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 Wideband Multifunction Reception System GaAs MMIC Completely Covers GPS and CDMA
CXG1100TN CXG1115ER
The gpsOne system is seen as a revolutionary technology for the next generation of position information services. The gpsOne system uses information from GPS satellites and the CDMA network to complement each other and acquire reliable positioning information. (See figure 1.) A position information service that uses gpsOne cellular phones is scheduled to start service this fall in Japan. Sony has now developed a chip set that responds to the needs of this market. The CXG1100TN is a wideband DPDT switch, and the CXG1115ER is a dual-mode front-end IC. These devices adopt Sony's unique JFET process and mounting technologies to achieve high functionality and miniaturization.
CXG1100TN
s s s s s s s Switching can be controlled from CMOS lines Wide bandwidth, low insertion loss, and low distortion Provided in an ultraminiature package
CXG1115ER
Dual band support Circuit area reduced by the adoption of 2x frequency multiplier technology High gain, low noise, low distortion Provided in an ultraminiature package
CXG1100TN DPDT Switch
Switching Can Be Controlled from CMOS Lines
The CXG1100TN is a DPDT*1 antenna switch MMIC. While conventional single band systems use a SPDT* 2 switch, the CXG1100TN supports dualband systems with DPDT operation. In this device, Sony integrated logic circuits on the same chip by using Sony's unique GaAs JFET E/D hybrid process. This device can be directly controlled from CMOS control lines.
for switching between two bands in the quasi-microwave band. Furthermore, it achieves a low insertion loss and low distortion by adopting a Sony JFET process that features single positive supply voltage operation. (See table 1.)
mixer block, the CXG1115ER is able to share a single LO circuit between two systems. This reduces the circuit area, and in addition to reducing costs, allows a smaller package to be used providing greater liberty in PWB mounting design.
CXG1115ER Low-Noise Amplifier/Mixer
The CXG1115ER is a gpsOne lownoise amplifier and downconversion mixer IC that uses Sony's GaAs JFET process.
High Gain, Low Noise, Low Distortion
One feature of the CXG1115ER is that it achieves a good balance between high gain, low noise, and low distortion. (See figure 3.) Additionally, it also provides a medium-gain mode to further improve distortion characteristics and a low power mode to conserve power. Applications can easily obtain desired characteristics by controlling the control switching inputs.
Wide Bandwidth, Low Insertion Loss, and Low Distortion
Since the CXG1100TN covers the wide bandwidth of up to 3 GHz, it is optimal
Dual Band Support
The CXG1115ER receiver IC provides a bypass switch in the CDMA system low-noise amplifier block, can switch gain appropriately for strong, medium, and weak electric field reception conditions, and furthermore provides a lowcurrent mode for standby operation. It consists of two circuit systems, one for the 850 MHz band CDMA system and one for the 1575 MHz band GPS system, and fully supports both CDMA and GPS by providing a control switch.
Provided in Ultraminiature Packages
The CXG1100TN is provided in a 10pin TSSOP (3.2 x 2.8 mm) package, and the CXG1115ER is provided in a 24pin VQFN (4.0 x 4.0 mm) package. These ultraminiature packages allow the mounting area to be reduced significantly.
*1 DPDT: Dual Pole Dual Throw *2 SPDT: Singlel Pole Dual Throw
V
O
I
C
E
Our duty as chip designers is to provide the market with ICs with distinctive features and high performance in a timely manner and at a low price. The chip set introduced here is a product that meets all of these conditions, and we are sure that our customers will find it more than satisfactory.
Circuit Area Reduced by the Adoption of 2x Frequency Multiplier Technology
By doubling the frequency of the LO input signal from the LO input (740 MHz) to 1480 MHz in the GPS system
Dual-band antenna
TX block
IF block
GPS statellite
CXG1100TN Dplx
CDMA RX
x2
GPS RX
CXG1115ER
Ext.
CDMA base station
IF block
s Figure 1 Next-Generation Global Positioning Information Service
s Figure 2 CXG1100TN/CXG1115ER Application Circuit
CDMA LNA Representative Characteristics 1
Power Gain and Noise Figure vs. RF Frequency 16 15 14 13 12 11 10 9 8 7 6 800 820 840 860 880 fRF - RF frequency [MHz] 0 900 NF 2 1 3 Gp 5
CDMA Mixer Representative Characteristics 1
Conversion Gain and Noise Figure vs. RF Frequency 13 15 fLO = fRF - 110 MHz 12 14 LOin = -10 dBm 11 13 Gc 10 12 11 10 9 8 7 6 5 800 820 840 860 880 fRF - RF frequency [MHz] NF 9 8 7 6 5 4 3 900 20
GPS LNA Representative Characteristics
Power Gain and Noise Figure vs. RF Frequency 5 19
GPS Mixer Representative Characteristics
Conversion Gain and Noise Figure vs. RF Frequency 13 11
Gc - Conversion gain [dB]
Gc - Conversion gain [dB]
Gc - Conversion gain [dB]
10 9 8 7 6 5 4 3 2
NF - Noise figure [dB]
NF - Noise figure [dB]
NF - Noise figure [dB]
17 16 15 14 13 12 11
Gp
10 9 8 7 NF fLO = 1/2 x (fRF - 110 MHz) LOin = -10 dBm 6 5 4
3 2 1
NF
10 0 1525 1545 1565 1585 1605 1625 fRF - RF frequency [MHz]
3 1 1525 1545 1565 1585 1605 1625 fRF - RF frequency [MHz]
CDMA LNA Representative Characteristics 2
Output Power and IM3 vs. Input Power 20 10 0 Pout
CDMA Mixer Representative Characteristics 2
Output Power and IM3 vs. Input Power 20 10 0 Pout
s Table 1
CXG1100TN Representative Electrical Characteristics
(Ta Symbol Condition 900 MHz 1.58 GHz 900 MHz 1.58 GHz 50 *1 *1 *2 Typ. 0.35 0.46 22 17.2 1.2 -75 -75 60 25C) Unit dB dB dB dB -- dBc dBc dBm
POUT - RF output power [dBm]
-10 -20 -30 -40 -50 -60 -70 -80 -40 IM3 fRF1 = 850 MHz fRF2 = 850.9 MHz
POUT - RF output power [dBm]
-10 -20 -30 -40 -50 -60 -70 -80 -40 fRF1 = 850 MHz fRF2 = 850.9 MHz fLO = 740 MHz LOin = -10 dBm -30 -20 -10 0 Pin - RF input power [dBm] 10 IM3
Insertion loss Isolation VSWR Harmonics Input IP3
IL ISO. VSWR 2fo 3fo IIP3
-30 -20 -10 0 Pin - RF input power [dBm]
10
*1: Pin = 24 dBm, 0/3 V control, VDD = 3.0 V, 900 MHz *2: Pin = 24 dBm (900 MHz) + 24 dBm (901 MHz),
0/3 V control, VDD = 3.0 V
s Figure 3 CXG1115ER Representative Characteristics
NF - Noise figure [dB]
Gp - Power gain [dB]
4
18
4
Gc
12 11


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