lmv358-mda National Semiconductor Corporation, lmv358-mda Datasheet

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lmv358-mda

Manufacturer Part Number
lmv358-mda
Description
General Purpose, Low Voltage, Rail-to-rail Output Operational Amplifiers
Manufacturer
National Semiconductor Corporation
Datasheet
© 2007 National Semiconductor Corporation
LMV321/LMV358/LMV324 Single/Dual/Quad
General Purpose, Low Voltage, Rail-to-Rail Output
Operational Amplifiers
General Description
The LMV358/LMV324 are low voltage (2.7–5.5V) versions of
the dual and quad commodity op amps, LM358/LMV324,
which currently operate at 5–30V. The LMV321 is the single
version.
The LMV321/LMV358/LMV324 are the most cost effective
solutions for the applications where low voltage operation,
space saving and low price are needed. They offer specifica-
tions that meet or exceed the familiar LM358/LMV324. The
LMV321/LMV358/LMV324 have rail-to-rail output swing ca-
pability and the input common-mode voltage range includes
ground. They all exhibit excellent speed to power ratio,
achieving 1 MHz of bandwidth and 1 V/µs of slew rate with
low supply current.
The LMV321 is available in the space saving 5-Pin SC70,
which is approximately half the size of the 5-Pin SOT23. The
small package saves space on PC boards, and enables the
design of small portable electronic devices. It also allows the
designer to place the device closer to the signal source to
reduce noise pickup and increase signal integrity.
The chips are built with National's advanced submicron sili-
con-gate BiCMOS process. The LMV321/LMV358/LMV324
have bipolar input and output stages for improved noise per-
formance and higher output current drive.
Gain and Phase vs. Capacitive Load
100060
10006045
Features
(For V
Applications
Guaranteed 2.7V and 5V performance
No crossover distortion
Space saving package
Industrial temperature range
Gain-bandwidth product
Low supply current
— LMV321
— LMV358
— LMV324
Rail-to-rail output swing @ 10 kΩ
V
Active filters
General purpose low voltage applications
General purpose portable devices
CM
+
= 5V and V
Output Voltage Swing vs. Supply Voltage
= 0V, unless otherwise specified)
5-Pin SC70 2.0x2.1x1.0 mm
−0.2V to V
−40°C to +85°C
10006067
www.national.com
October 2007
V
V
+
−10 mV
+65 mV
130 μA
210 μA
410 μA
+
1 MHz
−0.8V

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lmv358-mda Summary of contents

Page 1

... LMV321/LMV358/LMV324 Single/Dual/Quad General Purpose, Low Voltage, Rail-to-Rail Output Operational Amplifiers General Description The LMV358/LMV324 are low voltage (2.7–5.5V) versions of the dual and quad commodity op amps, LM358/LMV324, which currently operate at 5–30V. The LMV321 is the single version. The LMV321/LMV358/LMV324 are the most cost effective solutions for the applications where low voltage operation, space saving and low price are needed ...

Page 2

... V 1.7V CM ≤ ≤ 2. ≥ kΩ to 1.35V L LMV321 LMV358 Both amplifiers LMV324 All four amplifiers = 25° 2.7V, V − Conditions C = 200 kHz kHz 2 −65°C to 150°C 150°C (Note 1) 2.7V to 5.5V −40°C to +85°C ...

Page 3

... For CMRR kΩ kΩ kΩ Sourcing Sinking LMV321 LMV358 Both amplifiers LMV324 All four amplifiers = 25° 5V, V − 2.0V Conditions (Note 7) (Note 200 kHz kHz 3 = 2.0V ...

Page 4

... Packaging Marking Transport Media 1k Units Tape and Reel A12 3k Units Tape and Reel 1k Units Tape and Reel A13 3k Units Tape and Reel LMV358M 2.5k Units Tape and Reel 1k Units Tape and Reel LMV358 3.5k Units Tape and Reel LMV324M 2.5k Units Tape and Reel LMV324MT 2 ...

Page 5

Typical Performance Characteristics T = 25°C. A Supply Current vs. Supply Voltage (LMV321) Sourcing Current vs. Output Voltage Sinking Current vs. Output Voltage Unless otherwise specified, V Input Current vs. Temperature 10006073 Sourcing Current vs. Output Voltage 10006069 Sinking Current ...

Page 6

Output Voltage Swing vs. Supply Voltage Input Current Noise vs. Frequency Crosstalk Rejection vs. Frequency www.national.com Input Voltage Noise vs. Frequency 10006067 Input Current Noise vs. Frequency 10006060 PSRR vs. Frequency 10006061 6 10006056 10006058 10006051 ...

Page 7

CMRR vs. Frequency 10006062 CMRR vs. Input Common Mode Voltage 10006063 ΔV vs. CMR OS 10006050 CMRR vs. Input Common Mode Voltage ΔV vs. CMR OS Input Voltage vs. Output Voltage 7 10006064 10006053 10006054 www.national.com ...

Page 8

Input Voltage vs. Output Voltage Open Loop Frequency Response Gain and Phase vs. Capacitive Load www.national.com Open Loop Frequency Response 10006052 Open Loop Frequency Response vs. Temperature 10006041 Gain and Phase vs. Capacitive Load 10006045 8 10006042 10006043 10006044 ...

Page 9

Slew Rate vs. Supply Voltage Non-Inverting Large Signal Pulse Response Non-Inverting Small Signal Pulse Response Non-Inverting Large Signal Pulse Response 10006057 Non-Inverting Large Signal Pulse Response 100060a1 Non-Inverting Small Signal Pulse Response 10006089 9 10006088 100060a0 100060a2 www.national.com ...

Page 10

Non-Inverting Small Signal Pulse Response Inverting Large Signal Pulse Response Inverting Small Signal Pulse Response www.national.com Inverting Large Signal Pulse Response 100060a3 Inverting Large Signal Pulse Response 100060a4 Inverting Small Signal Pulse Response 10006091 10 10006090 100060a5 100060a6 ...

Page 11

Inverting Small Signal Pulse Response 100060a7 Stability vs. Capacitive Load 10006047 Stability vs. Capacitive Load 10006048 Stability vs. Capacitive Load Stability vs. Capacitive Load THD vs. Frequency 11 10006046 10006049 10006059 www.national.com ...

Page 12

Open Loop Output Impedance vs. Frequency Short Circuit Current vs. Temperature (Sourcing) www.national.com Short Circuit Current vs. Temperature (Sinking) 10006055 10006066 12 10006065 ...

Page 13

... GND apparent that the crossover distortion has been eliminated in the new LMV324. FIGURE 1. Output Swing of LMV324 FIGURE 2. Output Swing of LM324 CAPACITIVE LOAD TOLERANCE The LMV321/LMV358/LMV324 can directly drive 200 pF in unity-gain without oscillation. The unity-gain follower is the without + most sensitive configuration to capacitive loading. Direct ca- pacitive loading reduces the phase margin of amplifiers ...

Page 14

... INPUT BIAS CURRENT CANCELLATION The LMV321/LMV358/LMV324 family has a bipolar input stage. The typical input bias current of LMV321/LMV358/ resistor value, LMV324 with 5V supply. Thus a 100 kΩ input resistor ISO will cause 1 error voltage. By balancing the resistor ...

Page 15

Instrumentation Circuits The input impedance of the previous difference amplifier is set by the resistors and eliminate the prob lems of low input impedance, one way is ...

Page 16

ACTIVE FILTER Simple Low-Pass Active Filter The simple low-pass filter is shown in Figure 11. Its low-fre- → quency gain (ω defined by −R frequency gains other than unity to be obtained. The filter has a −20 dB/decade ...

Page 17

For minimum DC offset − , the resistor values at both inverting and non-inverting inputs should be equal, which means From Equation 1 and Equation 8, we obtain The values of C and C are normally ...

Page 18

A design example for a bandpass filter is shown below: Assume the system design requires a bandpass filter with kHz and Q = 50. What needs to be calculated are capacitor and ...

Page 19

... Figure squarewave generator with the same path for charging and discharging the capacitor. CURRENT SOURCE AND SINK The LMV321/LMV358/LMV324 can be used in feedback 10006086 loops which regulate the current in external PNP transistors to provide current sources or in external NPN transistors to provide current sinks ...

Page 20

... FIGURE 22. Power Amplifier www.national.com LED DRIVER The LMV321/LMV358/LMV324 can be used to drive an LED as shown in Figure 23. COMPARATOR WITH HYSTERESIS The LMV321/LMV358/LMV324 can be used as a low power 10006080 comparator. Figure 24 shows a comparator with hysteresis. ...

Page 21

SC70-5 Tape and Reel Specification SOT-23-5 Tape and Reel Specification TAPE FORMAT Tape Section Leader (Start End) Carrier Trailer (Hub End) TAPE DIMENSIONS # Cavities Cavity Status 0 (min) Empty 75 (min) Empty 3000 Filled 250 Filled 125 (min) Empty ...

Page 22

Tape Size DIM A DIM Ao REEL DIMENSIONS 8 mm 7.00 0.059 0.512 0.795 2.165 330.00 1.50 Tape Size A www.national.com 0.130 0.126 0.138 ±0.002 (3.3) (3.2) (3.5 ±0.05) DIM B DIM Bo DIM ...

Page 23

Physical Dimensions inches (millimeters) unless otherwise noted 5-Pin SC70 NS Package Number MAA05A 5-Pin SOT23 NS Package Number MF05A 23 www.national.com ...

Page 24

SOIC NS Package Number M08A 8-Pin MSOP NS Package Number MUA08A 24 ...

Page 25

SOIC NS Package Number M14A 14-Pin TSSOP NS Package Number MTC14 25 www.national.com ...

Page 26

... National Semiconductor and the National Semiconductor logo are registered trademarks of National Semiconductor Corporation. All other brand or product names may be trademarks or registered trademarks of their respective holders. ...

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