The N626PA module is mainly for Internet of things, intelligent home, wireless meter reading, scientific research and medical treatment, and medium and long-distance wireless communication equipment. N626PA module leads most pins out of CC1354P10 for secondary development. N626PA (CC1354P10) is suitable for free frequency band in EU and USA.
N626PA Module Master Chip introduce
The CC1354P10 device is a multi protocol, multi band Sub-1GHz and 2.4GHz wireless microcontroller (MCU) that supports Thread Zigbee, Low power Bluetooth 5.3 IEEE 802.15.4g, Intelligent objects supporting IPv6 (6LoWPAN), mioty, Wi SUN, Amazon Sidewalk, proprietary systems (including TI 15.4 Stack for Sub-1GHz and 2.4GHz), and concurrent multi protocol implemented through Dynamic Multi Protocol Manager (DMM) drivers. This device is optimized for low-power wireless communication, with advanced security features and on-chip wireless (OAD) update functionality. It is used in building security systems HVAC, Long distance reliable communication can be achieved in the markets of smart meters, medical devices, wired networks, portable electronic products, home theaters and entertainment, as well as networked peripherals. The outstanding features of this device include:
Support secure key storage, device ID, and trusted functionality based on Arm TrustZone.
Multi band devices that support concurrent multi protocols for Sub-1GHz and 2.4GHz through DMM drivers.
The SimpleLink LOWPOWER F2 software development kit (SDK) provides very flexible protocol stack support.
With a low standby current of 0.98 µ A (fully SRAM maintained), it extends the battery life for wireless applications.
Supports industrial temperature, with a minimum standby current of 5 µ A at 85 ⁰ C.
Advanced sensing is achieved through a programmable, autonomous ultra-low power sensor controller CPU with fast wake up function. For example, the sensor controller can perform 1Hz ADC sampling when the system current is 1 µ A.
Low Soft Error Rate (SER) Time Base Fault (FIT) can extend the operating life without causing interference to the industrial market. The SRAM parity check function is always on to prevent damage caused by potential radiation events.
The software controlled dedicated radio controller (Arm Cortex-M0) provides flexible low-power RF transceiver functionality, supporting multiple physical layers and RF standards.
RF Interface | Parameter |
Frequency | 868MHz, 915MHz, 2.4ghz |
Output Power | +27dBm at 868M/915M, +22dBm at 2400M; |
Sensitivity | -112dBm at 50kbps in 868M/915M, -102dBm at 250kbps in 2400M; |
Symbol Rate | 0.3-4000kbps |
Deviation | +/-10kHz |
Distance | 8000m at SUB G; 500m at 2.4G. |
Hardware parameters | Value |
Size | 41 x 30 x 3mm |
Antenna Interface | Sub G IPEX and stamp hole optional 2.4 G IPEX and PCB antenna optional |
Communication Interface | UART, SPI |
Package | SMD |
Electrical Parameters | Typical |
Volt | 3.3V |
Emission Current | 500mA |
Receiving Current | 10mA |
Sleep current | 1uA |
Working Temperature | -30℃--75℃ |
IO | TX | RX | SLEEP |
DIO30 | 1 | 1 | 0 |
DIO29 | 0 | 1 | 0 |
DIO30 | 1 | 0 | 0 |
IO | TX | RX | SLEEP |
DIO5 | 1 | 0 | 0 |
DIO6 | 0 | 1 | 0 |
DIO7 | 1 | 1 | 0 |
Pin Number | Function | Describe |
1 | RF | |
2 | GND | |
3 | NC | |
4 | NC | |
5 | NC | |
6 | NC | |
7 | NC | |
8 | NC | |
9 | NC | |
10 | DIO8 | MCU IO port |
11 | DIO9 | MCU IO port |
12 | DIO10 | MCU IO port |
13 | DIO11 | MCU IO port |
14 | DIO12 | MCU IO port |
15 | DIO13 | MCU IO port |
16 | DIO14 | MCU IO port |
17 | VCCPA | VCCPA |
18 | VCC | VCC |
19 | GND | GND |
20 | RESET | RESET |
21 | DIO15 | MCU IO port |
22 | TMS | TMS |
23 | TCK | TCK |
24 | DIO16 | MCU IO port |
25 | DIO17 | MCU IO port |
26 | DIO18 | MCU IO port |
27 | DIO19 | MCU IO port |
28 | DIO20 | MCU IO port |
29 | DIO21 | MCU IO port |
30 | DIO22 | MCU IO port |
31 | DIO23 | MCU IO port |
32 | DIO24 | MCU IO port |
33 | DIO25 | MCU IO port |
34 | DIO26 | MCU IO port |
35 | DIO27 | MCU IO port |
36 | GND | MCU IO port |
770M band: 770 MHz to 780 MHz (China)
868M band: 868 MHz to 870 MHz (China, EU, USA), 888 MHz to 889 MHz (Australia)
915M band: 902 MHz to 928 MHz (USA)
2400M band: 2400MHz to 2500 MHz
Ordering information
N626PA-CC1354P10-868M CC1354P10 CC1190 860-880MHz +27dBm, CC2592 2400MHz +22dBm
N626PA-CC1354P10-915M CC1354P10 CC1190 910-930MHz +27dBm, CC2592 2400MHz +22dBm
Download
1. N626PA cc1354 Module uart and DEBUG port circult
1) N626PA module UART port
DIO13-->TXD; DIO12<--RXD;
2) N626PA module debug port
connect N626PA to XDS110
XDS110 connector | N626PA debug connector |
3V3 | VDD_EB |
GND | GND |
NRST | nRESET |
TMS | JTAG_TMS |
TCK | JTAG_TCK |
2. N626PA CC1310 Dongle RF test
step 1:
connect N626PA to XDS110
step 2:
1) Open smart RF studio 7,
2) Open CC1354P10 interface,
Then you can proceed with RF testing.
3. N626PA CC1354P10 module UART test
step 1:
Download the fireware to N626PA cc1354P10 Module
step 2:
Connrct UART to USB device, eg: CP2102 board.
step 3:
send the data from putty to VCP port, then can receive the same data from N626PA from Module.