INNIS01 Network Interface Slave Module
The INNIS01 Network Interface Slave Module (NIS) and the
INNPM11 Network Processing Module (NPM) make up a process
control unit interface. This process control unit interface
provides control modules in a process control unit with access
to an INFI-NET® communication system.
This instruction explains process control unit interface features,
specifications and operation. It also includes installation
and troubleshooting procedures for each module.
The system engineer or technician using this interface should
read and understand this instruction before installing any
modules. In addition, a complete u
IC74F6-PB31A400
MM-PM21-400C
JANCD-JCP02B
SGMG-09V2AAS
Modicon 110-232
CUB7P010
UAJPEE-04DK2K
KJ3231X1-BA1
SD3000 SD3K-2004
PWM325
DCR-7-300BDC
HMCP250L5W
MCV41A0150-203-4-00
CRK4-50-AMA-AUUV
KEA-1127
MDMU0110
PCI-5B30-01
CIMR-G5A42P2
562-571-K
FBS-20MC
FTXCN12F5
FVCB011-55K0-3P4
LU2MB0B
MCH41A0022-5A3-4-0T08276730
MDMV0010
JANCDCP06-02
CACR-IR010101FB
PCI20U-TB5PC
BSH0701M21F1A
PZE9P/777148
MTE-4090-BCBCE
PFTL 201CE-1
ZHH503E
VEBNM3538
KSX-240
MCV40A0055-5A3-4-0T 08274762
JAMSC-120DAO84300
MKS51A075-503-00
HEWLETT PACKARD 5508A
HEWLETT PACKARD 8662A
WGA-710B-0
BS08B-1-OL
SC745
KRT-01041-T
CIMRP7U27P51
RMF302EAU1173
MVME162P-244LE
KRT-01041-T
CIMRP7U27P51
RMF302EAU1173
SM30058-0834
C48CB10
HEWLETT PACKARD 85053A
TSXDSY08T31
TM2ALM3L
FRN0.75E1E-4A
TS3212N30
SMCINR-498-003B-X004
HF44BS-A47
SS6-360-6-N12-FD
GF3-2819-1
TOSHIBA+ FDL18EX-N
VJDSTKSTO511
LS403D-83301
ICP-CM-1003-CD-8P-USON
PC872600-00E
CPCR-MR55CV22
PX245-02
TM2DDO32UK
P50E-5
MVME167-0468040
MIOP-61173
TC-PRS02
PX410-500SI
SA2000E
CTL0501FCTL05
MPCKN02NAX00H
CMR-H37G2-10
DPR900X1-A7
XPSAC3721
CPV14-GE-MP-8
ZUS252405
P36G5229D02
JUSP-NS115
PXI 6070E
CIMRE7U22P2
POM-TWX
HP5705-18
NBRA-656
XSZBC90
TAU DELTA HOUSE-19
GT1575-VNBA
SV015IG5-4
EJA430AEAS5B92EA
2015-01-5
CUB5TCB0
QMM34015
MC07A110-203-4-1008272883
6ES5951-7LD11
MM-PMC2-110
LEA75F-24
MCLTPB0110-5A3
6DD1670-0AG0
Power Modules are Point of Load (POL) DC-DC converters integrating controller chips, chokes and I/O capacitors into a single power management package for step-down(buck) applications. The low profile and compact size enables significant saving of board space, high efficiency enhances application performance, and design structure allows automated assembly by standard surface mount equipment
For price, specification and other details please contact us
AC to DC converter battery charger 150-1000VDC rectifier 120KW power supply Product Introductionï¼? SANDI AC/DC Charger is specially developed for DC chargers. It has high efficiency, high power factor, high power density, high reliability advantage. AC input 3 phase, DC output voltage range from 150 to 1000VDC can be set, compliant with CE safety requirements, EMC standard EN61000-6-3 and EN61000-6-1 Class A, it is an advanced international level charger. Unique function High efficiency over the full load range, full load efficiency greater than 95% Wide output voltage range, 150-1000VDC, suitable for a wide range of Lithium or lead acid battery 5-inch LCD touch screen, easy to operate Flexible application, charging voltage, charging current, charging time, timing charging can be set by LCD screen, easy to operate Main featuresï¼? Powerful protection, overheating, short circuit, overload, overvoltage, undervoltage, etc. Wide input voltage range: 260~ 530Vac, adaptable to various power grid environments Three-phase AC input without neutral wire: Simplifies system design, eliminates the risk of excessive neutral current, and reduces system costs. Dual DSP design, achieve the full digital control, less components means high reliability Wide input voltage range, allows operation in most poor grid conditions Battery anti backflow: effectively protects the battery while ensuring reliable and safe operation of the system Input, output have protective circuit breaker switch Module adopts hot pluggable design, which is convenient for maintenance. RS485 interface (Optional)
SANDI SERIES charging module is for electric vehicle charging station. With single-phase non neutral conductor AC input, it has the advantages of high efficiency, high power density and low harmonic. Functional details 1. Hot plug Plug technology is applied to the charging module to provide convenience for installation and maintenance. The access of the charging module to the system shall not disturb the output voltage of the system. 2. Advanced current sharing technology Under constant voltage working mode, the charging modules can share current automatically within 10S, with degree of unbalance less than �±0.5A. 3. Control of input limited power Refer to Fig. 1-10 for the relation between the output power and input voltage of the charging module. When the input voltage is within 360 Vac ~ 450 Vac (return difference is less than 5V), the module can output the maximum power of 20 KW; when the input voltage is within 260 Vac ~ 320 Vac, the module can still work normally under limited power mode. 4. Control of output constant power When there is a rated input voltage, the output power of the module is 20 KW. Refer to Fig. 11 for the relation between the output voltage and the output current of the module. The SD75050 module uses two operating modes with output voltage ranges of 50 to 750V. The module only selects the operating mode based on the value of the received demand voltage, and does not select the operating mode based on the actual output voltage. 5. Temperature limited power 6. Regulation of output current limiting point 8. Regulation of output voltage The output voltage of the module can be regulated constantly through the external monitoring module, with regulation range of 50Vdc ~ 750Vdc and minimum regulation step of 0.1 Vdc. 9. Fan control The built-in processor of the module can regulate the speed of the fan according to the internal temperature and output current of the module. 10. Protection of input overvoltage/ voltage shortage 11. Output overvoltage protection The overvoltage protection point is 260Vdc ~770Vdc (�±10 Vdc). Default is 778Vdc.The module can be started after manual intervention upon overvoltage protection. 12. Over-temperature protection The environmental over-temperature protection point is 80�°C. When the DC panel has a temperature over 100�°C, the module will stop working; when the DC panel has a temperature below 90�°C, the module will automatically work again. 13. Protection of internal bus fault When the internal bus voltage of the module is beyond the overvoltage/ voltage shortage protection point, the module will be powered off automatically. At this time, there is no output from the module and the fault indicator light is on. 14. Short circuit protection In case of short circuit of the module, it will be subjected to protective shutdown and the red indicator light of the panel is on, and this condition will be transmitted to the monitor of the "module fault".
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