ZMN2430HPA-C [MURATA]

Telecom Circuit, 1-Func, MODULE-30;
ZMN2430HPA-C
型号: ZMN2430HPA-C
厂家: muRata    muRata
描述:

Telecom Circuit, 1-Func, MODULE-30

电信 电信集成电路
文件: 总5页 (文件大小:374K)
中文:  中文翻译
下载:  下载PDF数据表文档文件
DEVELOPMENT KIT  
(Info Click here)  
ZMN2430HPA  
2.4 GHz ZigBee Transceiver Module  
Small Size, Light Weight, Built-In Antenna  
Sleep Current less than 3 µA  
High Power  
ZigBee Module  
with Chip  
FCC and ETSI Certified for Unlicensed Operation  
The ZMN2430HPA 2.4 GHz transceiver module is a low cost, high-power solution for  
point-to-point, point-to-multipoint and MESH wireless systems. The ZMN2430HPA  
module provides the flexibility and versatility to serve applications ranging from cable  
replacements to sensor networks. Based on the IEEE 802.15.4 wireless standard and  
the ZigBee protocol stack, the ZMN2400HPA module is easy to integrate, requires no  
external antenna, and provides robust wireless communications including MESH net-  
work operation. The ZMN2430HPA also includes RFM’s powerful CSM application  
profile, which eliminates the need for customer firmware programming.  
Antenna  
ZMN2430HPA Absolute Maximum Ratings  
Rating  
Value  
Units  
V
All Input/Output Pins  
-0.3 to +6.0  
-40 to +85  
Shown with Shield Removed  
Non-Operating Ambient Temperature Range  
oC  
ZMN2430HPA Electrical Characteristics  
Characteristic  
Operating Frequency Range  
Sym  
Notes  
Minimum  
Typical  
Maximum  
2475  
Units  
MHz  
kHz  
2405  
-300  
Operating Frequency Tolerance  
Spread Spectrum Method  
300  
Direct Sequence  
Modulation Type  
O-QPSK  
15  
Number of RF Channels  
RF Data Transmission Rate  
250  
kb/s  
ppm  
MHz  
dBm  
dB  
Symbol Rate Tolerance  
120  
RF Channel Spacing  
5
Receiver Sensitivity, 10E-5 BER  
Upper Adjacent Channel Rejection, +5 MHz  
Lower Adjacent Channel Rejection, -5 MHz  
Upper Alternate Channel Rejection, +10 MHz  
Lower Alternate Channel Rejection, -10 MHz  
Maximum RF Transmit Power  
Transmit Power Adjustment  
-95  
41  
30  
55  
53  
15  
dB  
dB  
dB  
14  
16  
20  
dBm  
dB  
Optimum Antenna Impedance  
50  
www.RFM.com E-mail: info@rfm.com  
©2008 by RF Monolithics, Inc.  
Page 1 of 5  
ZMN2430HPA - 5/20/08  
ZMN2430HPA Electrical Characteristics  
Characteristic  
ADC Input Range  
Sym  
Notes  
Minimum  
Typical  
Maximum  
Units  
V
0
7
3.3  
12  
ADC Input Resolution  
ADC Input Impedance  
PWM Output Resolution  
UART Baud Rate  
bits  
M  
bits  
kb/s  
55  
12  
1.2  
115.2  
Digital I/O:  
Logic Low Input Level  
Logic High Input Level  
-0.3  
2.8  
20  
0.5  
3.6  
V
V
Logic Input Internal Pull-up/Pull-down Resistor  
KΩ  
mA  
Vdc  
mVP-P  
mA  
mA  
µA  
GPIO3 Logic Low Sink Current  
Power Supply Voltage Range  
20  
+5.5  
10  
VCC  
+3.3  
Power Supply Voltage Ripple  
Receive Mode Current  
33  
Transmit Mode Current  
Sleep Mode Current  
130  
3
Operating Temperature Range  
-40  
85  
oC  
ZMN2430HPA Firmware Configurations  
ZMN2430HPA modules are shipped loaded with one of three firmware configurations: coordinator, router or end  
node. Each ZigBee network will include one, and only one coordinator. This module coordinates the overall net-  
work operation and is the host application or gateway interface point for the network. The part number designation  
for a coordinator is ZMN2430HPA-C. Router modules are capable of retransmitting messages and provide the  
mesh networking infrastructure in a ZigBee network. The part number for a router is ZMN2430HPA-R. End node  
modules provide field connection points for sensors, data loggers, PLCs, etc. The coordinator and the routers in a  
ZigBee network must stay active (awake) continuously to support network operation. End nodes can be sleep  
duty cycled where needed for extended battery life operation. The part number designationfor an end node is  
ZMN2430HPA-E. A router can provide the same field connection support as an end node, but a router cannot be  
sleep duty cycled without affecting mesh network operation. Specify the number of modules for each firmware  
configuration when ordering ZMN2430HPA modules.  
CAUTION: Electrostatic Sensitive Device. Observe precautions when handling.  
www.RFM.com E-mail: info@rfm.com  
©2008 by RF Monolithics, Inc.  
Page 2 of 5  
ZMN2430HPA - 5/20/08  
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Figure 1  
ZMN2430HPA Firmware  
ZMN2430HPA Hardware  
The major hardware component of the ZMN2430HPA is  
the CC2430 IEEE 802.15.4 compatible transceiver with  
integrated 8051 microcontroller. The ZMN2430HPA  
operates in the frequency band of 2405 to 2475 MHz at  
a nominal output power of 40 mW.  
The main firmware components in the ZMN2430HPA  
include the ZigBee protocol stack and the RFM’s CSM  
standard module application profile. The ZigBee proto-  
col stack implements networking and security, with  
underlying support from the 802.15.4 Media Access  
Control (MAC) layer. The CSM profile provides an  
application programming interface (API) for all the  
ZMN2430HPA hardware interfaces. The CSM profile  
includes Network Discovery, Send/Receive Serial Data,  
Read/Write SPI Port, Read ADC Inputs, Write DAC  
Outputs, Read/Write GPIO and Module Configuration  
services. In addition, the CSM profile provides two  
sleep modes - timer sleep and interrupt sleep. See the  
ZMN2430HP ZigBee Module Developer’s Kit User’s  
Manual for complete details of the CSM profile API.  
The ZMN2430HPA includes a low noise preamplifier in  
the receiver path and a power amplifier in the transmit-  
ter path, greatly increasing the operating range of the  
CC2430. Two crystals are provided to operate the  
CC2430, a 32 MHz crystal for normal operation and a  
32.768 kHz crystal for precision sleep mode operation.  
The ZMN2430HPA provides a variety of application  
hardware interfaces including an SPI interface, UART  
interface, three 12-bit ADC inputs, two PWM (DAC) out-  
puts, and six general purpose digital I/O ports.  
www.RFM.com E-mail: info@rfm.com  
©2008 by RF Monolithics, Inc.  
Page 3 of 5  
ZMN2430HPA - 5/20/08  
ZMN2430HPA I/O Pad Descriptions  
Pad  
1
Name  
GND  
Description  
Power supply and signal ground. Connect to the host circuit board ground.  
Reserved pin. Leave unconnected.  
2
RSVD  
3
RSVD  
Reserved pin. Leave unconnected.  
4
GPIO0  
UART_TX  
UART_RX  
GPIO4  
GPIO5  
PWMA  
GPIO2  
GPIO1  
Configurable digital I/O port 0. When configured as an output, the power-on state is also configurable.  
Serial data output from UART.  
5
6
Serial data input to UART.  
7
Configurable digital I/O port 4. When configured as an output, the power-on state is also configurable.  
Configurable digital I/O port 5. When configured as an output, the power-on state is also configurable.  
Pulse-width modulated output A with internal low-pass filter. Provides a DAC function.  
Configurable digital I/O port 2. When configured as an output, the power-on state is also configurable.  
Configurable digital I/O port 1. When configured as an output, the power-on state is also configurable.  
8
9
10  
11  
Configurable digital I/O port 3. When configured as an output, this high current port can sink up to 20 mA. The  
power-on output state is also configurable.  
12  
GPIO3  
13  
14  
15  
16  
17  
PWMB  
VCC  
Pulse-width modulated output B with internal low-pass filter. Provides a DAC function.  
Power supply input, +3.3 to +5.5 Vdc.  
GND  
Power supply and signal grounds. Connect to the host circuit board ground.  
Power supply and signal grounds. Connect to the host circuit board ground.  
Active low module hardware reset. Hold this input low when the power supply input is less than 2.7 Vdc.  
GND  
/RESET  
7-bit to 12-bit ADC input 0. ADC full scale reading can be referenced to the module’s +3.3 V regulated supply or  
to the ADC’s internal +2.5 V reference.  
18  
19  
ADCX  
ADCY  
7-bit to 12-bit ADC input 1. ADC full scale reading can be referenced to the module’s +3.3 V regulated supply or  
to the ADC’s internal +2.5 V reference.  
20  
21  
22  
23  
SPI_MISO  
SPI_MOSI  
SPI_EN  
SPI port data input.  
SPI port data output.  
Active-low enable output for SPI bus devices.  
SPI port clock signal.  
SPI_SCLK  
7-bit to 12-bit ADC input 2. ADC full scale reading can be referenced to the module’s +3.3 V regulated supply or  
to the ADC’s internal +2.5 V reference.  
24  
25  
ADCZ  
Module’s +3.3 V regulated supply, used for ratiometric ADC readings. Current drain on this output should be no  
greater than 5 mA.  
ADC REF  
26  
27  
28  
29  
30  
NC  
NC  
No connection.  
No connection.  
GND  
NC  
RF ground. Connect to the host circuit board ground plane.  
No connection.  
GND  
RF ground. Connect to the host circuit board ground plane.  
www.RFM.com E-mail: info@rfm.com  
©2008 by RF Monolithics, Inc.  
Page 4 of 5  
ZMN2430HPA - 5/20/08  
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Figure 2  
Reflow Profile  
An example solder reflow profile for mounting the radio module on its host circuit board is shown in Figure 3.  
Figure 3  
Note: Specifications subject to change without notice.  
www.RFM.com E-mail: info@rfm.com  
©2008 by RF Monolithics, Inc.  
Page 5 of 5  
ZMN2430HPA - 5/20/08  

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