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PDF ASF1400 Data sheet ( Hoja de datos )

Número de pieza ASF1400
Descripción Bidirectional Mass Flow Meter
Fabricantes Sensirion 
Logotipo Sensirion Logotipo



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No Preview Available ! ASF1400 Hoja de datos, Descripción, Manual

ASF1400
Bidirectional Mass Flow Meter
_ Unique dynamic range:
0.01 sccm – 400 sccm
_ Outstanding resolution and accuracy
_ Ultra fast response time
_ Hysteresis & offset free
_ Calibrated & temperature compensated
_ RS-232 and
Version 2.2 / November
ASF1400 Product Summary
The ASF1400 Mass Flow Meter enables extremely
accurate bidirectional measurement of gas flow over four
orders of magnitude. Its leading performance is based on
SENSIRION’s unsurpassed CMOSens® sensor technology.
With CMOSens®, the on-chip sensor element forms an
integrated whole with the amplification and A/D converter
circuit. This results in superior resolution, fast response
time and large dynamic range at lowest power
consumption.
All measurement data is fully calibrated and temperature
compensated by means of an internal microcontroller.
Mounted in rugged, chemically inert PBT housing the
ASF1400 is suitable for a wide range of applications. Such
include mass flow metering for process control, medical
applications, heating ventilation and air conditioning
(HVAC) solutions, as well as gas flow metrology.
The sensor housing provides two inlets for measuring the
gas flow and withstands overpressures of 2 bar (29 psi).
The ASF1400 requires a supply voltage of 7…18Vdc and
provides an RS-232 compliant electrical interface.
ASF1400 MASS FLOW METER
MASS FLOW
VOLTAGE
REGULATOR
GND Power
VDD Supply
CMOSensSENSOR CHIP
MICRO
CONTROLLER
MASS FLOW
EEPROM
RS232 LINE
DRIVER/
RECEIVER
Figure 1: Block Diagram ASF1400 Mass Flow Sensor with CMOSens® technology.
/CS
MOSI
MISO
SCK
RxD
TxD
SPI
Interface
no longer
supported
RS232
Interface
www.sensirion.com Sensirion AG, Laubisrütistrasse 50, CH-8712 Stäfa ZH, Switzerland, Phone: +41 44 306 40 00, Fax: +41 44 306 40 30

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ASF1400 pdf
ASF1400 Bidirectional Mass Flow Meter
2 Pins and Digital Interface
T xD
R xD
SCK
M IS O
M OSI
/C S
VDD
GND
The measurement values are provided as a signed
floating point number together with the corresponding
unit (sccm for mass flow, C for temperature). In case
of an overflow, the output shows oF.
2.3 Serial Peripheral Interface (SPI)
The in earlier versions available SPI interface is due
to changes in electronic components no longer
supported.
Figure 6: ASF1400 pin out.
GND and VDD (Power Supply)
The ASF1400 requires a voltage supply of between 7
V and 18 V. Since this voltage is internally regulated,
there are no stringent requirements as far as ripple
and stability are concerned.
2.1 Connector
You need an EDAC 395-010-520-102 connector to
connect the sensor. Please check the EDAC
homepage for details (www.edac.net).
Alternatively the AVX 00 6338 020 000 04 0 or AVX
00 6338 020 000 04 2 connectors can be used to
connect the ASP1400 as well. (See www.farnell.com,
order codes 635789 or 635730).
2.2 RS-232 Interface
All configurations (see also Section 3) for the
ASF1400 can be set using its RS-232 interface). To
communicate with the ASF1400 via RS-232 the
following pins are required:
RxD (Receiving Data Line)
TxD (Transmitting Data Line)
GND (Ground)
The RS-232 of the ASF1400 is configured as follows:
Baudrate
9600
Data Bits
8
Stop Bits
1
Parity
none
Protocol
none
With these settings, the ASF1400 device can be
connected to any PC or PDA equipped with terminal
software.
3 Configuration and Commands
The ASF1400 device accepts a set of commands
through its RS-232 interface (see table 3 for valid
commands; for correct settings of the RS-232 refer to
Section 2.1).This allows the user to configure the
ASF1400 device. Since the configuration is stored in
the internal EEPROM, it is maintained after power
breaks.
With the exception of the stop s command, all
commands have to be terminated by the return key
(↵, ASCII #10 or #13). After completion of a
command, the ASF1400 returns ok and is ready to
take a new instruction. Before entering a command, it
may be necessary to clear the buffer by means of
using .
There is a trade-off between resolution and
measurement time. Possible settings are listed in
Table 2. Choosing 12 bit results in a measurement
interval of 142 ms. With the max resolution of 15.2 bit,
a new measurement is provided every 1280 ms. For
faster sampling rates refer to the ASF1430 high
speed mass flow meter device data sheet.
Table 2: Resolution settings using the res=value
command and corresponding response times
res= Resolution [bit] data interval [ms]
1 12.0 142
2 13.0 284
3 13.5 427
4 14.0 569
5 14.3 711
6 14.6 853
7 14.8 995
8 15.0 1138
9 15.2 1280
Table 3: Commands of the ASF1400 device.
Command
help
Output
commands
Description
Lists all available commands
www.sensirion.com
Version 2.2
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