Texas Instruments
TLV3701QDBVRQ1
TLV3701QDBVRQ1
Regular price
$6.86 USD
Regular price
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$6.86 USD
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TLV3701QDBVRQ1 Texas Instruments - Yeehing Electronics
Automotive Single Nanopower Push-Pull Comparator
Pricing (USD)
| Quantity | Unit Price |
| 1 — 99 | 1.233 |
| 100 — 249 | 0.948 |
| 250 — 999 | 0.698 |
| 1,000 + | 6.86 |
The above prices are for reference only.
Specifications
| Manufacturer | Texas Instruments |
| Product Category | Analog Comparators |
| RoHS | Y |
| Mounting Style | SMD/SMT |
| Package / Case | SOT-23-5 |
| Comparator Type | General Purpose |
| Number of Channels | 1 Channel |
| Output Type | Push-Pull |
| Ib - Input Bias Current | 100 pA |
| Vos - Input Offset Voltage | 5 mV |
| Supply Voltage - Max | 16 V |
| Supply Voltage - Min | 2.7 V |
| Operating Supply Current | 800 nA |
| Response Time | 36 us |
| Minimum Operating Temperature | - 40 C |
| Maximum Operating Temperature | + 125 C |
| Qualification | AEC-Q100 |
| Packaging | Reel |
| Height | 1.15 mm |
| Input Type | Rail-to-Rail |
| Length | 2.9 mm |
| Product | Analog Comparators |
| Series | TLV3701-Q1 |
| Supply Type | Single, Dual |
| Technology | CMOS |
| Type | Nano Power Comparator |
| Width | 1.6 mm |
| Brand | Texas Instruments |
| Shutdown | No Shutdown |
| CMRR - Common Mode Rejection Ratio | 88 dB |
| Compliance | AEC-Q100 |
| Dual Supply Voltage | +/- 3 V, +/- 5 V |
| GBP - Gain Bandwidth Product | - |
| Maximum Dual Supply Voltage | +/- 8 V |
| Minimum Dual Supply Voltage | 1.35 V |
| Operating Supply Voltage | 2.7 V to 16 V |
| Pd - Power Dissipation | 385 mW |
| Product Type | Analog Comparators |
| PSRR - Power Supply Rejection Ratio | 105 dB |
| Factory Pack Quantity | 3000 |
| Subcategory | Amplifier ICs |
| Vcm - Common Mode Voltage | - 0.1 V |
| Voltage Gain dB | 120 dB |
| Unit Weight | 0.000222 oz |
For more information, please refer to datasheet
Documents
| TLV3701QDBVRQ1 Datasheet |
More Information
The TLV370x is Texas Instruments first family of nanopower comparators with only 560 nA per channel supply current, which make this device ideal for low power applications.
