CGB-1089Z 50Mhz to 1000MHz Single Ended InGaP/GaAs HBT MMIC CATV Amplifier
CGB-1089Z
50MHz to 1000MHz SINGLE ENDED InGaP/GaAs HBT MMIC CATV AMPLIFIER
Product Description
RFMD’s CGB-1089Z is a high performance InGaP HBT MMIC amplifier utilizing a Darlington configuration with a 75 Ω active bias network. The active bias network provides stable current over temperature and process Beta variations. Designed to run directly from a 5V supply, the CGB-1089Z does not require a dropping resistor as compared to typical Darlington amplifiers. The CGB-1089Z product is designed for high linearity 5V gain block applications that require small size and minimal external components. It is internally matched to 75 Ω.
Gain & Return Loss
Features
Flat Gain Response:16dB±0.4dB Excellent Return Loss:21dB Low Distortion:-77/-65dBc CTB/CSO Single Fixed 5V Supply Robust 1000V ESD, Class 1C
Optimum Technology Matching® Applied
18 10
Applications
CATV Network Amplifiers CATV Drop Amplifiers Optical Rx/Tx FTTH Video Solutions
GaAs HBT GaAs MESFET InGaP HBT
Gain dB
16
5
14 0 12
SiGe BiCMOS Si BiCMOS SiGe HBT GaAs pHEMT Si CMOS Si BJT GaN HEMT RF MEMS
-5
db(S11)
10
db(S22)
-10
8 -15 6 -20 4
2
-25
0 50 150 250 350 450 550 650 750 850 950
-30
Frequency MHz
Parameter
Min.
Specification Typ.
Max.
Unit
Return Loss dB
db(S21)
Condition
Small Signal Gain 14.5 16.0 17.5 dB 500MHz Output Power at 1dB Compression 16.5 18.0 dBm 500MHz Third Order Intercept Point 35.0 dBm 500MHz Second Order Intercept Point 50.0 dBm 500MHz 79Ch., Flat Tilt, 25dBmV, -65.0 dBc CSO 79Ch., Flat Tilt, 25dBmV -77.0 dBc CTB 79Ch., Flat Tilt, 25dBmV 76.0 dBc XMOD Worst Case Input Return Loss 18.0 19 dB 50MHz to 1000MHz Worst Case Output Return Loss 14 15 dB 50MHz to 1000MHz Noise Figure 3.5 4.0 dB 500MHz Reverse Isolation, 19.0 dB 50MHz to 1000MHz Thermal Resistance 48.8 °C/W junction - lead Device Operating Voltage 5.0 V Device Operating Current 68.0 80.0 92.0 mA Test Conditions: VD =5V, ID =80mA Typ., OIP3, OIP2 Tone Spacing=6MHz, POUT per tone=0dBm, TL =25°C, ZS =ZL =75 Ω, Tested will App Circuit
RF MICRO DEVICES®, RFMD®, Optimum Technology Matching®, Enabling Wireless Connectivity™, PowerStar®, POLARIS™ TOTAL RADIO™ and UltimateBlue™ are trademarks of RFMD, LLC. BLUETOOTH is a trademark owned by Bluetooth SIG, Inc., U.S.A. and licensed for use by RFMD. All other trade names, trademarks and registered trademarks are the property of their respective owners. ©2006, RF Micro Devices, Inc.
EDS-104857 Rev D
7628 Thorndike Road, Greensboro, NC 27409-9421 · For sales or technical support, contact RFMD at (+1) 336-678-5570 or sales-support@rfmd.com.
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CGB-1089Z
Absolute Maximum Ratings
Parameter
Device Current (ID) Device Voltage (VD) RF Input Power Junction Temp (TJ) Operating Temp Range (TL) Storage Temp Operating Dissipated Power ESD Rating - Human Body Model (HBM)
Rating
110 5.5 +12 +150 -40 to +85 +150 0.61 Class 1A
Unit
mA V dBm °C °C °C W
Caution! ESD sensitive device.
Exceeding any one or a combination of the Absolute Maximum Rating conditions may cause permanent damage to the device. Extended application of Absolute Maximum Rating conditions to the device may reduce device reliability. Specified typical performance or functional operation of the device under Absolute Maximum Rating conditions is not implied. RoHS status based on EUDirective2002/95/EC (at time of this document revision). The information in this publication is believed to be accurate and reliable. However, no responsibility is assumed by RF Micro Devices, Inc. ("RFMD") for its use, nor for any infringement of patents, or other rights of third parties, resulting from its use. No license is granted by implication or otherwise under any patent or patent rights of RFMD. RFMD reserves the right to change component circuitry, recommended application circuitry and specifications at any time without prior notice.
Operation of this device beyond any one of these limits may cause permanent damage. For reliable continuous operation, the device voltage and current must not exceed the maximum operating values specified in the table on page one. Bias Conditions should also satisfy the following expression: IDVD
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