Details, datasheet, quote on part number: MAX2605EVKIT
PartMAX2605EVKIT
CategoryCommunication => Wireless
DescriptionMAX2605EVKIT, MAX2606EVKIT, MAX2607EVKIT, MAX2608EVKIT, MAX2609EVKIT Evaluation Kits For The MAX2605/MAX2606/MAX2607/MAX2608/MAX2609
CompanyMaxim Integrated Products
DatasheetDownload MAX2605EVKIT datasheet
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Features, Applications

The MAX2605­MAX2609 evaluation kits (EV kits) simplify evaluation of this family of voltage-controlled oscillators (VCOs). These kits enable testing of the devices' performance and require no additional support circuitry. Both signal outputs use SMA connectors to facilitate connection to RF test equipment. These EV kits are fully assembled and tested. Their oscillation frequencies are set to approximately the midrange of the respective VCOs. o Easy Evaluation o Complete, Tunable VCO Test Board with Tank Circuit o Low Phase Noise o Fully Assembled and Tested

Features

SUPPLIER AVX Coilcraft EFJohnson Murata PHONE 847-639-6400 402-474-4800 FAX 803-626-3123 847-639-1469 WEBSITE avx-corp.com coilcraft.com murata.com

DESIGNATION QTY DESCRIPTION 1000pF ±5% ceramic capacitors (0603) Murata GRM39COH102J025A or AVX 12pF ±5% ceramic capacitors (0603) Murata ±10%, 16V tantalum capacitor AVX 270 ±5% resistor (0603) Not installed 10 ±5% resistor (0603) Not installed 680nH inductors Coilcraft 1008CS-681XJBC 1.2µH inductor Coilcraft 1206CS-122XJBC MAX2605EUT SMA connectors (edge mount) EFJohnson 142-0701-801 or Digi-Key J502-ND Test points Digi-Key MAX2605/6/7 EV kit circuit board MAX2605­MAX2609 data sheet

DESIGNATION QTY DESCRIPTION 1000pF ±5% ceramic capacitors (0603) Murata GRM39COH102J025A or AVX 4.7pF ±0.25% ceramic capacitors (0603) Murata ±10%, 16V tantalum capacitor AVX 270 ±5% resistor (0603) Not installed 10 ±5% resistor (0603) Not installed 270nH ±2% inductor Coilcraft 1008CS-271XJBC 330nH inductor Coilcraft 1008CS-331XJBC MAX2606EUT SMA connectors (edge mount) EFJohnson 142-0701-801 or Digi-Key J502-ND Test points MAX2605/6/7 EV kit circuit board MAX2605­MAX2609 data sheet

For free samples and the latest literature, visit www.maxim-ic.com or phone 1-800-998-8800. For small orders, phone 1-800-835-8769.

DESIGNATION QTY DESCRIPTION 1000pF ±5% ceramic capacitors (0603) Murata GRM39COH102J025A or AVX 3pF ±0.25% ceramic capacitors (0603) Murata ±10%, 16V tantalum capacitor AVX 270 ±5% resistor (0603) Not installed 10 ±5% resistor (0603) Not installed 68nH ±2% inductor Coilcraft 1008CS-680XJBC 120nH inductors Coilcraft 1008CS-121XJBC MAX2607EUT SMA connectors (edge mount) EFJohnson 142-0701-801 or Digi-Key J502-ND Test points MAX2605/6/7 EV kit circuit board MAX2605­MAX2609 data sheet J1, J2 VCC,GND, TUNE None

DESIGNATION QTY DESCRIPTION 1000pF ±5% ceramic capacitor (0603) Murata GRM39COH102J025A or AVX 1pF ±0.25% ceramic capacitors (0603) Murata 100pF ±5% ceramic capacitors (0603) Murata ±10%, 16V tantalum capacitor AVX 270 ±5% resistor (0603) Not installed 10 ±5% resistor 22nH ±2% inductor Coilcraft 68nH ±2% inductors Coilcraft 0805CS-680XJBC MAX2608EUT SMA connectors (edge mount) EFJohnson 142-0701-801 or Digi-Key J502-ND Test points Digi-Key MAX2608/9 EV kit circuit board MAX2605­MAX2609 data sheet

The ­ MAX2609 evaluation kits are fully assembled and factory tested. Follow the instructions in the Connections and Setup section for proper device evaluation.

­ Use a DC power supply capable of supplying to +2.4V, continuously variable, for TUNE. Alternatively, use two 1.5V batteries with a resistive voltage divider or potentiometer. An RF spectrum analyzer that covers the operating frequency range of the A 50 coaxial cable with SMA connectors An ammeter (optional)

Low-noise power supplies (these are recommended for oscillator noise measurement). Noise or ripple will frequency-modulate the oscillator and cause spectral spreading. Batteries can be used in place of power supplies, if necessary. ­ Use a DC power supply capable of supplying to +5.5V. Alternatively, use two or three 1.5V batteries.

1) Connect a DC supply (preset +3V) to the VCC and GND terminals (through an ammeter, if desired) on the EV kit. 2) Turn on the DC supply. If used, the ammeter reading

DESIGNATION QTY DESCRIPTION 1000pF ±5% ceramic capacitors (0603) Murata GRM39COH102J025A or AVX 1pF ±0.25% ceramic capacitors (0603) Murata 100pF ±5% ceramic capacitors (0603) Murata ±10%, 16V tantalum capacitor AVX 270 ±5% resistor (0603) Not installed 10 ±5% resistor 8.2nH ±2% inductor Coilcraft 27nH ±2% inductors Coilcraft 0805CS-270XJBC MAX2609EUT SMA connectors (edge mount) EFJohnson 142-0701-801 or Digi-Key J502-ND Test points Digi-Key MAX2608/9 EV kit circuit board MAX2605­MAX2609 data sheet

coupling from the supply. Also, place the VCO as far away as possible from the noisy section of a larger system, such as a switching regulator or digital circuits. The VCO's performance is strongly dependent on the availability of the external tuning inductor. For best performance, use high-Q components and choose their values carefully. To minimize the effects of parasitic elements, which degrade circuit performance, place the tuning inductor and CBYP close to the VCO. For higherfrequency versions, include the parasitic PC board inductance and capacitance when calculating the oscillation frequency. In addition, remove the ground plane around and under the tuning inductor to minimize the effect of parasitic capacitance. Noise on TUNE translates into FM noise on the outputs; therefore, keep the trace between TUNE and the control circuitry as short as possible. If necessary, use an RC filter to further suppress noise, as done on the EV kits.

approximates the typical operating current specified in the MAX2605­MAX2609 data sheet. 3) Connect the VCO output (OUT+ or OUT-) to a spectrum analyzer with a 50 coaxial cable. 4) Apply a positive variable DC voltage between 0.4V and 2.4V to TUNE. 5) Check the tuning bandwidth on the spectrum analyzer by varying the tuning voltage to +2.4V).

The EV kit PC board can serve as a guide for laying out a board using the MAX2605­MAX2609. Generally, the VCC pin on the PC board should have a decoupling capacitor placed close to the IC. This minimizes noise


 

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