MAX2410 MAXIM [Maxim Integrated Products], MAX2410 Datasheet
MAX2410
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MAX2410 Summary of contents
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... It operates over a wide frequency range and is optimized for RF frequencies around 1.9GHz. Applications include most popular cordless and PCS standards. The MAX2410 contains a low-noise amplifier (LNA), a downconverter mixer, a local-oscillator (LO) buffer, an upconverter mixer, and a variable-gain power-amplifier (PA) driver in a low-cost, plastic surface-mount package. ...
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... GC Input Bias Current GC = 3V, TXEN = 2V Supply Current, Receive Mode RXEN = 2V Supply Current, Transmit Mode TXEN = 2V Supply Current, Standby Mode RXEN = 2V, TXEN = 2V Supply Current, Shutdown Mode V AC ELECTRICAL CHARACTERISTICS (MAX2410 EV kit 3.0V 2.15V, RXEN = TXEN = low 1.9GHz -32dBm LNAIN PADRIN environment +25° ...
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... AC ELECTRICAL CHARACTERISTICS (continued) (MAX2410 EV kit 3.0V 2.15V, RXEN = TXEN = low 1.9GHz -32dBm LNAIN PADRIN environment +25°C, unless otherwise noted.) A PARAMETER TRANSMIT MIXER (TXEN = high) Conversion Gain (Note 1) Output IP3 Output 1dB Compression Point LO Leakage Noise Figure IFIN Frequency ...
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... Low-Cost RF Up/Downconverter with LNA and PA Driver __________________________________________Typical Operating Characteristics (MAX2410 EV kit 3.0V 2.15V, RXEN = TXEN = low 1.9GHz -32dBm LNAIN PADRIN environment +25°C, unless otherwise noted. All impedance measurements made directly to pin (no matching network).) A TRANSMIT-MODE SUPPLY CURRENT vs. TEMPERATURE 38 TXEN = V ...
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... Operating Characteristics (continued) (MAX2410 EV kit 3.0V 2.15V, RXEN = TXEN = low 1.9GHz -32dBm LNAIN PADRIN environment +25°C, unless otherwise noted. All impedance measurements made directly to pin (no matching network).) A LNA NOISE FIGURE vs. FREQUENCY 5.0 RXEN = V CC 4.5 4.0 3.5 3.0 2.5 2.0 1.5 1.0 0.5 0 100 480 860 1240 ...
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... Low-Cost RF Up/Downconverter with LNA and PA Driver _____________________________Typical Operating Characteristics (continued) (MAX2410 EV kit 3.0V 2.15V, RXEN = TXEN = low 1.9GHz -32dBm LNAIN PADRIN environment +25°C, unless otherwise noted. All impedance measurements made directly to pin (no matching network).) A PA DRIVER NOISE FIGURE vs ...
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... Operating Characteristics (continued) (MAX2410 EV kit 3.0V 1.9GHz -32dBm, P LNAIN PADRIN environment +25°C, unless otherwise noted. All impedance measurements made directly to pin (no matching network).) A IF INPUT IMPEDANCE vs. FREQUENCY MAX2410-28 500 0 TXEN = V CC 400 -300 IMAGINARY 300 -600 200 -900 ...
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Low-Cost RF Up/Downconverter with LNA and PA Driver ______________________________________________________________Pin Description PIN NAME 12, 14, 18, 20, GND Ground. Connect to PC board ground plane with minimal inductance. 23 Input to the LNA. AC couple to ...
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... CC 1000pF 18nH 220pF PA DRIVER OUTPUT _______________Detailed Description The MAX2410 consists of five major components: a transmit mixer, a variable-gain power-amplifier (PA) driver, a low-noise amplifier (LNA), a receive mixer, and power-management section. The following sections describe each block in the MAX2410 Functional Diagram . _______________________________________________________________________________________ Low-Cost RF Up/Downconverter with LNA and PA Driver ...
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... IF imped- ance. Alternatively, a resistor can be placed in parallel with the pull-up inductor to set a terminating impedance. The MAX2411A, a similar part to the MAX2410, has the same functionality as the MAX2410 but offers a differ- ential, bidirectional (transmit and receive) IF port. This allows sharing of TX and RX IF filters, which for some applications provides a lower cost, smaller solution ...
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... V tor which provides a low impedance at the RF frequen interest. The central V decoupling capacitor as well, to provide good isolation between the different sections of the MAX2410. The MAX2410 EV kit layout can be used as a guide to inte- grating the MAX2410 into your design. RF BPF MATCH ...
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Low-Cost RF Up/Downconverter with LNA and PA Driver ________________________________________________________Package Information 12 ______________________________________________________________________________________ ...