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HMC686LP4E
+BOMIC MMIC MIXER BICMOS 24-QFN
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제조업체아날로그 디바이스(주)
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제조업체 부품 #HMC686LP4E
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데이터시트 HMC686LP4E DataSheet
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재고14508
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사양
| 속성 | 가치 |
| Part Status | Obsolete |
| RF Type | LTE, WiMax |
| Frequency | 700MHz ~ 1.5GHz |
| Number of Mixers | 1 |
| Noise Figure | 7.5dB |
| Secondary Attributes | Down Converter |
| Current - Supply | 105mA |
| Voltage - Supply | 4.75V ~ 5.25V |
| Mounting Type | Surface Mount |
| Package / Case | 24-VFQFN Exposed Pad |
| Supplier Device Package | 24-QFN (4x4) |
| Base Product Number | HMC686 |
개요
Description
Key features of the HMC686LP4E include a low noise figure of approximately 1.5 dB, a gain of around 22 dB, and an output power of +18 dBm at 1 dB compression. It operates with a single supply voltage typically around 5V, and it incorporates on-chip matching, making it easier to integrate into various circuit designs. The device comes in a compact 4 x 4 mm leadless QFN package, which is useful for space-constrained applications. Its robust performance across a broad frequency range makes it versatile for use in diverse wireless infrastructure and test equipment.
Equivalent
Features
1. Frequency Range: It operates over a wide frequency range from 700 MHz to 1000 MHz.
2. Conversion Gain: Offers a typical conversion gain of 9 dB, enhancing signal strength.
3. Image Rejection: Provides excellent image rejection of 26 dB, contributing to signal clarity.
4. LO to RF Isolation: Offers good local oscillator (LO) to radio frequency (RF) isolation at 30 dB, reducing signal leakage.
5. Noise Figure: The device has a low noise figure of 2 dB, which is beneficial for maintaining signal integrity.
6. Input IP3: Exhibits an input third-order intercept point of +25 dBm, indicating good linearity and distortion handling.
7. Package: Comes in a compact 4x4 mm SMT package, easing integration into designs.
These features make the HMC686LP4E suitable for high-performance wireless communication systems and other RF applications requiring efficient downconversion.
Pinout
Key features of the HMC686LP4E include low insertion loss, high isolation between ports, and fast switching speed, making it suitable for demanding RF applications. The switch is controlled via a CMOS/TTL compatible control interface, which determines the routing of the input signal to one of the two output paths.
For precise pin details, such as control pins and RF input/output pins, referring to the device's datasheet is essential, as it contains the pin configuration and functional descriptions.