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LMx93-N Comparator: Circuit, Replacement and Datasheet

  • Contents

 

The LM193-N series consists of two independent precision voltage comparators with an offset voltage specification as low as 2.0 mV max for two comparators which were designed specifically to operate from a single power supply over a wide range of voltages.

 

Catalog

Product Overview

LMx93-N Pinout

LMx93-N Circuit

Datasheet

Features

Applications

Device Functional Modes

Power Supply Recommendations

Layout Example

Product Attributes

Replacement

Using Warning

 

Product Overview

The LM193-N series consists of two independent precision voltage comparators with an offset voltage specification as low as 2.0 mV max for two comparators which were designed specifically to operate from a single power supply over a wide range of voltages. Operation from split power supplies is also possible and the low power supply current drain is independent of the magnitude of the power supply voltage. These comparators also have a unique characteristic in that the input common-mode voltage range includes ground, even though operated from a single power supply voltage.

 

Application areas include limit comparators, simple analog to digital converters; pulse, squarewave and time delay generators; wide range VCO; MOS clock timers; multivibrators and high voltage digital logic gates. The LM193-N series was designed to directly interface with TTL and CMOS. When operated from both plus and minus power supplies, the LM19-N series will directly interface with MOS logic where their low power drain is a distinct advantage over standard comparators.

 

The LM393 and LM2903 parts are available in TI’s innovative thin DSBGA package with 8 (12 mil) large bumps.

 

 

LMx93-N Pinout

Figure-LMx93-N-Pinout

 

LMx93-N Pinout

 

LMx93-N Circuit

Figure-LMx93-N-Circuit

 

LMx93-N Circuit

 

Datasheet

LMx93-N Datasheet

 

Features

  • Wide Supply
    • Voltage Range: 2.0 V to 36 V
    • Single or Dual Supplies: ±1.0 V to ±18 V
  • Very Low Supply Current Drain (0.4 mA) — Independent of Supply Voltage
  • Low Input Biasing Current: 25 nA
  • Low Input Offset Current: ±5 nA
  • Maximum Offset voltage: ±3 mV
  • Input Common-Mode Voltage Range Includes Ground
  • Differential Input Voltage Range Equal to the Power Supply Voltage
  • Low Output Saturation Voltage: 250 mV at 4 mA
  • Output Voltage Compatible with TTL, DTL, ECL, MOS and CMOS logic systems
  • Available in the 8-Bump (12 mil) DSBGA Package
  • See AN-1112 (SNVA009) for DSBGA Considerations
  • Advantages
    • High Precision Comparators
    • Reduced VOS Drift Over Temperature
    • Eliminates Need for Dual Supplies
    • Allows Sensing Near Ground
    • Compatible with All Forms of Logic
    • Power Drain Suitable for Battery Operation

 

Applications

  • Battery Powered Applications
  • Industrial Applications

 

Detailed Information:

The LM193 series are high gain, wide bandwidth devices which, like most comparators, can easily oscillate if the output lead is inadvertently allowed to capacitively couple to the inputs via stray capacitance. This shows up only during the output voltage transition intervals as the comparator change states. Power supply bypassing is not required to solve this problem. Standard PC board layout is helpful as it reduces stray input-output coupling. Reducing the input resistors to < 10 kΩ reduces the feedback signal levels and finally, adding even a small amount (1.0 to 10 mV) of positive feedback (hysteresis) causes such a rapid transition that oscillations due to stray feedback are not possible.

 

Simply socketing the IC and attaching resistors to the pins will cause inputoutput oscillations during the small transition intervals unless hysteresis is used. If the input signal is a pulse waveform, with relatively fast rise and fall times, hysteresis is not required. All input pins of any unused comparators should be tied to the negative supply. The bias network of the LM193 series establishes a drain current which is independent of the magnitude of the power supply voltage over the range of from 2.0 VDC to 30 VDC. The differential input voltage may be larger than V + without damaging the deviceTypical Applications . Protection should be provided to prevent the input voltages from going negative more than −0.3 VDC (at 25°C). An input clamp diode can be used as shown in Typical Applications .

 

The output of the LM193 series is the uncommitted collector of a grounded-emitter NPN output transistor. Many collectors can be tied together to provide an output OR'ing function. An output pullup resistor can be connected to any available power supply voltage within the permitted supply voltage range and there is no restriction on this voltage due to the magnitude of the voltage which is applied to the V + terminal of the LM193 package. The output can also be used as a simple SPST switch to ground (when a pullup resistor is not used). The amount of current which the output device can sink is limited by the drive available (which is independent of V + ) and the β of this device.

 

When the maximum current limit is reached (approximately 16 mA), the output transistor will come out of saturation and the output voltage will rise very rapidly. The output saturation voltage is limited by the approximately 60 Ω rSAT of the output transistor. The low offset voltage of the output transistor (1.0 mV) allows the output to clamp essentially to ground level for small load currents.

 

Device Functional Modes

A basic comparator circuit is used for converting analog signals to a digital output. The output is HIGH when the voltage on the non-inverting (+IN) input is greater than the inverting (-IN) input. The output is LOW when the voltage on the non-inverting (+IN) input is less than the inverting (-IN) input. The inverting input (-IN) is also commonly referred to as the "reference" or "VREF" input. All pins of any unused comparators should be tied to the negative supply.

 

Power Supply Recommendations

Even in low frequency applications, the LM139-N can have internal transients which are extremely quick. For this reason, bypassing the power supply with 1.0 μF to ground will provide improved performance; the supply bypass capacitor should be placed as close as possible to the supply pin and have a solid connection to ground. The bypass capacitor should have a low ESR and also a SRF greater than 50MHz.

 

Layout Example

Figure-LM393-N-Layout-Example

 

LM393-N-Layout-Example

Product Attributes

Manufacturer Part Number: LM393NSIIB
Part Life Cycle Code: Obsolete
Ihs Manufacturer: PHILIPS SEMICONDUCTORS
Package Description: DIP, DIP8,.3
ECCN Code: EAR99
HTS Code: 8542.39.00.01
Manufacturer: Philips Semiconductors
Risk Rank: 5.92
Amplifier Type: COMPARATOR
Input Offset Voltage-Max: 9000 µV
JESD-30 Code: R-PDIP-T8
JESD-609 Code: e0
Number of Functions: 2
Number of Terminals: 8
Operating Temperature-Max: 70 °C
Package Body Material: PLASTIC/EPOXY
Package Code: DIP
Package Equivalence Code: DIP8,.3
Package Shape: RECTANGULAR
Package Style: IN-LINE
Power Supplies: 5 V
Subcategory: Comparators
Supply Voltage-Nom (Vsup): 5 V
Technology: BIPOLAR
Temperature Grade: COMMERCIAL
Terminal Finish: Tin/Lead (Sn/Pb)
Terminal Form: THROUGH-HOLE
Terminal Pitch: 2.54 mm
Terminal Position: DUAL

Replacement

Replacement Part Number Repl. Mfr Description Reference Type
BA10393 Cross Reference Rohm Dual Comparators Compatible Equivalent
CA3290E Cross Reference Harris Info source: STMicroelectronics web-site Pin-to-Pin Replacement
KIA393P Cross Reference KEC DUAL COMPARATOR Compatible Equivalent
LM393N Cross Reference National Semiconductor Low Power Low Offset Voltage Dual Comparators Compatible Equivalent
LM393P Cross Reference Texas Instruments DUAL DIFFERENTIAL COMPARATORS Pin-to-Pin Replacement
UPC393C Cross Reference NEC Info source: STMicroelectronics web-site Pin-to-Pin Replacement

Using Warning

Note: Please check their parameters and pin configuration before replacing them in your circuit. 

 

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