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        <title>ZSOM - zsom:mini</title>
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       <dc:date>2026-09-23T00:33:46+00:00</dc:date>
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        <title>ZSOM</title>
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        <dc:date>2021-09-14T10:51:15+00:00</dc:date>
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        <title>always_on_jumper</title>
        <link>https://schmid-elektronik.ch/wiki/zsom/doku.php?id=zsom:mini:always_on_jumper&amp;rev=1631616675&amp;do=diff</link>
        <description>Always on Jumper

The functionality of the Go input, the RTC wakeup and the FPGA Kill signal can be overwritten with the Always on jumper.

The always on jumper (solder bridge) can be found below the sbRIO9651.

connect the two pads with a zero ohm resistor or a piece of wire.</description>
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        <dc:date>2023-01-04T09:40:47+00:00</dc:date>
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        <title>bms</title>
        <link>https://schmid-elektronik.ch/wiki/zsom/doku.php?id=zsom:mini:bms&amp;rev=1672825247&amp;do=diff</link>
        <description>ZSOM-Mini BMS

The ZSOM-BMS (meaning Battery Managment System is an add-on that expands to the ZSOM-Mini, allowing a use in a mobile environment powered by a battery.

Core Functions

	*  Powering the ZSOM-Mini from a single cell li-ion battery
	*  Recharging the Battery with power supplied over a USB-C port</description>
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        <title>control_board_regions</title>
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        <description>ZSOM-Mini Power Control

The ZSOM-Mini platform provides several GPIO lines that are used to control the power state and reset behavior of individual board regions. These signals allow software to selectively enable, disable, or reset specific parts of the system.</description>
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        <title>go</title>
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        <description>Power On Input (Go)

The ZSOM-Mini does not boot up automatically, when power is applied. 
The Go input can be used together with a push button to wake up ZSOM-Mini.

Power up

ZSOM-Mini will boot as soon as the Go input (pin 1) is tied to GND (eg. pin 2) for more than 50ms.</description>
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        <dc:date>2021-09-14T10:58:55+00:00</dc:date>
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        <title>kill_signal</title>
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        <description>Kill signal

The ZSOM-Mini can be sent to a power saving state via a FPGA signal called “Kill”.

This signal will cut all power to the sbRIO9651 and to the peripherals.  

To get to operational state again, the target can be booted via Go Input or by a alarm on the</description>
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        <dc:date>2026-05-07T09:37:49+00:00</dc:date>
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        <title>mechanical</title>
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        <description>ZSOM-Mini Mechanical Drawings

Heat Spreader (Top view)



All screws have an M2.5 thread.

Interfaces (side view)</description>
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        <title>mini_pinout</title>
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        <description>ZSOM-MINI Pinout description

Screw terminals
PinSignal 				.  PinSignal				29 +Vin		28	GND				30 GND				27	RS232 Rx		31 OC1			26	RS232 Tx		32 OC2			25	GND				33 GND				24	CAN Low			34 OC3			23	CAN High		35 OC4			22	GND				36 GND				21	RS422/RS485 TX+	37 DIN		20	RS422/RS485 TX-	38 GND				19	RS422/RS485 RX-	39 DIN		18</description>
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        <dc:date>2022-01-13T10:13:20+00:00</dc:date>
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        <title>mini_power_gpios</title>
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        <description>ZSOM Mini Power and GPIOs

On the ZSOM-Mini different board regions can be powered separately. This can be controlled via GPIOs from the sbRIO9651.
Additionally the Kill GPIO, the Go Input and alarms set on the precise_rtc can control if power is applied to the board.

The following graphic shows the dependencies in a simplified schematic view:</description>
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        <dc:date>2025-09-30T14:33:24+00:00</dc:date>
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        <title>power_consumption</title>
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        <description>Power Consumption

The power consumption of the ZSOM-Mini varies with the powerded board regions, the connected peripherals and the Application running on the target.
If not otherwise noted, the following values apply to a ZSOM-Mini standard without any peripherals attached.
For most applications power consumption between 2.5W and 6W can be assumed.</description>
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        <dc:date>2026-09-01T14:59:09+00:00</dc:date>
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        <title>zsom_mini</title>
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        <description>ZSOM-Mini



The ZSOM-Mini is an off-the-shelf hardware module from NI Embedded-Specialty Alliance Member Schmid
Elektronik, integrating the NI System-on-Module (SOM) sbRIO9651 on a tiny carrier board. It is designed for
miniaturized measurement, control and monitoring applications and can be fully programmed with LabVIEW
RT and LabVIEW FPGA. The board is about the size of the SOM itself
and provides all the features on two rows of screw terminals.</description>
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