DIRECT QUADRATURE. HMC1097LP4E Datasheet

HMC1097LP4E QUADRATURE. Datasheet pdf. Equivalent

Part HMC1097LP4E
Description WIDEBAND DIRECT QUADRATURE
Feature v03.0812 11 Typical Applications The HMC1097LP4E is Ideal for: • UMTS, GSM or CDMA Basestations • .
Manufacture Analog Devices
Datasheet
Download HMC1097LP4E Datasheet



HMC1097LP4E
v03.0812
11
Typical Applications
The HMC1097LP4E is Ideal for:
• UMTS, GSM or CDMA Basestations
• Fixed Wireless or WLL
• ISM Transceivers, 900 & 2400 MHz
• GMSK, QPSK, QAM, SSB Modulators
• Cellular/3G and WiMAX/4G
Functional Diagram
HMC1097LP4E
WIDEBAND DIRECT QUADRATURE
MODULATOR, 100 - 6000 MHz
Features
Very Low Noise Floor, -160 dBm/Hz
Excellent Carrier & Sideband Suppression
Very High Linearity, +30 dBm OIP3
High Output Power, +11 dBm Output P1dB
High Modulation Accuracy
24 Lead 4x4 mm QFN Package: 16 mm2
General Description
The HMC1097LP4E is a low noise, high linearity Direct
Quadrature Modulator RFIC which is ideal for digital
modulation applications from 0.1 to 6.0 GHz including;
Cellular/3G, WiMAX/4G, Broadband Wireless Access
& ISM circuits. Housed in a compact 4x4 mm (LP4)
SMT QFN package, the RFIC requires minimal external
components & provides a low cost alternative to more
complicated double upconversion architectures. The
RF output port is single-ended and matched to 50
Ohms with no external components. The LO requires
-6 to +6 dBm and can be driven in either differential or
single-ended mode. This device is optimized for a +5V
supply, and offers improved carrier feedthrough and
sideband suppression characteristics.
Electrical Specifications, See Test Conditions on following page herein.
Parameter
Frequency Range, RF
Output Power
Conversion Voltage Gain
Output P1dB
Output Noise Floor
Output IP3
Carrier Feedthrough
(uncalibrated)
Sideband Suppression
(uncalibrated)
LO Port Return Loss
RF Port Return Loss
Typ.
450-960
1.5
-4.7
+11
-162
+29
-40
40
4
12
Typ.
1700-2200
2.7
-3.5
+11
-160
+31
-39
46
6
14
Typ.
2200-2700
2.7
-3.5
+10.5
-159
+29
-36
48
6
15
Typ.
3400-4000
0
-6.2
+10
-159
+22
-29
32
6
16
Typ.
5000-6000
-5.2
-11.4
+5.3
-156
+17
-33
29
6
16
Units
MHz
dBm
dB
dBm
dBm/Hz
dBm
dBm
dBc
dB
dB
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HMC1097LP4E
v03.0812
HMC1097LP4E
WIDEBAND DIRECT QUADRATURE
MODULATOR, 100 - 6000 MHz
Electrical Specifications, (continued)
Parameter
RF Output
RF Frequency Range
RF Return Loss
LO Input
LO Frequency Range
LO Input Power
LO Port Return Loss
Baseband Input Port
Baseband Input DC Voltage (Vbbdc)
Baseband Input DC Bias Current (Ibbdc)
Single-ended Baseband Input Capacitance
DC Power Supply
Supply Voltage (Vcc1, Vcc2)
Supply Current (Icc1 + Icc2) EN Low
Supply Current (Icc1 + Icc2) EN High
Enable/Disable Interface
EN High Level
EN Low Level
Enable/Disable Settling Time
LO Leakage Isolation
Conditions
Single-ended.
De-embed to the lead of the device.
Device disabled
Device enabled
EN=5V, LO=2.1GHz, 0dBm
Min.
Typ.
Max. Units
100
15
6000
MHz
dB
100
-6
0
6
6000
+6
MHz
dBm
dB
+0.45 (+0.4-+0.5)
V
110
pA
4.5
pF
+4.75
+5.0
170
8
+5.25
V
mA
mA
2.2
5
0
400/400
-57.1
V
1.5
V
ns
dBm
Test Conditions: Unless Otherwise Specified, the Following Test Conditions Were Used
Parameter
Condition
Temperature
+25 °C
Baseband Input Frequency
200 kHz
Baseband Input DC Voltage (Vbbdc)
+0.45V
Baseband Input AC Voltage
(Peak to Peak Differential, I and Q)
1.3V
Baseband Input AC Voltage for OIP3 Measurements (Peak to Peak Differential, I and Q)
650 mV per tone @ 3.5 & 4.5 MHz
Baseband Input AC Voltage for Noise Floor Measurements (Peak to Peak Differential, I and Q)
no baseband input voltage
Frequency Offset for Output Noise Measurements
20 MHz
Supply (Vcc1, Vcc2)
+5.0V
LO Input Power
0 dBm
LO Input Mode
Single-Ended through LON
Mounting Configuration
Refer to HMC1097LP4E Application Schematic
Herein
Sideband & Carrier Feedthrough
Calibrated vs. Uncalibrated Test Results
Uncalibrated
During the Uncalibrated Sideband and Carrier Suppression tests, care is taken to ensure that the I/Q signal paths
from the Vector Signal Generator (VSG) to the Device Under Test (DUT) are equal. The “Uncalibrated” Sideband and
Carrier Suppression plots were measured at T= -40 °C, +25 °C, and +85 °C.
The “Calibrated” Sideband Suppression data was plotted after a manual adjustment of the I/Q amplitude balance and
I/Q phase offset (skew) at +25 °C, 5V Vcc, 0 dBm LO input power level. The +25 °C adjustment settings were held
constant during tests over temperature.
The “Calibrated” Carrier Suppression data was plotted after a manual adjustment of the IP/IN & QP/QN DC offsets
at +25 °C, 5V Vcc, 0 dBm LO input power level. The +25 °C adjustment settings were held constant during tests over
temperature.
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