参数资料
型号: MAX2690EUB+T
厂商: Maxim Integrated
文件页数: 7/10页
文件大小: 0K
描述: IC MIXER DOWNCONVERTER 10UMAX
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 2,500
RF 型: 手机,CDMA,ISM,PCS,WLAN
频率: 400MHz ~ 2.5GHz
混频器数目: 1
增益: 7.9dB
噪音数据: 12dB
次要属性: 降频变频器
电流 - 电源: 20.1mA
电源电压: 2.7 V ~ 5.5 V
包装: 带卷 (TR)
封装/外壳: 10-TFSOP,10-MSOP(0.118",3.00mm 宽)
供应商设备封装: 10-µMAX
Low-Noise, 2.5GHz
Downconverter Mixer
______________________________________________________________Pin Description
PIN
1
2
3
4
5
6
7
8
9
10
NAME
LGND
GND
RFIN
RFBYP
V CC
LO
GNDLO
IFOUT-
IFOUT+
SHDN
FUNCTION
Inductive Degeneration Pin. For maximum linearity, connect LGND directly to ground with no series induc-
tance. Trade off linearity for gain by increasing the series inductance from LGND to ground. See the
Applications Information section for more information.
RF Ground. This pin must have a separate via to the ground plane, as close to the pin as possible to
minimize inductance.
RF Input Port. RF Input of Downconverter Mixer. See the Applications Information section for details on
matching to RFIN.
RF Bypassing Capacitor Pin. Bypass RFBYP with an appropriate-value capacitor (typically 1000pF) to ground.
Supply-Voltage Input, +2.7V to +5.5V. Connect 0.1μF and 1000pF capacitors (in parallel) between V CC
and GND.
Local-Oscillator Input. LO should be AC coupled and presents a 50 ? load impedance. See the Applications
Information section for more information.
Ground for the LO Port. This pin must have its own via to the ground plane, as close as possible to the pin to
minimize inductance.
Differential IF Inverting Output. IFOUT- is an open-collector output and must be pulled up to V CC with an
external inductor for proper biasing. A resistor in parallel with the inductor may also be used to set a termi-
nating impedance. See the Typical Operating Characteristics section for a plot of IF port characteristics vs.
frequency (see plot titled Single-Ended IF Port Equivalent Shunt RC Network).
Differential IF Noninverting Output. IFOUT+ is an open-collector output and must be pulled up to V CC with
an external inductor for proper biasing. A resistor in parallel with the inductor may also be used to set a ter-
minating impedance. See the Typical Operating Characteristics section for a plot of IF port characteristics
vs. frequency (see plot titled Single-Ended IF Port Equivalent Shunt RC Network).
Active-Low Shutdown Input. A digital logic-low level at SHDN deactivates all part functions and reduces the
supply current to typically 0.4μA.
_______________Detailed Description
The MAX2690 is a 2.5GHz, double-balanced downcon-
verter mixer designed to provide optimum intermodula-
tion performance for a given supply current. It consists
of a double-balanced Gilbert-cell mixer with single-
ended RF and LO port connections, and a differential
IF port. An on-chip bias cell provides a low-power shut-
down feature.
RF Input
The RFIN and RFBYP pins form the MAX2690 ’s RF
input. The single-ended RF input signal is applied to
the RFIN pin (refer to the RF Port Impedance vs.
Frequency graph in the Typical Operating Character-
istics). The RFBYP pin should be AC grounded typically
with a 1000pF capacitor. This capacitor value should
present a low impedance at both the RF and IF
frequencies.
IF Output
The IFOUT+ and IFOUT- pins form the MAX2690’s differ-
ential open-collector IF output. The IF output is coupled to
the load using shunt inductors to V CC and series capaci-
tors to the load. Most applications use a resistive termina-
tion of 500 ? (typical) resistors in parallel with the pull-up
inductors to set a terminating impedance. The part’s con-
version gain has been specified with the resistors in place
(using the output network on the MAX2690 EV kit),
accounting for a 3dB loss due to the resistors. Therefore,
it is possible to achieve an increase in gain with a proper-
ly designed matching network. However, the resistors
provide for minimum passband ripple when this port is
connected to typical IF filters.
Bias
The bias cell includes compensation circuitry to mini-
mize conversion-gain variations over temperature as
well as shutdown control circuitry. The SHDN pin can
be used to disable all functions and reduce supply cur-
rent to typically 0.4μA.
_______________________________________________________________________________________
7
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