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Analog Devices LTC1062CSW#PBF — Analog & Data Acquisition

LTC1062CSW#PBF Butterworth Low-Pass Filter, 20kHz, 16-SOIC

MPNLTC1062CSW#PBF
End of Life

Analog Devices LTC1062CSW#PBF 5th-order Butterworth low-pass switched-capacitor filter, 20kHz cutoff, single/dual supply, 16-SOIC wide-body, Tube.

$11.13Ref. price · indicative, final on quote
Packaging16-SOIC (0.295", 7.50mm Width)
RoHSROHS3 Compliant
Sourced new & surplus through independent channelsAuthenticity-screened · ESD-safe packingListing updated Aug 2026

Specifications

LTC1062CSW#PBF specifications
ParameterValue
Filter typeButterworth, Low Pass Switched Capacitor
MountingSurface Mount
Voltage±8V, 5V
Frequency - cutoff or center20kHz
PackageTube
Filter order5th
Case16-SOIC (0.295\", 7.50mm Width)
Number of filters1

Product details

Analog signal-conditioning role and key parametrics

The LTC1062CSW#PBF is a 5th-order Butterworth low-pass switched-capacitor filter with a cutoff frequency of 20 kHz, designed to cleanly band-limit analog signals before an ADC or after a DAC in precision measurement chains. It operates from either a single 5V supply or dual ±8V rails, giving the system architect flexibility to match the filter's supply domain to the surrounding analog front-end without an extra regulator. The Butterworth response delivers maximally flat passband gain — no ripple — at the cost of a slower roll-off than an elliptic or Cauer design, which matters when the stopband attenuation requirement is moderate and in-band flatness is the priority.

Package and PCB integration

Supplied in Tube format, which is the preferred carrier for prototype and low-volume builds where a pick-and-place feeder is not required.

Frequently asked questions

When sourcing LTC1062CSW#PBF, what's the closest functional second-source — LTC1063CSW#PBF?

The LTC1063CSW#PBF is a 5th-order Butterworth low-pass switched-capacitor filter in the same 16-SOIC package, but its cutoff frequency is 50 kHz versus 20 kHz for the LTC1062CSW#PBF. The two are pin-compatible, so the swap is a board-level drop-in if the higher cutoff and the resulting change in stopband attenuation are acceptable for the signal chain.