UPC1678GV
UPC1678GV is 2 GHz MEDIUM POWER BROADBAND SILICON MMIC AMPLIFIER manufactured by NEC.
DESCRIPTION
The µPC1678G is a silicon monolithic integrated circuit designed as medium output power amplifier for high frequency system applications. Due to +17.5 d Bm TYP. output at 2 GHz, this IC is remendable for transmitter stage amplifier of L BAND wireless munication systems. This IC is packaged in 8-pin plastic SOP. This IC is manufactured using NEC’s 20 GHz f T NESAT™IV silicon bipolar process. This process uses silicon nitride passivation film and gold electrodes. These materials can protect chip surface from external pollution and prevent corrosion/migration. Thus, this IC has excellent performance, uniformity and reliability.
FEATURES
- Supply voltage
- Saturated output power
- Wideband response
- Power gain
- Isolation : VCC = 4.5 to 5.5 V : PO(sat) = +17.5 d Bm TYP. @ f = 500 MHz with external inductor : fu = 2.0 GHz TYP. @ 3 d B bandwidth : GP = 23 d B TYP. @ f = 500 MHz : ISL = 35 d B TYP. @ f = 500 MHz
APPLICATIONS
- PA driver for high frequency system.
ORDERING INFORMATION
Part Number Package Marking Supplying Form
µPC1678G µPC1678G -E1
8-pin plastic SOP (225 mil)
Plastic magazine case Embossed tape 12 mm wide. 1 pin is tape pull-out direction. Qty 2.5 kp/reel. Embossed tape 12 mm wide. 1 pin is tape roll-in direction. Qty 2.5 kp/reel.
µPC1678G -E2
Remark
To order evaluation samples, please contact your local NEC sales office. (Part number for sample order: µPC1678G)
Caution Electro-static sensitive devices
The information in this document is subject to change without notice. Before using this document, please confirm that this is the latest version.
Not all devices/types available in every country. Please check with local NEC representative for availability and additional information.
Document No. P11491EJ4V0DS00 (4th edition) Date Published September 1999 N CP(K) Printed in Japan
The mark shows major revised points.
©
1996, 1999
µPC1678G
PIN CONNECTIONS
Pin No.
(Top Veiw)
Pin Name INPUT GND GND GND OUTPUT GND GND VCC
1 2 3 4 8...