Description
hardware flow control. It is an ideal choice in the field of industrial automation.
In terms of high-end vocational education to train operators and other
professional and technical talents, our country is very inadequate, and this is
also the biggest shortcoming.
On the one hand, the cultivation of such high-end technical talents requires high-level hardware
and software facilities . Currently, only a few 985 universities and some
corresponding top departments of 211 universities can provide such facilities. Other schools
simply do not have the ability. Naturally, we cannot provide enough talents.
On the other hand, our country has not yet established a complete vocational education system
and cannot train enough skilled workers to operate automated equipment such as robots. As for the
so-called vocational high schools and technical schools, it goes without saying what they are like
, and you cannot count on them at all.
The reason why such a vocational education system has not been established is mainly because
there was not enough money before. Take the well-done German vocational education system as an
example. It allows students to directly learn to use the most cutting-edge production technology and e
quipment. Things are piled up with real money, and they need to be updated frequently, which costs
more. At present, some domestic dual-book stores probably have these facilities, but it is a drop in the bucket.
Taken together, my country”s talent shortage in smart manufacturing, including the robotics industry, is
difficult to alleviate in a short period of time. Enterprises need talents. In addition to poaching talents with
high salaries, they can only train them themselves. However, this not only increases costs, but also risks
personnel turnover. , the talents you have worked so hard to cultivate may be immediately poached by other
companies, and it is really too late to cry. This is also the main reason why companies are unwilling to train talents.
Probably only state-owned enterprises that do not settle accounts will train some technical talents. , but that’s all.
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Bently Nevada125720-01Spare 4-Channel Relay Output Module
Bently Nevada 3500/34 125696-01 TMR Relay Module
125680-01 Proximitor I/O Module Bently Nevada 3500/40M
125388-01 Half-height Module Bently Nevada
136294-01 BENTLY 3500/62 I/O Module
3500/91-01-01(161204-01+161216-01)bently Communication Gateway Module
149992-01 BENTLY 3500/33 calories Relay Output Module
330850-50-00 BENTLY NEVADA preprocessor
16710-20 |Bently Nevada | interconnection cable
330103-00-13-10-02-00 | Bently Nevada | 3300 XL 8mm Proximity Probe
P3403893-0351 | BENTLY | Vibration Transmitter
IMQRS22 | Bently Nevada | Quick Response Module
330704-000-050-10- 02-05 | Bently Nevada | proximity detector
330103-00-03-10-02-05 | Bently Nevada | proximity detector
330104-00-13-10-02-05 | Bently Nevada | 3300 XL 8 mm Proximity Sensor
330780-90-05 | Bently Nevada | 3300 XL front sensor
330106-05-30-05-02-05 | Bently Nevada | 3300 XL 8mm Reverse Mount Probe
330500-00-02 | Bently Nevada | piezoelectric speed sensor
330130-085-02-05 | Bently Nevada | 3300 XL Extension Cable
330161-02-85-05-94-01-02 | Bently Nevada | Single triaxial high voltage feedthrough of 3300 system
133292-01 | Bently Nevada | Low Voltage DC Power Module
3500/15-07-00-00 | Bently Nevada | 3500/15 Power Module
176449-08 | Bently Nevada | Rod position monitor
128229-01 | Bently Nevada | Seismic I/O Module
3500/15-02-02-01 | Bently Nevada | power module
1900-65A-01-01-01-01-01 | Bently Nevada | Universal Device Monitor
1900/65A-01-01-03-00-00 | Bently Nevada | Universal Device Monitor
21504-00-28-10-02 | Bently Nevada | 5mm / 8mm series proximity sensor system
990-05-50-01-00 | Bently Nevada | Two-Wire Vibration Transmitte
24765-01-01 | Bently Nevada | Shell Expansion Sensor Assembly
3300/03-01-01 | Bently Nevada | 3300/03 System Monitor
3300/14-02-20-00 | Bently Nevada | Dual Thrust Position Monitor
3300/14-02-20-00 | Bently Nevada | DC power supply
3500/42M 176449-02 | BENTLY | 3500/42M 176449-02 Preprocessor/seismic monitor
9200-06-01-10-00 speed sensor bently
106M1079-01 BENTLY | Redundant power modules
3500/93-03-01-00-00 | Analog module | BENTLY NEVADA
3500/93-02-02-02-00 | Pulse input submodule | BENTLY NEVADA
3500/93-01-00-00-00 | DCS spare parts | BENTLY NEVADA
3500/92-04-01-00 | DCS system module | BENTLY NEVADA
3500/92-01-01 | Communication gateway module | BENTLY NEVADA
3500/63-01-00 | Monitoring module | BENTLY NEVADA
3500/61(163179-02) | Power connection board | BENTLY NEVADA
3500/61(133819-02) | Temperature monitor | BENTLY NEVADA
3500/53-01-00 | Overspeed protection module | BENTLY NEVADA
3500/50-04-00 |Adapter module | BENTLY NEVADA
3500/50-01-01-00-00 | Programmable control module |BENTLY NEVADA
3500/50-01-00-01 |Digital input module l position module | BENTLY NEVADA
3500/50-01-00 | Speed module |BENTLY NEVADA
3500/45-01-00 |Expansion/axial position module | BENTLY NEVADA
3500/42-01-00 | Vibration module |BENTLY NEVADA
3500/33-01-00 |Key phase module | BENTLY NEVADA
3500/32-01-00 | Relay module |BENTLY NEVADA
3500/25-01-03-00 |Relay module | BENTLY NEVADA
3500/25-01-01-00 |Key phase module | BENTLY NEVADA
3500/22-01-01-00 | Control system module |BENTLY NEVADA
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