参数资料
型号: MAX9996EVKIT
厂商: Maxim Integrated
文件页数: 2/8页
文件大小: 0K
描述: EVAL KIT FOR MAX9996
产品培训模块: Lead (SnPb) Finish for COTS
Obsolescence Mitigation Program
标准包装: 1
类型: 混频器
频率: 1.7GHz ~ 2.2GHz
适用于相关产品: MAX9996
已供物品:
MAX9996 Evaluation Kit
Component List (continued)
? One RF power meter (HP 437B)
DESIGNATION
R2
R3
R4
T1
TP1
TP2
TP3
QTY
1
1
1
1
1
1
1
DESCRIPTION
549 ? ±1% resistor (0603)
Any
7.15 ? ±1% resistor (1206)
Digi-Key 311-7.15FCT-ND
47k ? ± 5% resistor (0603)
4:1 transformer (200:50)
Mini Circuits TC4-1W-7A
Large test point for 0.062in PC board
(red)
Mouser 151-107 or equivalent
Large test point for 0.062in PC board
(black)
Mouser 151-103 or equivalent
Large test point for 0.062in PC board
(white)
Mouser 151-101 or equivalent
Active mixer IC (5mm x 5mm, 20-pin
QFN, EP)
Maxim MAX9996ETP
? One power sensor (HP 8482A)
Connections and Setup
This section provides a step-by-step guide to testing
the basic functionality of the EV kit. As a general pre-
caution to prevent damaging the outputs by driving
high-VSWR loads, do not turn on DC power or RF
signal generators until all connections are made.
This procedure is specific to operation in the US PCS
band (reverse channel: 1850MHz to 1910MHz), high-side
injected LO for a 200MHz IF. Choose the test frequency
based on the particular system’s frequency plan, and
adjust the following procedure accordingly. See Figure 1
for the mixer test setup diagram:
1) Calibrate the power meter for 1900MHz. For safety
margin, use a power sensor rated to at least
+20dBm, or use padding to protect the power head
as necessary.
2) Connect 3dB pads to the DUT ends of each of the
three RF signal generators ’ SMA cables. This
padding improves VSWR and reduces the errors
due to mismatch.
3) Use the power meter to set the RF signal generators
according to the following:
U1
1
NOTE: U1 HAS AN EXPOSED
PADDLE CONDUCTOR THAT
REQUIRES IT TO BE SOLDER
ATTACHED TO A GROUNDED PAD
ON THE CIRCUIT BOARD TO
?
?
RF signal source: -5dBm into DUT at
1900MHz (this will be approximately -2dBm
before the 3dB pad).
LO1 signal source: 0dBm into DUT at
ENSURE A PROPER
ELECTRICAL/THERMAL DESIGN.
Quick Start
The MAX9996 EV kit is fully assembled and factory test-
?
2100MHz (this will be approximately 3dBm
before the 3dB pad).
LO2 signal source: 0dBm into DUT at
2099MHz (this will be approximately 3dBm
before the 3dB pad).
ed. Follow the instructions in the Connections and
Setup section for proper device evaluation.
Test Equipment Required
This section lists the recommended test equipment to
verify the operation of the MAX9996. It is intended as a
guide only, and substitutions may be possible:
? One DC supply capable of delivering +5.0V and
300mA
? Three RF signal generators capable of delivering
10dBm of output power in the 1GHz to 3GHz fre-
quency range (i.e., HP 8648)
? One RF spectrum analyzer with a minimum 100kHz
to 3GHz frequency range (HP 8561E)
4) Disable the signal generator outputs.
5) Connect the RF source (with pad) to RFIN.
6) Connect the LO1 and LO2 signal sources to the EV
kit’s LO1 and LO2 inputs, respectively.
7) Measure loss in 3dB pad and cable that will be con-
nected to IFOUT. Losses are frequency dependent,
so test this at 200MHz (the IF frequency). Use this
loss as an offset in all output power/gain calculations.
8) Connect this 3dB pad to the EV kit’s IFOUT connec-
tor and connect a cable from the pad to the spec-
trum analyzer.
2
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