product = 2.2 MHz
Applications
• Low cost general purpose applications • A/D buffer • Smart card readers • Keyless entry • Audio applications • Hard disk drives • Cellular phones • DSP interface • Portable test instruments • Telephone systems • Digital still cameras • MP3 players
Ordering Information
Type NO. S33201M Marking 332 Package Code SOT-25
KSD-I5O002-000
1
S33201M
Outline Dimensions unit : mm
2.60~3.00 0.95 Typ. 1.50~1.70
Internal Block
1 2 3
0.95 Typ.
5
2.80~3.00
4
0.45 Max. 0.40 Min. 0.10 Max.
1.00~1.20
Circuit Schematic
0.19 Max.
KSD-I5O002-000
2
S33201M
Absolute maximum ratings
Characteristic
Supply Voltage (VCC to VEE) Input Differential Voltage Range Common Mode Input Voltage Range (Note2) Power Dissipation Operating Ambient Temperature Range Storage Temperature Notes ; 1. The differential input voltage of each amplifier is limited by two internal parallel back-to-back diodes. for additional differential input voltage range, use current limiting resistors in series with the input Pins. 2. The input common mode voltage range is limited by internal diodes connected from the inputs to both supply rails. Therefore, the voltage on either input must not exceed either supply rail by more than 500mV.
Symbol
VCC VIDR VCM PD TOPR TSTG
Rating
+13 Note1 VCC + 0.5V to VEE - 0.5V 0.5 -40 to 85 -55 to 150
Unit
V V V
W °C °C
Electrical Characteristics (Ta=25℃)
Characteristic
Output Voltage Swing
VCC (V) 2.0
1.9 0.10 1.125
3.3
3.15 0.15 1.125
5.0
4.85 0.15 1.125
Unit
V V mA
VOH (Min) VOL (Max)
ICC
(Note)
Supply Current
Specifications at VCC = 3.3V are guaranteed by the 2.0V and 5.0V tests. VEE = GND. Note : (RL = 10 ㏀)
Electrical Characteristics
(VCC = +5.0V, VEE = GND, Ta=25℃, unless otherwise noted.)
Characteristic
Input Offset Voltage Input Offset Voltage Temperature Coefficient Input Bias Current Input Offset Current Common Mode Input Voltage Range
Symbol
VIOS ∆VIO/∆T IIB IIO VICR
Test Condition
VCM 0V to 0.5V, VCM 1.0V to 5.0V RS=50Ω VCM=0V to 0.5V VCM=1.0V to 5.0V VCM=0V to 0.5V VCM=1.0V to 5.0V -
Min.
VEE
Typ.
2 300 5 -
Max.
6 500 50 VCC
Unit
㎷ ㎶/℃ ㎁ ㎁ V
KSD-I5O002-000
3
S33201M
Electrical Characteristics (cont.)
(VCC = +5.0V, VEE = GND, Ta = 25℃, unless otherwise noted.)
Characteristic
Large Signal Voltage Gain (VCC=+5V, VEE=-5V)
Symbol
Test Condition
RL=10 ㏀
Min.
50 25 4.85 4.75 60 60 20 10 -
Typ.
300 250 4.95 4.85 0.05 0.15 90 90 30 20 0.9 1 2.2
Max.
0.15 0.25 1.5 -
Unit
㎸/V ㎸/V V V V V dB dB ㎃ ㎃ ㎃
AVOL RL=600Ω RL=10 ㏀ VOH RL=600Ω RL=10 ㏀ VOL RL=600Ω
Output Voltage Swing (VID=±0.2V)
Common Mode Rejection Power Supply Rejection Ratio Source Current Sink Current
CMR PSRR ISO ISI ICC SR GBW
(VIN = 0V to 5.0V) VCC/VEE = 5.0V/GND to 3.0V/GND (VS=±2.5V, VO=-2.0V to 2.0V, RL=2 ㏀, AV=1) -
Output Short Circuit Current
Supply Current Slew Rate Gain Bandwidth Product
V/㎲ ㎒
KSD-I5O002-000
4
S33201M
Electrical Characteristic Curves
Fig. 1 ICC vs VCC
㎁
Fig. 2 IIB vs VCC
㎃
Fig. 3 VOH vs VCC
Ω
Fig. 4 VOL vs VCC
Ω
Fig. 5 VOP-P vs f
㎷
V
Fig. 6 CMR vs f
㏈
Ω
㎐
㎐
KSD-I5O002-000
5
S33201M
Fig. 7 ISC vs VOUT Fig. 8 GV vs f
㏈
Ω
㎃
㎐
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-I5O002-000
6
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