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Butterworth switched-capacitor filter w/ 50:1 clock to cutoff frequency 8-SOIC -40 to 85
Tip: Data for a part may vary between manufacturers. You can filter for manufacturers on the top of the page next to the part image and part number.
TLC04IDR by Texas Instruments is an Active Filter.
Active Filters are under the broader part category of Filters.
A filter is an electronic circuit that selectively allows certain frequencies to pass while attenuating others. They are used to extract desired signals and remove noise. Read more about Filters on our Filters part category page.
Part # | Manufacturer | Description | Datasheet |
---|---|---|---|
TLC04IDR | Texas Instruments | Butterworth Switched-Capacitor Filter 8-SOIC -40 to 85 |
Part # | Distributor | Description | Stock | Price | Buy | |
---|---|---|---|---|---|---|
DISTI #
296-TLC04IDRCT-ND
|
DigiKey | IC FILTER 30KHZ BUTTER 8SOIC Min Qty: 1 Lead time: 12 Weeks Container: Cut Tape (CT), Digi-Reel®, Tape & Reel (TR) | Temporarily Out of Stock |
|
$2.1870 / $3.9600 | Buy Now |
DISTI #
595-TLC04IDR
|
Mouser Electronics | Active Filters Butterworth Switched Capacitor Filter A 595-TLC04ID RoHS: Compliant | 0 |
|
$2.1800 | Order Now |
|
Rochester Electronics | TLC04 Butterworth Switched-Capacitor Filter RoHS: Compliant Status: Active Min Qty: 1 | 8 |
|
$1.6900 / $2.1100 | Buy Now |
|
Vyrian | Active Filters | 8 |
|
RFQ |
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TLC04IDR
Texas Instruments
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Datasheet
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TLC04IDR
Texas Instruments
Butterworth switched-capacitor filter w/ 50:1 clock to cutoff frequency 8-SOIC -40 to 85
|
Pbfree Code | Yes | |
Rohs Code | Yes | |
Part Life Cycle Code | Active | |
Ihs Manufacturer | TEXAS INSTRUMENTS INC | |
Part Package Code | SOIC | |
Pin Count | 8 | |
Reach Compliance Code | compliant | |
ECCN Code | EAR99 | |
HTS Code | 8542.39.00.01 | |
Samacsys Manufacturer | Texas Instruments | |
Active Filter Type | SWITCHED CAPACITOR FILTER | |
Center or Cutoff Freq Rng-Max | 40 kHz | |
Center or Cutoff Freq Rng-Min | 0.0001 kHz | |
JESD-30 Code | R-PDSO-G8 | |
JESD-609 Code | e4 | |
Length | 4.9 mm | |
Moisture Sensitivity Level | 1 | |
Neg Supply Voltage-Max (Vsup) | -6 V | |
Neg Supply Voltage-Min (Vsup) | -2.25 V | |
Neg Supply Voltage-Nom (Vsup) | -5 V | |
Number of Functions | 1 | |
Number of Terminals | 8 | |
Operating Temperature-Max | 85 °C | |
Operating Temperature-Min | -40 °C | |
Order | 4TH | |
Package Body Material | PLASTIC/EPOXY | |
Package Code | SOP | |
Package Equivalence Code | SOP8,.25 | |
Package Shape | RECTANGULAR | |
Package Style | SMALL OUTLINE | |
Peak Reflow Temperature (Cel) | 260 | |
Poles and Zeros | 4 AND 0 | |
Qualification Status | Not Qualified | |
Response | LOWPASS | |
Seated Height-Max | 1.75 mm | |
Supply Current-Max (Isup) | 3 mA | |
Supply Voltage-Max (Vsup) | 6 V | |
Supply Voltage-Min (Vsup) | 2.25 V | |
Supply Voltage-Nom (Vsup) | 5 V | |
Surface Mount | YES | |
Technology | CMOS | |
Temperature Grade | INDUSTRIAL | |
Terminal Finish | Nickel/Palladium/Gold (Ni/Pd/Au) | |
Terminal Form | GULL WING | |
Terminal Pitch | 1.27 mm | |
Terminal Position | DUAL | |
Time@Peak Reflow Temperature-Max (s) | 30 | |
Transfer Characteristics | BUTTERWORTH | |
Width | 3.9 mm |
The TLC04IDR can operate from -40°C to 125°C, but the recommended operating temperature range is -40°C to 85°C for optimal performance.
To prevent damage, handle the TLC04IDR by the body and avoid touching the pins. Store the device in an anti-static bag or wrap it in anti-static material to prevent electrostatic discharge (ESD) damage.
The recommended power-on sequence is to apply VCC first, followed by the input signals. This ensures that the internal circuitry is properly initialized and prevents unwanted output states.
Yes, the TLC04IDR can operate at high frequencies up to 100 MHz. However, it's essential to consider the device's propagation delay, rise and fall times, and output loading to ensure proper operation.
To reduce power consumption, consider using a lower supply voltage (VCC), reducing the clock frequency, and minimizing the output loading. You can also use the TLC04IDR's shutdown mode to reduce power consumption when the device is not in use.