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dc1984af

DEMO MANUAL DC1984A

Description

LTC5510 

1MHz to 6GHz Wideband

High Linearity Active Mixer

Demonstration circuit 1984A showcases the 

LTC

®

5510

wideband high linearity active mixer for VHF/UHF upmixer 

applications, where a 70MHz input signal is upconverted 

to the 100MHz to 1GHz output range. 

Its input port is 

optimized for 30MHz to 2.6GHz, and its output port is 

optimized for 10MHz to 1.3GHz.

 The LO input can be 

either high side or low side.
Another demonstration circuit, the DC1983A, utilizing a 

multilayer chip hybrid balun, is designed for evaluating 

the  LTC5510  for  wideband  up/downmixer  applications 

with 30MHz to 3GHz input and 1.2GHz to 2.1GHz output.

DEMO BOARD

INPUT RANGE

LO RANGE

OUTPUT RANGE

DC1983A

30MHz to 3GHz

5MHz to 6GHz

1.2GHz to 2.1GHz

DC1984A

30MHz to 2.6GHz

5MHz to 6GHz

10MHz to 1.3GHz

L

, LT, LTC, LTM, Linear Technology and the Linear logo are registered trademarks of Linear 

Technology Corporation. All other trademarks are the property of their respective owners.

performance summary

The LTC5510 is a high linearity active mixer optimized 

for  applications  requiring  very  wide  input  bandwidth, 

low  distortion  and  low  LO  leakage.  The  IC  includes  a 

double-balanced active mixer with an input buffer and a 

high speed LO amplifier. The mixer can be used for both 

up- and down-conversion and requires only 0dBm of LO 

power to achieve excellent distortion and noise perfor-

mance. The LTC5510 is optimized for 5V, but can also 

be used with a 3.3V supply with reduced performance. 

The shutdown function allows the part to be disabled for 

further power saving.

Design  files  for  this  circuit  board  are  available  at  

http://www.linear.com/demo/DC1984A

PARAMETER

CONDITIONS

VALUE

UNITS

Input Frequency Range

30 to 2600

MHz

Output Frequency Range

10 to 1300

MHz

LO Input Frequency Range

5 to 6000

MHz

LO Input Power Range

–6 to 6

dBm

Supply Voltage Range

5V Supply, R1 = Open (Default Configuration) 

3.3V Supply, R1 = 2kΩ

4.5 to 5.3 

3.1 to 3.5

V

Supply Current

5V Supply, R1 = Open (Default Configuration) 

3.3V Supply, R1 = 2kΩ

98 

90

mA 

mA

Total Supply Current During Shutdown

EN = Low

1.3

mA

EN Input High Voltage (On)

>1.8

V

EN Input Low Voltage (Off)

<0.5

V

EN Input Current

–0.3V to V

CC

 + 0.3V

–20 to 200

µA

Turn-On Time

EN: Low to High

0.6

µs

Turn-Off Time

EN: High to Low

0.6

µs

Temperature Monitor Pin (TEMP) 

DC Voltage at T

J

 = 25°C

I

IN

 = 10µA 

I

IN

 = 80µA

697 

755

mV 

mV

Temperature Monitor Pin (TEMP) 

Voltage Temperature Coefficient

I

IN

 = 10µA 

I

IN

 = 80µA

–1.80 

–1.61

mV/°C 

mV/°C

 

Specifications are at T

C

 = 25°C, V

CC

 = 5V, EN = High, P

LO

 = 0dBm, 

P

IN

 = –10dBm (–10dBm/tone for two-tone tests), unless otherwise noted. (Note 1)

Содержание LTC5510

Страница 1: ...anced active mixer with an input buffer and a high speed LO amplifier The mixer can be used for both up and down conversion and requires only 0dBm of LO power to achieve excellent distortion and noise...

Страница 2: ...otice Refer to the latest LTC5510 data sheet for the most up to date specifications Performance Summary Specifications are at TC 25 C VCC 5V EN High PLO 0dBm PIN 10dBm 10dBm tone for two tone tests un...

Страница 3: ...s shutdown reducing current consumptiontoapproximately1 3mA TheEnablevoltage shouldneverfallbelow 0 3V orexceedthepowersupply voltage by more than 0 3V Temperature Monitor TEMP The LTC5510 s junction...

Страница 4: ...ides broadband 50 termination on all ports and has good port to portisolationshouldbeused suchastheMini Circuits ZFSC 2 372 S 3 Use high performance amplifiers with high IP3 and high reverse isolation...

Страница 5: ...uation reduces sensitivity and dynamic range 8 Before taking measurements the system performance should be evaluated to ensure that a Clean input signals can be produced The two tone signals OIP3 shou...

Страница 6: ...ngs Make all connections with RF and DC power off Return Loss Measurements 1 Configure the Network Analyzer for return loss mea surement set appropriate frequency range and set the test signal to 0dBm...

Страница 7: ...MeasuretheresultingoutputontheSpectrumAnalyzer 6 Calculate output 3rd order intercept OIP3 IM3 2 POUT Where IM3 POUT PIM3 POUTisthelowestfundamental output signal power PIM3 is the highest 3rd order...

Страница 8: ...2 E3 E4 TESTPOINT TURRET 0 094 MILL MAX 2501 2 00 80 00 00 07 0 6 3 J1 J2 J3 CONN SMA 50 EDGE LAUNCH E F JOHNSON 142 0701 851 7 0 J4 CONN OPTION 8 0 L1 L2 IND 0603 OPTION 9 1 L3 IND 0603 WIRE WOUND 22...

Страница 9: ...or Customer Use Only CUSTOMER NOTICE LINEAR TECHNOLOGY HAS MADE A BEST EFFORT TO DESIGN A CIRCUIT THAT MEETS CUSTOMER SUPPLIED SPECIFICATIONS HOWEVER IT REMAINS THE CUSTOMER S RESPONSIBILITY TO VERIFY...

Страница 10: ...DING ANY WARRANTY OF MERCHANTABILITY OR FITNESS FOR ANY PARTICULAR PURPOSE EXCEPT TO THE EXTENT OF THIS INDEMNITY NEITHER PARTY SHALL BE LIABLE TO THE OTHER FOR ANY INDIRECT SPECIAL INCIDENTAL OR CONS...

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