Mini-Circuits Datasheets for Equalizers
Equalizers are electronic devices used to balance frequency components of electronic signals.
Equalizers: Learn more
| Product Name | Notes |
|---|---|
| EQY-0-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-0-24+ is a 0 dB attenuator fabricated using highly repetitive GaAs MMIC process. EQY-0-24+ has a nominal attenuation slope of 0 dB and is packaged in a tiny 2x2 mm... | |
| EQY-0-63+ is a 0 dB attenuator fabricated using highly repetitive GaAs IPD* MMIC process. EQY-0-63+ has a nominal attenuation slope of 0 dB and is packaged in tiny 2 x... | |
| EQY-1-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-1-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-1-63+ has a nominal attenuation slope... | |
| EQY-10-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-10-24+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-10-24+ has a nominal attenuation slope of... | |
| EQY-10-453+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-10-453+ has a nominal attenuation slope of... | |
| EQY-10-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-10-63+ has a nominal attenuation slope... | |
| EQY-12-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-12-24+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-12-24+ has a nominal attenuation slope of... | |
| EQY-15-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-2-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-2-24+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-2-24+ has a nominal attenuation slope of... | |
| EQY-2-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-2-63+ has a nominal attenuation slope... | |
| EQY-3-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-3-24+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-3-24+ has a nominal attenuation slope of... | |
| EQY-3-283+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-3-283+ has a nominal attenuation slope... | |
| EQY-3-453+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-3-453+ has a nominal attenuation slope... | |
| EQY-3-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-3-63+ has a nominal attenuation slope... | |
| EQY-4-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-4-283+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-4-283+ has a nominal attenuation slope... | |
| EQY-4-453+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-4-453+ has a nominal attenuation slope of... | |
| EQY-4-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-4-63+ has a nominal attenuation slope... | |
| EQY-5-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-5-24+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-5-24+ has a nominal attenuation slope of... | |
| EQY-5-283+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-5-283+ has a nominal attenuation slope... | |
| EQY-5-453+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-5-453+ has a nominal attenuation slope of... | |
| EQY-5-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-5-63+ has a nominal attenuation slope... | |
| EQY-6-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-6-24+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-6-24+ has a nominal attenuation slope of... | |
| EQY-6-283+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-6-283+ has a nominal attenuation slope... | |
| EQY-6-453+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-6-453+ has a nominal attenuation slope of... | |
| EQY-6-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-6-63+ has a nominal attenuation slope... | |
| EQY-7-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-7-453+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-7-453+ has a nominal attenuation slope of... | |
| EQY-8-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-8-24+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-8-24+ has a nominal attenuation slope... | |
| EQY-8-453+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-8-453+ has a nominal attenuation slope of... | |
| EQY-8-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. EQY-8-63+ has a nominal attenuation slope... | |
| EQY-9-123+ is a wideband, absorptive gain slope equalizer fabricated using a highly reliable and repeatable GaAs MMIC IPD process. Operating from DC to 12 GHz, this model achieves outstanding linear... | |
| EQY-9-453+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs MMIC process incorporating resistors, capacitors, and inductors having negative insertion loss slope. EQY-9-453+ has a nominal attenuation slope of... | |
| Mini-Circuits EQY-15-24+ is a MMIC gain equalizer fabricated using highly repeatable GaAs IPD MMIC process incorporating resistors, capacitors and inductors to accomplish a positive attenuation slope vs. Frequency. EQY-15-24+ has... | |
| Mini-Circuits’ EQY-18-24+ is a MMIC Gain Equalizer fabricated using highly repeatable GaAs IPD MMIC process incorporating resistors, capacitors, and inductors to accomplish a positive Insertion Loss Slope vs. Frequency. EQY-18-24+... | |
| Mini-Circuits’ VEQY-1-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. VEQY-1-63+ has a nominal attenuation... | |
| Mini-Circuits’ VEQY-10-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. VEQY-10-63+ has a nominal attenuation... | |
| Mini-Circuits’ VEQY-2-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. VEQY-2-63+ has a nominal attenuation... | |
| Mini-Circuits’ VEQY-3-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. VEQY-3-63+ has a nominal attenuation... | |
| Mini-Circuits’ VEQY-4-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. VEQY-4-63+ has a nominal attenuation... | |
| Mini-Circuits’ VEQY-5-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. VEQY-5-63+ has a nominal attenuation... | |
| Mini-Circuits’ VEQY-6-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. VEQY-6-63+ has a nominal attenuation... | |
| Mini-Circuits’ VEQY-8-63+ is an absorptive Gain Equalizer fabricated using highly repetitive GaAs IPD* MMIC process incorporating resistors, capacitors and inductors having negative insertion loss slope. VEQY-8-63+ has a nominal attenuation... | |
| Mini-Circuits’ ZEQ-10-44K+ is a broadband, connectorized negative insertion loss slope equalizer, with a slope of 9.4 dB typ. over the range of DC to 40 GHz. The model is bi-directional... | |
| Mini-Circuits’ ZEQ-11-24K+ is a broadband, connectorized negative slope equalizer, with a slope of 10.8 dB typ. over the range of DC to 20 GHz. The model is bi-directional and offers... | |
| Mini-Circuits’ ZEQ-18-24-S+ is a broadband, connectorized slope equalizer, with a slope of 23 dB typ. over the range of 0.5 to 18 GHz. The model is bi-directional and offers excellent... | |
| Mini-Circuits’ ZEQ-2-24K+ is a broadband, connectorized negative slope equalizer, with a slope of 2.4 dB typ. over the range of DC to 20 GHz. The model is bi-directional and offers... | |
| Mini-Circuits’ ZEQ-3-44K+ is a broadband, connectorized negative insertion loss slope equalizer, with a slope of 3.1 dB typ. over the range of DC to 40 GHz. The model is bi-directional... | |
| Mini-Circuits’ ZEQ-4-24K+ is a broadband, connectorized negative slope equalizer, with a slope of 4.2dB typ. over the range of DC to 20 GHz. The model is bi-directional and offers excellent... | |
| Mini-Circuits’ ZEQ-4-44K+ is a broadband, connectorized negative insertion loss slope equalizer, with a slope of 3.6 dB typ. over the range of DC to 40 GHz. The model is bi-directional... | |
| Mini-Circuits’ ZEQ-5-24K+ is a broadband, connectorized negative slope equalizer, with a slope of 5.3 dB typ. over the range of DC to 20 GHz. The model is bi-directional and offers... | |
| Mini-Circuits’ ZEQ-5-44K+ is a broadband, connectorized negative insertion loss slope equalizer, with a slope of 4.7 dB typ. over the range of DC to 40 GHz. The model is bi-directional... | |
| Mini-Circuits’ ZEQ-6-44K+ is a broadband, connectorized negative insertion loss slope equalizer, with a slope of 6 dB typ. over the range of DC to 40 GHz. The model is bi-directional... | |
| Mini-Circuits’ ZEQ-7-24K+ is a broadband, connectorized negative slope equalizer, with a slope of 7.4 dB typ. over the range of DC to 20 GHz. The model is bi-directional and offers... | |
| Mini-Circuits’ ZEQ-7-44K+ is a broadband, connectorized negative insertion loss slope equalizer, with a slope of 6.5 dB typ. over the range of DC to 40 GHz. The model is bi-directional... | |
| Mini-Circuits’ ZEQ-8-44K+ is a broadband, connectorized negative insertion loss slope equalizer, with a slope of 7.4 dB typ. over the range of DC to 40 GHz. The model is bi-directional... | |
| Mini-Circuits’ ZEQ-9-24K+ is a broadband, connectorized negative slope equalizer, with a slope of 9.2 dB typ. over the range of DC to 20 GHz. The model is bi-directional and offers... | |
| Mini-Circuits’ ZEQ-9-44K+ is a broadband, connectorized negative insertion loss slope equalizer, with a slope of 8.4 dB typ. over the range of DC to 40 GHz. The model is bi-directional... | |
| The VAEQ-1220+ is a 50Ω Voltage Variable Equalizer built into a shielded case (size of .394”x.394”x.150”, 10 x 10 x 3.8 mm). This model offers excellent performance over a wide... | |
| The VAEQ-1220-75+ is a 75Ω Voltage Variable Equalizer built into a shielded case (size of 394”x.394”x.150”, 10 x 10 x 3.8 mm). This model offers excellent performance over a wide... | |
| The VAEQ-2150R+ is a 50Ω Voltage Variable Equalizer built into a shielded case (size of .394”x.394”x.150”). This model offers excellent performance over a wide frequency range of 950 to 2150... | |
| ZEQ-3-222N+ is a 50W coaxial slope Equalizer. This model offers excellent performance in the “L band” frequency range of 950-2150 MHz with minimal deviation in the attenuation slope. | |
| ZEQ-3-222S+ is a 50W coaxial slope Equalizer. This model offers excellent performance in the “L band” frequency range of 950-2150 MHz with minimal deviation in the attenuation slope. | |
| ZEQ-5-292-S+ is a 50W coaxial slope Equalizer. This model offers excellent performance in the “L and S band” frequency range of 1300-2900 MHz with minimal deviation in the attenuation slope. | |
| ZEQ-8-222S+ is a 50W coaxial slope Equalizer. This model offers excellent performance in the “L band” frequency range of 950-2150 MHz with minimal deviation in the attenuation slope. |