Description
Details
With this USB2.0 logic analyser you can quickly and clearly visualize up to 16 digital signals. You can of course view raw data, but the support of many known protocols makes analyzing bus signals child’s play.
Thanks to the USB2.0 connection, no external power adapter is required, and fast data transfer is possible. The patented data compression ensures that up to 255x more data can be recorded, so less memory is needed.
Software
A very extensive software package you can download here. The Zeroplus software allows you to decode the protocols of the signals you are viewing. For example, you can read CAN, I2C or UART messages directly in the Zeroplus software. As many as 120 protocols are directly supported. Do you want more information about decoding SPI and/or CAN signals? Then see the videos below.
In the table at the bottom of the page an overview of a number of supported protocols can be found.
Model overview
The differences between the models in the LAP-C series are mainly in the amount of memory, the supported bandwidth and the sample rate.
Model | LAP-C 16032 | LAP-C 16128 |
---|---|---|
Number of channels | 16 | 16 |
Memory | 32 kbit | 128 kbit |
Analog bandwidth | 100 MHz | 150 MHz |
Sample rate | 100 – 100 MSa/s | 100 – 200 MSa/s |
Bag | No | yes |
Full set of 18 test clamps | No | yes |
Standard protocols | 26 | 26 |
Extra freely selectable protocols | Unlimited | Unlimited |
Accessories
All logic analysers in the LAP-C 16000 series are supplied with:
- Windows 7 / 8 / 10 software (Windows 10 with unofficial workaround)
- USB 2.0 cable
- Cables 25 cm (2x 8 channel, 1x 2 channel, 1x 1 channel)
- English manual
Overview protocols
Below is an overview of the protocols that come standard with every LAP-C logic analyser. You can download the complete software set here.
. Automotive
CAN 2.0B | DSI Bus | FlexRay 2.1A | LIN 2.1 |
MVB | WTB |
PC system
AMD_SVI2 | DDC EDID | GPIB | FWH |
IDE | Low Pin Count | LPC-SERIRQ | LPT |
PCI | PECI | PS/2 | Serial GPIO IBPI |
SVID | USB 1.1 | USB 2.0 |
IC interface
BDM | HPI | 1-WIRE | JTAG 2.0 |
MCU-51 DECODE | 3-WIRE | I2C | MDDI |
MICROWIRE | MIPI DSI | SPI | SLE4442 |
SSI Interface | SPI PLUS | ST7669 | UART(RS-232C/422/485) |
1-Wire(Advanced) | Serial Wire Debug(SWD) |
Digital audio
AC97 | AES_EBU | DSA Interface | DP AUX Channel 1.1 |
HD Audio | HDMI CEC | I2S | MHL-CBUS |
MIDI | MIPI_CSI-2 | PCM | PSB Interface |
S/PDIF | STBus |
Basic Logic Application
ARITHMETICAL LOGIC | DIGITAL LOGIC | JK FLIP-FLOP | UP DOWN COUNTER |
Memory
Compact Flash 4.1 | eMMC | I2C(EEPROM 24L) | I2C(EEPROM 24LCS61/24LCS62) |
MICROWIRE(EEPROM 93C) | SPI Compatible(Atmel Memory) | Quad SPI | SAMSUNG K9(NAND Flash) |
SD2.0/SDIO | SD3.0 | UNI/O |
Optoelectronics
7-SEGMENT LED | CCIR656 | CMOS IMAGE | LCD12864 |
DALI Interface | DM114/DM115 | DMX512 | LCD1602 |
LED Pitch Array | LG4572 | RGB Interface | S2Cwire/AS2Cwire |
SCCB |
Infrared rays
IRDA | NEC PD6122 | Philips RC-5 | Philips RC-6 |
PT2262/PT2272 |
Power
BMS | HDQ | PMBus 1.1 | QI |
SDQ | SMBus 2.0 |
Wireless
Differential Manchester | DigRF | ISO7816 UART | KEELOQ Code Hopping |
MANCHESTER | MII | SIGNIA 6210 | MILLER |
MIL-STD-1553 | MODIFIED MILLER | SWP | WIEGAND |
WWV/WWVH/WWVB |
Other
DS1302 | DS18B20 | Line Code | HART |
KNX | ModBus | MODIFIED SPI | OPENTHERM 2.2 |
PROFIBUS | SHT11 | YK-5 |
Reviews
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