PC-connectable protocol analyzer / Data logger
LE-270GR
●2-way operation of PC-connected protocol analyzer / logger
●2-channel measurement by combination of CAN and LIN
●Simultaneous recording of GPS, acceleration, and external signal measurements with CAN/LIN data
●Galvanic isolation between CAN/LIN transceiver and analog measurement circuit
●pass / cut filter and powerful trigger function makes the analysis more efficient
●Can check the log file without stopping the logging
●Robust design to withstand use in harsh field environments
LE-270GR is a Communication Data Logger, which has acceleration sensor and a connector for GPS antenna. It has logger mode with which you can records CAN/LIN communication logs in the SD/SDHC card for long hours and remote mode with which you can monitor data or GPS data on the PC at real time by connecting the analyzer with PC. It also has simulation mode with which you can repeatedly transmit CAN/LIN data which is registered in advance and selected on PC. It has galvanic-isolated two CAN transceivers and two LIN transceivers. Thus you can measure 2 channels of CAN/LIN communication lines and can simultaneously register GPS positioning data, acceleration data, and voltage data of 4 external signals.
Its power failure protection, waterproof, and low power consumption widens the usage of analyzer such as in the automation factories and other production factories.
This model is discontinued. The successor is LE-270GF.
■ 2Two-color LED
Lights of LED stand for following:
POWER/ERROR | Indicate the operating status of analyzer. |
---|---|
RUN/ACT | Indicate that analyzer is measuring or accessing to the SD card |
CH1/CH2 | Indicate the logic status of CH1/CH2. |
U1/U2 | Able to light the U1(green)/ U2(red) by trigger action. |
WiFi*/GPS | Indicates Wi-Fi connection |
■ Pin Assignment of Measurement Connector (DSUB25pin)
1 | BATTERY | 14 | TRG IN |
---|---|---|---|
2 | - | 15 | CAN1 High |
3 | - | 16 | CAN1 Low |
4 | GND | 17 | TRG OUT 2 |
5 | - | 18 | TRG OUT 1 |
6 | - | 19 | CAN2 High |
7 | GND | 20 | - |
8 | - | 21 | CAN2 Low |
9 | EXT IN 1 | 22 | GND |
10 | EXT IN 2 | 23 | LIN1 |
11 | EXT IN 3 | 24 | LIN2 |
12 | EXT IN 4 | 25 | - |
13 | - | - | - |
When in logger mode the unit can be powered from 1pin (BATTERY). (Power supply from pin 1 consumes about 30mA even when the power is shut down. If you want to reduce current consumption, supply power from the DC jack.)
Two Types of Operation Based on Usage Situation.
■ Easy-to-Operate Data Logger Mode.
Simply press a switch on the panel to start logging the measurement data into an SD card. No complicated configuration operation is required in the field, since the measurement conditions can be stored in advance in a configuration file in the SD card. The measured log file can be transferred from the SD card to a PC for analysis.
It is useful in the situation of:
- PC usage is not allowed.
- Dusty places (PC cannot be used).
- Need to record data for more than one month.
- Cannot operate the analyzer well.
- There are space limitations.
< Logger Mode >
■ Remote Mode Capable of Real-time Monitor Display.
When PC-connected via USB, it operates as a PC-connectable analyzer that is capable of changing the settings of measurement conditions, displaying measurement data in real time and recording continuously to a HDD from a PC. It can also display a communication log file acquired in the logger mode and create a measurement configuration file for logger mode.
< Remote Mode >
Measure CAN/LIN/GPS positioning/Acceleration data/Analog Signals at the Same Time.
The analyzer monitors two channels of CAN/LIN signals, GPS positioning data, acceleration data, and four lines of external signals (Analog voltage/digital logic status). Each monitor circuit has high-speed CAN and low-speed CAN and LIN transceivers, which are selectable from software. In addition, there is On-line mode and Analog mode to record data and external signal status.
■ ON-LINE Mode
The analyzer records status of external signal at the time of recording CAN/LIN data. It can display time stamp, LIN SynchBreak, LIN SynchField, ID, Frame type, status, data, CRC/checksum, external signals, trigger marks and so on.
ST | Meaning |
---|---|
G | Normal Frame |
B | Synch Break error of LIN (When Dominant is 10bit) |
S | Synch Field error of LIN (Other than 0x55) |
P | Parity error of LIN |
L | Data length error of LIN ("ID"is set in "Frame End" setting ) |
R | When the data of the Response of LIN is less than 1byte |
C | CRC error of CAN / Checksum error of LIN |
A | ACK error of CAN |
E | Error frame of CAN |
F | Form Error of CAN (When CRC or ACK delimiter is 0) |
ST | Meaning |
---|---|
( ) | Framing error of LIN (When the stop bit is dominant.) |
Data Monitor (Normal Display)
After the measurement, it is possible to scroll and search data for further analysis on the Data Monitor Display.
Real-time monitor display on the normal display screen is now available even during measurement! !
Also now you can scroll to the previous data while the display is paused.
Supported by the software LE-LINK27R Version 1.05 or later
< Data Monitor Display >
< Retrieval Configuration >
It is able to display or count the specific data. For example, it is able to search BreakField error or Parity error of LIN and display top of the data.
It is able to capture various kinds of CAN/LIN data and display them with error marks.
< Data Monitor Display (with error marks) >
Watch Data Display
Watch Data Display displays specified ID frame at appointed place at real time.
< Watch Data Display ID Configuration >
< Watch Data Display >
Timer/ Counter Display
Timer/ Counter display shows the total received frames and occurrence number of specific event.
Timer 0-3 and Counter 0-3 can be used as trigger conditions.
(Example of Using Timer)
Measure time between specific events, such as time between receiving external signal and receiving specific data.
(Example of Using Counter)
Count number of occurrences of specific events, such as CRC errors of CAN.
< Timer/ Counter Display >
■ Analog Mode (Ver.1.02 or above)
The analyzer measures 4 external signals at specified sampling (Analog mode). Furthermore, it can be used as a Analog Data Logger of four inputs.
< Analog Mode Configuration >
< Analog Waveform Display >
It is possible to select the range of display from ±1V, ±2V, ±5V, ±10V, ±16V, and display each signal.
< Data Monitor Display >
Analog mode records not only the latest data but also the continuous data from the last sampling. It is able to know how data has changed as time passes.
< Example of using data in the spread sheet >
It is able to convert Analog data into text/CSV format
Long Hour Recording
Log files are saved at the specified file size and number of files, continuously as a ring buffer. Also, measurement can stop when the specified number of files has been reached. It is useful for detecting any hindrance in the line.
[ Record Control Setting ]
Baud Rate | Capacity: 1.8Gbyte, e.g.: 4Mbyte x 450 files |
---|---|
125Kbps | Approx. 14Hrs |
1Mbps | Approx. 3Hrs |
< Buffer Configuration (Remote Mode) >
< Buffer Configuration (Logger Mode) >
Perform Analysis at any Communication Rate.
General communication rates via CAN and LIN have been preset. However, it can be configured to any communication rate. For CAN, it is capable of fine-adjusting the bit sampling timing.
< LIN Configuration >
LIN baud rate can be selected from 2400bps, 9600bps, 19200bps, or set any speed of four effective digits up to 20Kbps.
< CAN Configuration >
Set any CAN speed of four effective digits up to 1Mbps.
Low-speed CAN: -125Kbps
High-speed CAN: 125Kbps - 1Mbps
[ CAN Bit Sampling Point ]
The bit sampling point is shown as following. Normally, 75% further point from the top bit is set.
(SS+PTS+PB1+PB2) x "Standard Clock Cycle" is considered as 1bit (SS is always 1). "Standard Clock Cycle" can be set to any four digits.
LIN Frame Configuration
If users know the LIN specifications, it is able to start measuring by specifying the ID frame and checksum type. Even though the users do not know the LIN specification, it is possible to end frames by specifying time.
< Frame Setting by Each ID >
< Frame End Time Setting >
Efficient Analysis Using the Filter Function
It is capable of effectively monitoring by selecting target node IDs. Able to set following filters; the Acceptance filter which specifies target ID in bit, the Pass filter (up to 8) which targets the specific ID, and Cut filter which removes the specific ID from the target ID.
* Bus filter and Cut filter are available from V1.07 or above.
< Filter setting >
IDs which passed through the acceptance filter can be filtered in the order of the pass filter and the cut filter.
In this example, ID: 101, 102, 103, 104, 184 to 18F, and 1F4 to 1FF will be monitored.
Trigger function for finding specific events
Powerful trigger function stops measuring automatically when receiving errors or fining specific events. Also, it it able to count the events which satisfies the trigger conditions, output trigger signals, and send error signals such as lighting LEDs etc.
Select trigger number to activate the trigger conditions.
If receiving 14h, Foh, W0(data of lower bit 0) and *(specified data) specific data, lights the LED of U1.
If receiving checksum error frames, add one in Counter2.
Schedule Measurement, Low Power Consumption.
Real Time Clock (RTC) backed up by the battery of the analyzer makes it possible to specify the starting and ending times of the measurement. After the measurement, it turns off the power automatically and saves on power consumption. Power-On-Run function starts measurement when the power is supplied from the test devices, and Auto-Power-Off function ends measurement when there is no power supplied from the test devices. This minimizes battery usage of in-vehicle equipment.
< Auto RUN/ STOP setting >
Example 1
Measure while the factory runs operation from 9:00 to 17:30.
< Configuration of Example1 >
Saving Mode | Append |
---|---|
Max Files | 450 |
File Size | 4M |
Mode | Daily |
Run Time | 9:00 |
Stop Time | 17:30 |
Power On Run | off |
LED of the analyzer will start blinking at 8:59 and be ready for measurement. It will start measuring at 9:00 and record data in the SD card for 450 files (4M each) as a ring buffer. It will stop measuring at 17:30 and turn off the power automatically to save on power consumption.
Example 2
Equipment communicates with other equipment while it receives power from a power supply randomly.
< Configuration of Example2 >
Saving Mode | Append |
---|---|
Max Files | 500 |
File Size | 1M |
Mode | Daily |
Run Time | non |
Stop Time | non |
Power On Run | on (safety start) |
In this care, it is necessary to prove power to the analzyer from the same power supply for the equipment. Safety start will start measuring approximately 40 seconds (LED will be blinking) after powering on the analyzer for charging the capacitor for back-up data. Communication logs will be saved in the SD card for 500 files (1M each) endlessly. The analzyer will stop measuring when the power is not supplied for more than 1 second after saving data in the SD card.
Mass Data is Analyzed Efficiently
One or more communication log files can be converted collectively into text or CSV format so that communication data can be used effectively in a word processor and/or spreadsheet software.
< Text Conversion >
[ Text Conversion Data ]
*=[LE-270GR]=====[2016-12-15 15:49:45]============================* * ONLINE MODE * * CH1 PROTOCOL: CAN * * BAUDRATE:1M (BASEFREQ:12M PTS:5 PBS1:4 PBS2:2 SJW:1) * * SAMPLING:ONCE * * CH2 PROTOCOL: LIN * * BAUDRATE:9600 * * ID Filter:ID5-0=****** * * ID00-0F DLC:8386788822222224 CHECKSUM:CCCCCCCCCCCCCCCE * * ID10-1F DLC:2222222222222222 CHECKSUM:CCCCCCCCCCCCCCCC * * ID20-2F DLC:8444444644444447 CHECKSUM:CCCCCCCECCCCCCCE * * ID30-3F DLC:8888888888885280 CHECKSUM:CCCCCCCCCCCCCCCE * *=================================================================* ----TM------CH------ID--TYPE---DLC-ST-----DATA---------FC--I1234---AI1---AI2---AI3---AI4-TRG 48:34:173 1 003 DATA 3 G 584DFF 3FAE 1111 +2.6 +2.8 +4.4 +4.4 48:34:242 2 13-55-3C FRAME 5 G 1010255695 CE 1111 +2.2 +2.8 +4.4 +4.4 48:34:433 1 00000006 DATA 4 G 00002413 5B2C 0111 +0.9 +2.8 +4.4 +4.4 48:34:633 1 00000008 DATA 4 G FD020B13 73A8 0111 -0.3 +2.8 +4.4 +4.4 48:34:744 2 12-55-04 FRAME 7 G 152633152C0101 4E 0111 -1.0 +2.8 +4.4 +4.4 48:34:776 1 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< CSV Conversion Data >
Can be used in Various Situation
■ Protects SD Cards from Corruption due to any Sudden Power Failure. [Acquired Patent in Japan]
A newly developed Instant Power Failure Prevention circuit with a Super Capacitor protects important communication log files stored in the SD cards. It protects data in the SD card in case it occurs the power failure during recording to the SD card. The analzyer is useful for on-board tests where power supply is likely to be unstable.
■ Supports wide input DC power
Supports DC8V to DC32V. It is able to supply power from optional AC adapter and the battery of vehicle. An optional adapter for boosting voltage of external battery is also available.
[ Usage of external battery ]
■ Small and Robust Housing Suitable for Severe On-board Testing
The palm-sized robust unit can be used between ?20 to +60°C. It can be installed even within a limited vehicle test space. The consumption current is as low as 100mA at DC12V input. With the dust-proof cover closed, and the DC cable and optional water-proof DSUB cable connected, it can be used in places where it may be exposed to dust and drip.
< Dust-proof covers >
< DIN Rail Installation Example >
■ Automatically Switches between Japanese and English
The system language alternates automatically between English and Japanese according to that of OS. This facilitates introduction of the software to development bases outside Japan.
■Read log files over Wi-Fi without stopping logger operation
By connecting it to your PC by Wi-Fi, you can check the log files recorded on the SD card without stopping measurement in logger mode.
You can use the included utility software lefiledownload to list log files and download the specified file.