LM3302N Texas Instruments, Quad Comparator, Open Collector O/P, 1.3μs 3 → 24 V 14-Pin PDIP
- RS Stock No.:
- 178-9080
- Mfr. Part No.:
- LM3302N
- Brand:
- Texas Instruments
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RS will no longer stock this product.
- RS Stock No.:
- 178-9080
- Mfr. Part No.:
- LM3302N
- Brand:
- Texas Instruments
Specifications
Technical data sheets
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
|---|---|---|
| Brand | Texas Instruments | |
| Comparator Type | General Purpose | |
| Mounting Type | Through Hole | |
| Package Type | PDIP | |
| Power Supply Type | Dual, Single | |
| Output Type | Open Collector | |
| Number of Channels per Chip | 4 | |
| Typical Response Time | 1.3µs | |
| Pin Count | 14 | |
| Typical Single Supply Voltage | 3 → 24 V | |
| Dimensions | 19.3 x 6.35 x 4.57mm | |
| Length | 19.3mm | |
| Width | 6.35mm | |
| Height | 4.57mm | |
| Maximum Operating Temperature | +85 °C | |
| Typical Voltage Gain | 89.54 dB | |
| Minimum Operating Temperature | -40 °C | |
| Typical Dual Supply Voltage | ±12 V, ±3 V, ±5 V, ±9 V | |
| Select all | ||
|---|---|---|
Brand Texas Instruments | ||
Comparator Type General Purpose | ||
Mounting Type Through Hole | ||
Package Type PDIP | ||
Power Supply Type Dual, Single | ||
Output Type Open Collector | ||
Number of Channels per Chip 4 | ||
Typical Response Time 1.3µs | ||
Pin Count 14 | ||
Typical Single Supply Voltage 3 → 24 V | ||
Dimensions 19.3 x 6.35 x 4.57mm | ||
Length 19.3mm | ||
Width 6.35mm | ||
Height 4.57mm | ||
Maximum Operating Temperature +85 °C | ||
Typical Voltage Gain 89.54 dB | ||
Minimum Operating Temperature -40 °C | ||
Typical Dual Supply Voltage ±12 V, ±3 V, ±5 V, ±9 V | ||
General Purpose Comparators
Comparators, Texas Instruments
Texas Instruments range of voltage comparators includes not only conventional single, dual and quad comparator packages but also window comparators and over- & under-voltage supervisors.
Although comparators and operational amplifiers are superficially similar devices their operation in practical applications is very different. Op amps are intended for linear operation accompanied by suitable feedback whereas comparators are tailored for rapid switching and generally operated in open-loop mode. Dedicated voltage comparators have significantly shorter propagation delays and are capable of faster response times under saturated conditions. Most comparators are also more tolerant of high differential input voltages and many have open-collector outputs allowing parallel operation with other devices.
Although comparators and operational amplifiers are superficially similar devices their operation in practical applications is very different. Op amps are intended for linear operation accompanied by suitable feedback whereas comparators are tailored for rapid switching and generally operated in open-loop mode. Dedicated voltage comparators have significantly shorter propagation delays and are capable of faster response times under saturated conditions. Most comparators are also more tolerant of high differential input voltages and many have open-collector outputs allowing parallel operation with other devices.
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