LT1013DD Texas Instruments, Op Amp, 5 → 28 V, 8-Pin SOIC
- RS Stock No.:
- 661-0616
- Mfr. Part No.:
- LT1013DD
- Brand:
- Texas Instruments
Currently unavailable
We don't know if this item will be back in stock, RS intend to remove it from our range soon.
- RS Stock No.:
- 661-0616
- Mfr. Part No.:
- LT1013DD
- Brand:
- Texas Instruments
Specifications
Technical Reference
Legislation and Compliance
Product Details
Find similar products by selecting one or more attributes.
Select all | Attribute | Value |
---|---|---|
Brand | Texas Instruments | |
Mounting Type | Surface Mount | |
Package Type | SOIC | |
Power Supply Type | Dual, Single | |
Number of Channels per Chip | 2 | |
Pin Count | 8 | |
Typical Single Supply Voltage | 5 → 28 V | |
Typical Dual Supply Voltage | ±12 V, ±15 V, ±18 V, ±3 V, ±5 V, ±9 V | |
Typical Slew Rate | 0.4V/µs | |
Minimum Operating Temperature | 0 °C | |
Maximum Operating Temperature | +70 °C | |
Rail to Rail | No | |
Typical Voltage Gain | 120 dB | |
Height | 1.58mm | |
Typical Input Voltage Noise Density | 24nV/√Hz | |
Dimensions | 4.9 x 3.91 x 1.58mm | |
Length | 4.9mm | |
Width | 3.91mm | |
Select all | ||
---|---|---|
Brand Texas Instruments | ||
Mounting Type Surface Mount | ||
Package Type SOIC | ||
Power Supply Type Dual, Single | ||
Number of Channels per Chip 2 | ||
Pin Count 8 | ||
Typical Single Supply Voltage 5 → 28 V | ||
Typical Dual Supply Voltage ±12 V, ±15 V, ±18 V, ±3 V, ±5 V, ±9 V | ||
Typical Slew Rate 0.4V/µs | ||
Minimum Operating Temperature 0 °C | ||
Maximum Operating Temperature +70 °C | ||
Rail to Rail No | ||
Typical Voltage Gain 120 dB | ||
Height 1.58mm | ||
Typical Input Voltage Noise Density 24nV/√Hz | ||
Dimensions 4.9 x 3.91 x 1.58mm | ||
Length 4.9mm | ||
Width 3.91mm | ||
Precision Operational Amplifiers, Texas Instruments
A range of precision operational amplifiers from Texas Instruments featuring low input offset voltage and low offset voltage drift with temperature. These devices exhibit stable and predictable operating characteristics which are essential in many demanding applications. CMOS and JFET input types also have extremely low input bias currents making them ideal for use in circuits where high values of resistance are required.
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