TLV333IDCKR


YeeHing #: Y001-TLV333IDCKR
Inventory: 6000

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Description

TLV333IDCKR Texas Instruments - Yeehing Electronics

Single, 350-kHz, low-noise, RRIO, CMOS operational amplifier for cost-sensitive systems

Pricing (USD)

Quantity Unit Price
1 — 99 1.171
100 — 249 0.901
250 — 999 0.663
1,000 + 0.33

The above prices are for reference only.

Specifications

Manufacturer Texas Instruments
Product Category Operational Amplifiers - Op Amps
RoHS Y
Mounting Style SMD/SMT
Package / Case SC70-5
Supply Voltage - Max 5.5 V
Output Current per Channel 5 mA
Number of Channels 1 Channel
GBP - Gain Bandwidth Product 350 kHz
SR - Slew Rate 0.16 V/us
CMRR - Common Mode Rejection Ratio 106 dB to 130 dB
Ib - Input Bias Current 70 pA
Vos - Input Offset Voltage 0.015 mV
Supply Voltage - Min 1.8 V
Operating Supply Current 17 uA
Minimum Operating Temperature - 40 C
Maximum Operating Temperature + 125 C
Shutdown No Shutdown
Series TLV333
Packaging Reel
Amplifier Type CMOS
Features Cost Optimized, EMI Hardened, Zero Drift, Small Size
Input Type Rail-to-Rail
Output Type Rail-to-Rail
Product Operational Amplifiers
Brand Texas Instruments
en - Input Voltage Noise Density 55 nV/sqrt Hz
In - Input Noise Current Density 100 fA/sqrt Hz
Ios - Input Offset Current 140 pA
Product Type Op Amps - Operational Amplifiers
Factory Pack Quantity 3000
Subcategory Amplifier ICs
Vcm - Common Mode Voltage 1.7 V to 5.6 V
Unit Weight 0.000705 oz

For more information, please refer to datasheet

Documents

TLV333IDCKR Datasheet

More Information

The TLVx333 series of CMOS operational amplifiers offer precision performance at a very competitive price. These devices are members of the zero-drift family of amplifiers that uses a proprietary auto-calibration technique to simultaneously provide low offset voltage (15 µV, max) and near-zero drift over time and temperature at only 28 µA (max) of quiescent current. The TLVx333 family features rail-to-rail input and output in addition to near-flat 1/f noise, making this amplifier ideal for many applications and much easier to design into a system. These devices are optimized for low-voltage operation as low as 1.8 V (±0.9 V) and up to 5.5 V (±2.75 V).

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