CC2530 zigbee high power module with ESD function

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CC2530 zigbee high power module with ESD function
Posting date : Oct 12, 2012
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Describe Function • RF/layout –Adapt to the 2.4-GHz IEEE 802.15.4 RF transceiver –High receiver sensitivity and robustness –Programmable output power up to 21 dBm –Only power Can communicate –16-mm × 28-mm Stamps package –Suitable for system configuration in line with the worldwide radio frequency Rate regulations: ETSI EN 300 328 and EN 300440 (Europe), FCC CFR47 Part 15 (U.S.) And ARIB STD-T-66 (Japan) • Low power consumption –Active Mode RX (CPU Idle): 27 mA –Active Mode TX 20dBm(CPU Idle):166mA –Power mode 1 (4 μs wake-up): 0.2 mA –Power mode 2(Sleep timer running): 1 μA –Power mode 3 (external interrupt): 0.4 μA –Wide supply voltage range (2 V-3.6 V) • Microcontrollers –Excellent performance and low power code prefetch function consumption of 8051 microcontroller core –32,64 -,128,256-KB system programmable flash -8-KB RAM, has number holding capacity under variety of power supply –Support for hardware debugging · Default firmware –Provide transparent serial, frame format ,Various operating parameters can be configured using the configuration tool, the user can apply do not program • Peripherals –Powerful 5-channel DMA –IEEE 802.5.4 MAC timer, general-purpose timer (A 16-bit timer, an 8-bit timer) –IR generation circuit –32-kHz sleep timer with capture functionality –Hardware support CSMA/CA –Support accurate digitization RSSI/LQI –Battery monitor and temperature sensor –7 inputs and configurable resolution 12-bit ADC –AES Security coprocessor – 2 Powerful USART supports a variety of serial communications protocol –18 general I / O pins (17 × 4 mA, 20 mA) –Watchdog Timer • Development Tool –CC2530 development kit –CC2530ZigBee®development kit –For the RF4CE CC2530 RemoTI ™ Development Kit –SmartRF™ software –Packet sniffer –Available IAR Embedded Workbench Application • 2.4-GHz IEEE 802.15.4 system • RF4CE Remote control systems (greater than 64-KB Flash) • ZigBee system(256-KB flash) • Home / building automation • lighting system • Industrial control and monitoring • Low-power wireless sensor networks • Consumer electronics • Healthcare (1)Description CC2530 is a true system-on-chip(SoC) solution for IEEE 802.15.4, ZigBee and RF4CE applications. It can be very low total cost of materials to create a strong network of nodes. The CC2530 combines the excellent performance of the leading RF transceiver, the industry-standard enhanced 8051 CPU, system programmable flash,8-KB RAM and many other powerful features.CC2530 have four different types of flash memory version:CC2530F32/64/128/256 ,Each having 32/64/128/256 KB flash。CC2530 has a different mode of operation, the system makes it especially adapted to the requirements of the ultra-low power。The conversion between the run mode in a short time,to further ensure low energy consumption.CC2530F256 combined with the gold unit of Texas Instruments, the industry-leading ZigBee protocol stack (Z-Stack ™), provides a powerful and complete ZigBee solution。CC2530F64 combinaed of Texas Instruments the gold unit RemoTI, better to provide a powerful and complete ZigBee RF4CE remote control solutions。 GB2530 is the wireless module which using CC2530 and CC2591, has a small, peripheral simple, easy to use and excellent RF performance, leads to all external ports, and the convenience of the user, eliminating the need for debugging RF as well as other aspects of the complicated work more convenient embedded into the system and shorten the development cyclefaster to seize market opportunities and cost advantages. This integrated circuit may be ESD damage. Note electrostatic protection in use or the welding process.Texas Instruments recommends that all integrated circuits have appropriate preventive measures to be addressed. Failure to observe proper handling and installation procedures can cause damage. ESD damage can range from subtle performance degradation to complete equipment failure. Precision integrated circuits may be more susceptible to damage because very small parametric changes could cause the device not to meet its published specifications.

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