Philips Semiconductors

Product specification

 

 

MMIC wideband medium power amplifier

BGA6489

 

 

CHARACTERISTICS

VS = 8 V; IS = 74 mA; Tamb = 25 °C; IP3(out) tone spacing = 1 MHz; PL = 0 dBm per tone (see Fig.2); R1 = 39 Ω; ZL = ZS = 50 Ω; unless otherwise specified.

SYMBOL

PARAMETER

CONDITIONS

TYP.

UNIT

 

 

 

 

 

s212

insertion power gain

f = 850 MHz

20

dB

 

 

f = 1.95 GHz

16

dB

 

 

 

 

 

 

 

f = 2.5 GHz

15

dB

 

 

 

 

 

RL IN

return losses input

f = 850 MHz

14

dB

 

 

f = 1.95 GHz

16

dB

 

 

 

 

 

 

 

f = 2.5 GHz

19

dB

 

 

 

 

 

RL OUT

return losses output

f = 850 MHz

16

dB

 

 

f = 1.95 GHz

12

dB

 

 

 

 

 

 

 

f = 2.5 GHz

10

dB

 

 

 

 

 

NF

noise figure

f = 850 MHz

3.1

dB

 

 

 

 

 

 

 

f = 1.95 GHz

3.3

dB

 

 

 

 

 

 

 

f = 2.5 GHz

3.4

dB

 

 

 

 

 

K

stability factor

f = 850 MHz

1.2

 

 

 

 

 

 

 

f = 2.5 GHz

1.3

 

 

 

 

 

PL 1 dB

load power

at 1 dB gain compression; f = 850 MHz

20

dBm

 

 

at 1 dB gain compression; f = 1.95 GHz

17

dBm

 

 

 

 

 

IP3(in)

input intercept point

f = 850 MHz

13

dBm

 

 

f = 2.5 GHz

12

dBm

 

 

 

 

 

IP3(out)

output intercept point

f = 850 MHz

33

dBm

 

 

f = 2.5 GHz

27

dBm

 

 

 

 

 

2003 Sep 18

4

Page 4
Image 4
Philips BGA6489 manual Characteristics

BGA6489 specifications

The Philips BGA6489 is a highly sophisticated flat panel display controller that has garnered significant attention for its impressive blend of performance, efficiency, and advanced technology. Designed primarily for the automotive and industrial markets, the BGA6489 supports a wide range of display applications, making it a versatile solution for numerous use cases.

One of the key features of the BGA6489 is its ability to handle high-resolution displays, supporting resolutions up to 1920x1080 pixels, which allows for exceptionally clear and crisp image quality. This makes it ideal for applications necessitating detailed graphics, such as dashboard displays in vehicles or high-definition control panels in industrial settings.

The BGA6489 also boasts advanced graphics capabilities, thanks to its powerful built-in graphics processing unit (GPU). This GPU enables real-time rendering of complex visuals and enhances the overall user experience by supporting smooth animations and transitions. The device is designed to process multiple layers of graphics simultaneously, allowing for intricate user interfaces without compromising performance.

In terms of connectivity, the BGA6489 is equipped with multiple interfaces, including LVDS (Low-Voltage Differential Signaling) and MIPI (Mobile Industry Processor Interface), ensuring compatibility with a variety of display technologies. This flexibility allows designers to integrate the BGA6489 into existing systems with ease, reducing development time and costs.

Another essential characteristic of the BGA6489 is its power efficiency. With a focus on reducing energy consumption, the device employs advanced techniques to minimize power usage without sacrificing performance. This aspect is especially beneficial in automotive applications, where optimizing power efficiency can lead to longer battery life and reduced emissions.

The BGA6489 also incorporates several features aimed at enhancing reliability and durability. It is built to withstand harsh environmental conditions, including extreme temperatures and vibrations, which are common in automotive and industrial settings. This robustness is critical for ensuring long-term performance and reducing potential downtime.

In conclusion, the Philips BGA6489 is a cutting-edge display controller that combines high-resolution support, advanced graphics capabilities, versatile connectivity options, and power efficiency. Its robust design makes it well-suited for demanding automotive and industrial applications, offering a reliable solution for modern display needs. As technology continues to evolve, devices like the BGA6489 will play an integral role in shaping the future of display innovations.