Rainbow Electronics MAX19999 User Manual

Page 5

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MAX19999

Dual, SiGe High-Linearity, 3000MHz to

4000MHz Downconversion Mixer with LO Buffer

_______________________________________________________________________________________

5

+3.3V SUPPLY AC ELECTRICAL CHARACTERISTICS (continued)

(

Typical Application Circuit, typical values are at V

CC

= +3.3V, P

RF

= -5dBm, P

LO

= 0dBm, f

RF

= 3550MHz, f

LO

= 3200MHz,

f

IF

= 350MHz, T

C

= +25°C, unless otherwise noted.) (Note 8)

PARAMETER

SYMBOL

CONDITIONS

MIN

TYP

MAX

UNITS

IF Output Impedance

Z

IF

Nominal differential impedance at the IC’s
IF outputs

200

IF Output Return Loss

RF terminated into 50Ω, LO driven by a 50Ω
source, IF transformed to 50Ω using
external components shown in the Typical
Application Circuit

19

dB

RF-to-IF Isolation

28

dB

LO Leakage at RF Port

-36

dBm

2LO Leakage at RF Port

-34

dBm

LO Leakage at IF Port

-27

dBm

Channel Isolation

RFM AIN ( RFD IV ) conver ted p ow er
m easur ed at IFD IV ( IFM AIN ) , r el ati ve to
IFM AIN ( IFD IV ) , al l unused p or ts ter m i nated
to 50Ω

38.5

dB

Note 5:

Not production tested.

Note 6:

Guaranteed by design and characterization.

Note 7:

Operation outside this range is possible, but with degraded performance of some parameters. See the

Typical Operating

Characteristics section.

Note 8:

All limits reflect losses of external components, including a 0.9dB loss at f

IF

= 350MHz due to the 4:1 impedance trans-

former. Output measurements were taken at IF outputs of the

Typical Application Circuit.

Note 9:

100% production tested for functional performance.

Note 10: Maximum reliable continuous input power applied to the RF or IF port of this device is +12dBm from a 50

Ω source.

Note 11: Measured with external LO source noise filtered so the noise floor is -174dBm/Hz. This specification reflects the effects of

all SNR degradations in the mixer, including the LO noise as defined in Application Note 2021:

Specifications and

Measurement of Local Oscillator Noise in Integrated Circuit Base Station Mixers.

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