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Details, datasheet, quote on part number:LM358WD
 
 
Part:LM358WD
Description:Low Power Dual Bipolar Op-amps
Company:ST Microelectronics, Inc.
Datasheet:Download LM358WD datasheet   File size : 334 kB
Request For quote:  Find where to buy LM358WD
 



Datasheet text preview:
LM158W,AW LM258W,AW LM358W,AW
LOW POWER DUAL OPERATIONAL AMPLIFIERS
s INTERNALLY FREQUENCY COMPENSATED s LARGE DC VOLTAGE GAIN: 100dB s WIDE BANDWIDTH (unity gain): 1.1MHz
(temperature compensated)
s VERY LOW SUPPLY CURRENT/OP (500µA) s s s s s s s
ESSENTIALLY INDEPENDENT OF SUPPLY VOLTAGE LOW INPUT BIAS CURRENT: 20nA (temperature compensated) LOW INPUT OFFSET VOLTAGE: 2mV LOW INPUT OFFSET CURRENT: 2nA INPUT COMMON-MODE VOLTAGE RANGE INCLUDES GROUND DIFFERENTIAL INPUT VOLTAGE RANGE EQUAL TO THE POWER SUPPLY VOLTAGE LARGE OUTPUT VOLTAGE SWING 0V TO (Vcc - 1.5V) ESD INTERNAL PROTECTION : 2KV
N DIP8 (Plastic Package)
D&S SO8 & miniSO8 (Plastic Micropackage)
DESCRIPTION These circuits consist of two independent, high gain, internally frequency compensated which were designed specifically to operate from a single power supply over a wide range of voltages. The low power supply drain is independent of the magnitude of the power supply voltage. Application areas include transducer amplifiers, dc gain blocks and all the conventional op-amp circuits which now can be more easily implemented in single power supply systems. For example, these circuits can be directly supplied with the standard +5V which is used in logic systems and will easily provide the required interface electronics without requiring any additional power supply. Inthe linear mode the input common-mode voltage range includes ground and the output voltage can also swing to ground, even though operated from only a single power supply voltage. PIN CONNECTIONS (top view)
1 - Output 1 2 - Inverting input 3 - Non-inverting input 4 - VCC5 - Non-inverting input 2 6 - Inverting input 2 7 - Output 2 8 - VCC+ 1/12 P TSSOP8 (Thin Shrink Small Outline Package)
ORDER CODE
Part Number Temperature Range Package N · · · S D · · · P · · ·
LM158W,AW -55°C, +125°C LM258W,AW -40°C, +105°C LM358W,AW 0°C, +70°C Example : LM258AWN
·
N = Dual in Line Package (DIP) D = Small Outline Package (SO) - also available in Tape & Reel (DT) S = Small Outline Package (miniSO) - also available in Tape & Reel (DT) P = Thin Shrink Small Outline Package (TSSOP) - only available in Tape &Reel (PT)
1 2 3 4 + +
8 7 6 5
November 2002
LM158W-AW, LM258W-AW, LM358W-AW
SCHEMATIC DIAGRAM (1/2 LM158W)
ABSOLUTE MAXIMUM RATINGS
Symbol VCC Vi Vid Ptot Iin Toper Tstg
1. 2. on the IC chip. this transistor action can cause the output voltages of the Op-amps to go to the VC C voltage level (or to ground for a large overdrive) for the time duration than an input is driven negative. T his is not destructive and normal output will set up again for input voltage higher than -0.3V.
Parameter Supply voltage Input Voltage Differential Input Voltage Power Dissipation Output Short-circuit Duration 1) Input Current 2) Opearting Free-air Temperature Range Storage Temperature Range
LM158W,AW LM258W,AW LM358W,AW +32 -0.3 to +32 +32 500 Infinite 50 -55 to +125 -40 to +105 -65 to +150 0 to +70
Unit V V V mW mA °C °C
Short-circ uits from the output to VC C can cause excessive heating if VC C > 15V. The maximum output current is approximately 40mA independent of the magnitude of VC C. Destructive dissipation can result from simultaneous short-circuit on all amplifiers. T his input current only exists when the voltage at any of the input leads is driven negative. It is due to the collector-base junction of the input PNP transistor becoming forward biased and thereby acting as input diodes clamps. In addition to this diode action, there is also NPN parasitic action
2/12
LM158W-AW, LM258W-AW, LM358W-AW
ELECTRICAL CHARACTERISTICS VCC+ = +5V, VCC-= Ground, V o = 1.4V, Tamb = +25°C (unless otherwise specified)
Symbol Parameter LM158AW-LM258AW LM358AW Min. Input Offset Voltage - note 1) Tamb = +25°C LM158, LM258 LM158A Tmin Tamb Tmax LM158, LM258 Input Offset Current Tamb = +25°C Tmin Tamb Tmax Input Bias Current - note 2) Tamb = +25°C Tmin Tamb Tmax Large Signal Voltage Gain VCC = +15V, R L = 2k, Vo = 1.4V to 11.4V Tamb = +25°C Tmin Tamb Tmax Supply Voltage Rejection Ratio (Rs 10k) SVR VCC+ = 5V to 30V Tamb = +25°C Tmin Tamb Tmax Supply Current, all Amp, no load VCC = +5V Tmin Tamb Tmax Tmin Tamb Tmax VCC = +30V Input Common Mode Voltage Range VCC = +30V - note 3) Tamb = +25°C Tmin Tamb Tmax Common Mode Rejection Ratio (Rs 10k) Tamb = +25°C Tmin Tamb Tmax Output Current Source VCC = +15V, Vo = +2V, Vid = +1V Output Sink Current (Vid = -1V) VCC = +15V, Vo = +2V VCC = +15V, Vo = +0.2V Output Voltage Swing ( RL = 2k) Tamb = +25°C Tmin Tamb Tmax 65 65 100 65 65 100 dB Typ. 1 Max. 3 2 4 LM158W-LM258W LM358W Min. Typ. 2 Max. 7 5 9 7 2 30 40 150 200 nA Unit
Vio
mV
Iio
2
10 30 50 100
Iib
20
20
nA
Avd
50 25
100
50 25
100
V/mV
IC C
0.7
1.2 1
0 .7
1 .2 2
mA
Vicm
0 0
VCC+ -1.5 VCC+ -2 85
0 0
VCC+ -1.5 VCC+ -2 85
V
C MR
70 60 20 10 12
70 60 60 20 10 12 VCC+ -1.5 VCC+ -2
dB
Isource
40 20 50
40 20 50
60
mA
Isink
mA µA VCC+ -1.5 VCC+ -2
VOPP
0 0
0 0
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