lt5578 MOSA electronics corp., lt5578 Datasheet

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lt5578

Manufacturer Part Number
lt5578
Description
0.4ghz To 2.7ghz High Linearity Upconverting Mixer
Manufacturer
MOSA electronics corp.
Datasheet

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FEATURES
APPLICATIONS
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TYPICAL APPLICATION
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140MHz
IF
High Output IP3: 27dBm at 0.9GHz
Low Noise Floor: –158dBm/Hz (P
High Conversion Gain: 1.4dB at 0.9GHz
Noise Figure: 8.6dB
Low LO-RF Leakage: –43dBm
Single-Ended RF and LO Ports
Low LO Drive Level: –1dBm
Single 3.3V Supply
5mm × 5mm QFN24 Package
(Pin Compatible with LT5579)
GSM 900PCS/1800PCS and W-CDMA Infrastructure
LTE and WiMAX Basestations
Wireless Repeaters
Public Safety Radios
TC4-1W+
4:1
220pF
220pF
Frequency Upconversion in LTE Transmitter
13.7Ω
13.7Ω
24.3dBm at 1.95GHz
100nH
100nH
39pF
IF
IF
LT5578
+
BIAS
2.7pF
LO
6.8pF
OUT
10μF
LO INPUT
–1dBm
= –5dBm)
V
CC
100μF
GND
RF
5579 TA01a
1nF
2pF
22nH
V
3.3V
CC
DESCRIPTION
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.
The LT
mixer optimized for frequencies in the 0.4GHz to 2.7GHz
range. The single-ended LO input and RF output ports
simplify board layout and reduce system cost. The mixer
needs only –1dBm of LO power and the balanced design
results in low LO signal leakage to the RF output. At
1.95GHz operation, the LT5578 provides conversion gain
of –0.7dB, high OIP3 of 24.3dBm and a low noise fl oor of
–158dBm/Hz at a –5dBm RF output signal level.
The LT5578 offers a high performance alternative to pas-
sive mixers. Unlike passive mixers, which have conversion
loss and require high LO drive levels, the LT5578 delivers
conversion gain at signifi cantly lower LO input levels and
is less sensitive to LO power level variations. The lower
LO drive level requirements, combined with the excellent
LO leakage performance, translate into lower LO signal
contamination of the output signal.
2.7pF
13nH
®
5578 mixer is a high performance upconverting
TO 950MHz
700MHz
RF
Upconverting Mixer
0.4GHz to 2.7GHz
30
25
20
15
10
5
0
650
High Linearity
700
Gain, NF and OIP3 vs
RF Output Frequency
RF OUTPUT FREQUENCY (MHz)
750
800
SSB NF
GAIN
OIP3
850
LT5578
900
T
f
f
IF
LO
A
= 25°C
= 140MHz
= f
950 1000
RF
5578 TA01b
– f
1
IF
5578f

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lt5578 Summary of contents

Page 1

... The LT5578 offers a high performance alternative to pas- sive mixers. Unlike passive mixers, which have conversion loss and require high LO drive levels, the LT5578 delivers conversion gain at signifi cantly lower LO input levels and is less sensitive to LO power level variations. The lower ...

Page 2

... ORDER INFORMATION LEAD FREE FINISH TAPE AND REEL LT5578IUH#PBF LT5578IUH#TRPBF Consult LTC Marketing for parts specifi ed with wider operating temperature ranges. Consult LTC Marketing for information on non-standard lead based fi nish parts. For more information on lead free part marking, go to: For more information on tape and reel specifi ...

Page 3

... 1950MHz 240MHz RF IF Note 3: The LT5578 is guaranteed functional over the operating temperature range from –40°C to 85°C. Note 4: SSB noise fi gure measurements performed with a small-signal noise source and bandpass fi lter on LO signal generator. No other IF signal applied. LT5578 ...

Page 4

... LT5578 TYPICAL DC PERFORMANCE CHARACTERISTICS TYPICAL AC PERFORMANCE CHARACTERISTICS V = 3.3V 25° 140MHz output measured at 900MHz, unless otherwise noted. (Test circuit shown in Figure 1) Gain Distribution at 900MHz 90° 25° –45° 1.5 –0.5 0 0.5 1.0 2.0 2.5 3.0 GAIN (dB) 5578 G02 4 Supply Current vs Supply Voltage ...

Page 5

... RF Output Power (1-Tone) 0 –20 –40 –60 –80 –100 2 6 –12 –10 –8 –6 –4 – OUTPUT POWER (dBm) LT5578 740MHz Application: = –1dBm, LO LO-RF Leakage vs RF Output Frequency 0 –10 –20 –30 –40 85°C 85°C –50 25°C 25°C –40°C –40°C – ...

Page 6

... LT5578 TYPICAL AC PERFORMANCE CHARACTERISTICS V = 3.3V 25° 140MHz output measured at 900MHz, unless otherwise noted. (Test circuit shown in Figure 1) Conversion Gain and OIP3 vs RF Output Frequency 16 OIP3 12 8 85°C 25°C –40°C 4 GAIN 0 –4 830 870 890 910 930 950 970 ...

Page 7

... IM2 Level vs RF Output Power (1-Tone) 0 –20 –40 –60 –80 –100 4 –14 –12 –10 –8 –6 –4 – OUTPUT POWER (dBm) LT5578 1950MHz Application: = –1dBm, LO LO-RF Leakage vs RF Output Frequency 0 –10 –20 –30 –40 85°C –50 25°C –40°C –60 2000 2100 ...

Page 8

... LT5578 PIN FUNCTIONS GND (Pins 1, 2, 5-7, 12-14, 16-21, 23, 24): Ground Connections. These pins are internally connected to the exposed pad and should be soldered to a low impedance RF ground on the printed circuit board. + – (Pins 3, 4): Differential IF Input. The common mode voltage on these pins is set internally to 565mV. The DC current from each pin is determined by the value of an external resistor to ground ...

Page 9

... AT224-1 – 1.9mm 2.3mm 1.3mm 6.8pF 0Ω 0402 LT5578 OUTPUT L3 TL3 C14 5578 F01 COMMENTS AVX AVX AVX AVX AVX Taiyo Yuden LMK107BJ105MA ...

Page 10

... Internal baluns are used to provide single-ended LO input and RF output ports. The IF input is differential. The LT5578 is intended for opera- tion in the 0.4GHz to 2.7GHz frequency range, though operation outside this range is possible with reduced performance ...

Page 11

... LO input for use in such cases. Table 3. Single-Ended LO Input Impedance (at Pin 22, No External Match) FREQUENCY (MHz) 300 600 900 1200 1500 1800 2100 2400 2700 3000 LT5578 EXTERNAL MATCHING C13 C12 V BIAS 5578 F04 Figure 4. LO Input Circuit 0 SEE FIGURES 1 AND 8 FOR COMPONENT VALUES – ...

Page 12

... Figure 7 illustrates the output return loss performance for several applications. The component values and ap- proximate matching bandwidths are listed in Table 5. DC and RF Grounding The LT5578 relies on the back side ground for both RF and thermal performance. The Exposed Pad must be soldered to the low impedance topside ground plane of LT5578 ...

Page 13

... These circuits were evaluated using the board layout shown in Figure 12. 450MHz Application In this case, the LT5578 was evaluated for an application with an IF input at 70MHz output of 450MHz and a high side LO. The LO port is tuned for high side LO in- jection at 520MHz. The matching networks for the three ports are shown in Figure 8 ...

Page 14

... 2600 2700 Figure 11. Return Loss Comparison: 740MHz (a), 5578 F09 900MHz (b) and 700MHz to 950MHz (c) Figure 12. LT5578 Evaluation Board (DC1545A) 0 –5 –10 c –15 – –25 600 700 800 900 1000 1100 FREQUENCY (MHz) ...

Page 15

... UH Package 24-Lead Plastic QFN (5mm × 5mm) (Reference LTC DWG # 05-08-1747 Rev A) 0.75 0.05 PACKAGE OUTLINE 0.30 0.05 0.65 BSC R = 0.05 TYP 0.75 0.05 0.00 – 0.05 3.25 REF 0.200 REF LT5578 PIN 1 NOTCH R = 0.30 TYP BOTTOM VIEW—EXPOSED PAD OR 0.35 45 CHAMFER R = 0.150 TYP 23 24 0.55 0. 3.20 0.10 3 ...

Page 16

... LT5578 RELATED PARTS PART NUMBER DESCRIPTION Infrastructure LT5514 Ultralow Distortion, IF Amplifi er/ADC Driver with Digitally Controlled Gain LT5517 40MHz to 900MHz Quadrature Demodulator LT5518 1.5GHz to 2.4GHz High Linearity Direct Quadrature Modulator LT5519 0.7GHz to 1.4GHz High Linearity Upconverting Mixer LT5520 1.3GHz to 2.3GHz High Linearity Upconverting ...

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