DATASHEET
SM200 Module
Copyright 2008-2018 Synapse Wireless, All Rights Reserved. All Synapse products are patent pending.
Synapse , the Synapse logo, SNAP, and Portal are all registered trademarks of Synapse Wireless, Inc.
Doc# 116-041507-001-H000
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CONTENTS
1
Modules Overview
1
2 Specifications
3
3 Module Pin Definitions
5
4 Electrical Characteristics
9
5 Mechanical Drawings
11
6 Antenna Gain Performance
15
7 Board Mounting Considerations
19
8 Packaging
23
9 Agency Certifications
25
i
ii
CHAPTER
ONE
MODULES OVERVIEW
The SNAP Engine Model SM200 series includes the SM200P81 and SM200PU1 part numbers. They are IEEE
802.15.4, low-power, highly reliable solutions to embedded wireless control and monitoring network needs
that require high data rates. The Model SM200 embeds Synapse’s SNAP OS, the industry’s first Internetenabled, wireless mesh network operating system into the Atmel ATmega128RFA1 single-chip AVR® microcontroller with an integrated transceiver that delivers up to 2Mbits/sec. These low-cost modules can have
current consumption as low as 0.37 µA to enable a new generation of battery-driven systems.
SNAP’s on-board Python interpreter provides for rapid application development and over-the-air programming, while Atmel’s low-power RF single-chip design saves board space and lowers the overall Bill of Materials and power consumption. The Model SM200 modules are approved as an FCC Part 15 unlicensed
modular transmitters, as well as having CE Certification and IC Certification. The modules provide up to 16
channels of operation in the ISM 2.4GHz frequency band.
By default, the SNAP operating system automatically forms a mesh network with other nodes immediately
on receiving power. No further configuration is necessary. Multiple unrelated SNAP networks can exist
within the same area through several configuration options outlined in the SNAP User Guide.
Datasheet covers Part Numbers SM200P81 and SM200PU1:
• 34 GPIO with up to 7 A/D inputs
• 128k flash, 58.5k free for over-the-air uploaded user apps
• Two UART ports for control or transparent data
• Low power modes:
– 0.37 µA with external interrupt
– 1.37 µA with internal timer running
• Spread Spectrum (DSSS) technology
• Up to 2 Mbps radio data rate
• 2.4 GHz RF Frequency
• AES 128-bit encryption
• Integrated chip antenna or U.FL connecter
• Surface Mount, Solder-able
• 4K internal EEPROM
• 8 PWM outputs
The SM200 is also available with a U.FL connector. Contact Synapse for details.
1
SM200 Module Datasheet
Note: If your 200 series device shipped from the factory with version 2.4.34 of the SNAP firmware, it now
supports over-the-air firmware upgrades. This process is further defined in the Portal User Guide.
2
Chapter 1. Modules Overview
CHAPTER
TWO
SPECIFICATIONS
Table 2.1: SM200 Specifications at 25° C and 3.3V unless otherwise noted
Performance
Power Requirements
General
Networking
Available I/O
Outdoor LOS Range
Up to 1500/2500 feet at 250Kbps
Transmit Power Output
3 dBm
RF Data Rate
Receiver Sensitivity
250Kbps, 500Kbps, 1Mbps,
2Mbps
-100 dBm (1% PER, 250Kbps)
Supply Voltage
2.0 - 3.6 V
Transmit Current (Typ@3.3V)
22.5 mA
Idle/Receive Current (Typ@3.3V)
20.5 mA
Power-down Current (Typ@3.3V)
0.37 µA
Frequency
ISM 2.4 GHz
Spreading Method
Direct Sequence (DSSS)
Modulation
O-QPSK
Dimensions
29.8mm x 19mm
Operating Temperature
-40 to 85 deg C.
Antenna Options
Topology
Integrated Chip Antenna / External Antenna
SNAP
Error Handling
Retries and acknowledgement
Number of Channels
16
UARTS with HW Flow Control
2 Ports
GPIO
34 total; 7 can be analog-in with
10bit ADC
Continued on next page
3
SM200 Module Datasheet
Agency Approvals
Table 1 – continued from previous page
FCC Part 15.247
FCC ID: U9O-SM200
Industry Canada (IC)
IC: 7084A-SM200
CE Certified
Certified to EN300 328 Version
2.1.1
You must preserve access to UART1 as a serial connection in order to be able to update firmware on the
node, or to recover the node by forced script removal or parameter reset.
4
Chapter 2. Specifications
CHAPTER
THREE
MODULE PIN DEFINITIONS
For pin locations, consult the SM200 Mechanical drawing later in this document.
Table 3.1: SM200PF1/PU1 Pin Assignments
SM200 Pin
SNAPpy IO
Pin Name
Pin Description
A1
GND
Power Supply
A2
VCC
Power Supply
A3
VCC
Power Supply
A4
24
PF0_ADC0
IO or Analog0
A5
26
PF2_ADC2_DIG2
A6
28
PF4_ADC4_TCK
A7
30
PF6_ADC6_TDO
IO or Analog2 or SPI
CLK
IO or Analog4 or JTAG
Test Clock
IO or Analog6 or JTAG
Test Data Out or I2C
SDA
Power Supply
A8
GND
B1
18
PE2_XCK0_AIN0
B2
19
PE3_OC3A_AIN1
B3
21
PE5_OC3C_INT5
B4
25
PF1_ADC1
B5
33
PG1_DIG1
B6
29
PF5_ADC5_TMS
B7
31
PF7_ADC7_TDI
IO or software SPI1
MISO or Analog Comparator or External
Clock
IO or Analog Comparator or PWM or Output
Compare Match
IO or UART0 RTS Input
or PWM or Interrupt
IO or Analog1 or software SPI MOSI
IO
IO or Analog5 or JTAG
Test Mode Select
IO or Analog7 or JTAG
Test Data In or software
I2C
SCL on next page
Continued
5
SM200 Module Datasheet
SM200 Pin
Table 1 – continued from previous page
SNAPpy IO Pin Name
Pin Description
B8
6
GND
Power Supply
IO or UART0 Data In or
Interrupt
IO or UART0 Data Out
C1
16
PE0_RXD0_PCINT8
C2
17
PE1_TXD0
C3
20
PE4_OC3B_INT4
C4
22
PE6_T3_INT6
C5
23
PE7_ICP3_INT7_CLK 0
C6
27
PF3_ADC3_DIG4
IO or UART0 CTS Output
or PWM or Interrupt
IO or Interrupt
IO or UART1 RTS input or
Clock Output Buffer or
Interrupt
IO or ADC channel 3
C7
NC
C8
GND
Power Supply
D1
5
PB5_OC1A_PCINT5
IO or PWM or Interrupt
D2
6
PB6_OC1B_PCINT6
IO or PWM or Interrupt
D3
7
IO or PWM or Interrupt
D4
PB7_OC0A_OC1C_P
CINT7
NC
D5
NC
D6
NC
D7
NC
D8
GND
Power Supply
E1
2
PB2_MOSI_PCINT21
IO or Interrupt
E2
3
PB3_MISO_PCINT31
IO or Interrupt
E3
4
PB4_OC2A_PCINT4
IO or PWM or Interrupt
E4
NC
E5
NC
E6
NC
E7
NC
Continued on next page
Chapter 3. Module Pin Definitions
SM200 Module Datasheet
SM200 Pin
Table 1 – continued from previous page
SNAPpy IO Pin Name
Pin Description
E8
NC
F1
0
PB0_SSN_PCINT01
IO or Interrupt
F2
1
PB1_SCK_PCINT11
IO or Interrupt
F3
9
PD1_SDA_INT11
IO or Interrupt
F4
8
PD0_SCL_INT01
IO or Interrupt
F5
NC
F6
NC
F7
NC
F8
GND
G1
NC
Power Supply
G2
15
PD7_T0
IO
G3
12
PD4_ICP1
G4
10
PD2_RXD1_INT2
G5
37
PG5_OC0B
IO or UART1 CTS output
or Input Capture
IO or UART1 Data In or
Interrupt
IO or PWM
G6
NC
G7
NC
G8
GND
Power Supply
H1
GND
Power Supply
IO or Timer/Counter1
clock input
IO
H2
14
PD6_T1
H3
13
PD5_XCK1
H4
11
PD3_TXD1_INT3
H5
RESET#
H6
NC
H7
NC
IO or UART1 Data Out or
Interrupt
Module Reset, Active
Low
Continued on next page
7
SM200 Module Datasheet
SM200 Pin
H8
Table 1 – continued from previous page
SNAPpy IO Pin Name
Pin Description
GND
Power Supply
1
These pins have special I2C and/or SPI hardware that is not natively supported by SNAP. You could use
peek and poke to initialize and enable this hardware functionality, but it is not supported by Synapse and we
cannot guarantee your results.
Table 3.2: SM200/SNAPpy IO Cross Reference
Pad
A4
A5
A6
A7
B1
B2
B3
B4
B5
B6
B7
C1
C2
C3
C4
C5
C6
D1
D2
D3
E1
E2
E3
F1
F2
F3
F4
G2
G3
G4
G5
H2
H3
H4
8
SNAPpy IO
24
26
28
30
18
19
21
25
33
29
31
16
17
20
22
23
27
5
6
7
2
3
4
0
1
9
8
15
12
10
37
14
13
11
Chapter 3. Module Pin Definitions
CHAPTER
FOUR
ELECTRICAL CHARACTERISTICS
Table 4.1: SM200 DC Characteristics at 25° C
Symbol
VCC 1
TOP
TSTOR
VIH
Parameter
Supply Voltage
Operating Temp
Storage Temp
Input Hi Voltage
Condition
VIL
Input Low Voltage
All Digital Inputs
VOL
Output Low Voltage
VOH
Output High Voltage
ILIN
TX-ICC
In Leakage Current
Transmit Current only
Transmit Current and CPU
Receive Current only
Receive Current and CPU
All
drive
strengths
(2,4,6,8 mA)
All
drive
strengths
(2,4,6,8 mA)
VIN = VCC or VSS , all Pins
VCC = 3.3V PTX =3dBm
RX-ICC
SHDNICC
All Digital Inputs
Transceiver
Min
2.0
-40
-40
0.7
VCC
Typ
3.3
VCC 0.4
Transceiver
Transceiver
VCC = 3.3V
Transceiver
VCC = 3.3V
Max
3.6
85
125
Units
V
°C
°C
V
0.3
VCC
0.4
V
V
V
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