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Phone: +86-10-62893032

E-mail: support@neutrontek.com

Company Address: No. 536, Huai Sha Road, Bohai Town, Huairou District, Beijing

R&D Center: 4th Floor, Yicheng International Center, Haidian District, Beijing

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Card‑slot‑type clock server DNTS‑9

The DNTS-9 is an intelligent, high-precision satellite time‑synchronization device, specifically designed to provide a high‑accuracy time reference for automation in power systems.

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For more details, please contact Engineer Wen.

  • Product Features
  • Product Overview
  • Base parameter
  • Optional accessories
    • Commodity name: Card‑slot‑type clock server DNTS‑9

    The DNTS-9 is an intelligent, high-precision satellite time‑synchronization device, specifically designed to provide a high‑accuracy time reference for automation in power systems.

     

    Technical indicators

     

    Project

    Technical Specifications

     

     

     

     

    GPS   Receive Receiver

     

    Sensitivity

    Cold-start acquisition sensitivity: -148 dBm

    Hot-start acquisition sensitivity: -156 dBm

    Reacquisition sensitivity: -160 dBm

    Tracking sensitivity: -162 dBm

    Positioning accuracy:

    2.5  rice

    During initial positioning:

    32  seconds

    Cold start   TTFF :

    ≤35  seconds

    Hot start   TTFF:

    ≤1 second

    Recapture   TTFF :

    ≤1 second

    Timing accuracy  :

    <  ±  30ns

     

     

     

    Beidou Satellite

    Star Reception machine

     

    Sensitivity

    Cold-start acquisition sensitivity: -148 dBm

    Hot-start acquisition sensitivity: -156 dBm

    Reacquisition sensitivity: -160 dBm

    Tracking sensitivity: -162 dBm

    Supports BeiDou navigation satellite signals (BeiDou-3), including B1I, B1C, and B2a service signals.

    Positioning accuracy:

    2.5  rice

    During initial positioning:

    32  seconds

    Cold start   TTFF :

    ≤35  seconds

    Hot start   TTFF:

    ≤1 second

    Recapture   TTFF :

    ≤1 second

    Timing accuracy  :

    <  ±  30ns

    Device Interface

    Flexibly configured according to actual application needs.

     

    Network

    Interface Specification

    10Base-T/100Base-TX  Adaptive, MDI/MDI‑X, automatic polarity reversal, IEEE 802.3

    Agreement

    ARP, ICMP, UDP, NTP, SNTP, PTP, IP, Teln and

    UDP   Receiving host

    16 groups, supporting broadcast and multicast, meeting the time‑synchronization requirements of an unlimited number of hosts.

     

     

     

     

     

    Serial port report Text

    Serial port parameters

    Baud rate: 600 bps to 115,200 bps, software-configurable; data bits, parity bit, and stop bits are configurable.   Set.

     

     

    Message Format (Software) Optional)

    1. Q/GD001-1154-3--2005 Guangdong Power Grid Substation   GPS   Technical Specification for Satellite Time Synchronization Equipment   Formal report format;

    2. Standard Design for Transmission and Transformation Projects of State Grid Corporation, 110–500 kV   Substation secondary system section (none)   Custom information) message format;

    3. Standard time message format for the serial port;

    4. Serial port time message format with frequency description;

    5. GPZDA

    Optical fiber

    Time accuracy:   ±   1 ms. Signal: FTX. Single-mode, Multi-mode optional.

    RS232

    Time accuracy:   ±   1 ms. Signals: TX, GND.

    RS485

    Time accuracy:   ±   1 ms. Signals: TA, TB; each channel can drive up to 128 loads.

    TTL

    Time accuracy:   ±   1 ms. Signals: TX, GND.

     

     

    Pulse    (PPS,   PPM,

    PPH)

    On time along

    TTL   Level: Rising edge, rise time ≤ 50 ns; RS‑422, RS‑485: rising edge, rise   Time ≤ 50 ns; optical fiber: rising edge; static dry contact: rising edge, rise time ≤   1 μs.

    Level pulse width

    10 ms to 800 ms   The software is configurable, with a step size of 1 ms.

    Optical fiber

    Time accuracy:   ±   1 μs. Signal: FTX. Single-mode and multi-mode options available.

    RS232

    Time accuracy:   ±   1 μs. Signals: TX, GND.

    RS485

    Time accuracy:   ±   1 μs. Signals: TA, TB. Each channel can drive up to 128 loads.

    TTL

    Time accuracy:   ±   1 μs. Signals: TX, GND.

    OC gate output

    Time accuracy:   ±   1 μs. Signals: C, E. C   External applied voltage   V CE: Maximum   300 VDC. CE

    Allowable collector–emitter current I_CE: maximum   200 mA.

    IRIG-B

    Symbol information

    Symbol width: 1 per second   Frame, each frame contains 100   One symbol, with each symbol lasting 10 ms.

    The time‑code information includes: time zone information, time quality information, and leap seconds. Identification information, SBS   Information

    Optical fiber

    Time accuracy:   ±   1 μs. Signal: FTX. Single-mode and multi-mode options available.

    RS232

    Time accuracy:   ±   1 μs. Signals: TX, GND.

    RS485

    Time accuracy:   ±   1 μs. Jitter time: ≤10 0ns. Signals: TA, TB. Each channel can support up to   Drives 128 loads.

    TTL

    Time accuracy:   ±   1 μs. Signals: TX, GND.

     

    IRIG-BAC

    Time accuracy:   ±20 μs, balanced mode   600 Ω   , it can drive at 13 Vpp   330 Ω   The above   Purely resistive load, output amplitude: 2 ~   13 Vpp, continuously software-adjustable; modulation ratio: 2 to 8, software-controlled.   Adjustable; zero-crossing time offset: -30 to 30   microseconds Software-adjustable (used to enhance AC modulation)   The time demodulation accuracy of the code square.

     

     

     

     

    DCF77

    Optical fiber

    Time accuracy:   ±   1 μs. Signal: FTX. Single-mode and multi-mode options available.

    RS232

    Time accuracy:   ±   1 μs. Signals: TX, GND.

    RS485

    Time accuracy:   ±   1 μs. Signals: TA, TB. Each channel can drive up to 128 loads.

    TTL

    Time accuracy:   ±   1 μs. Signals: TX, GND.

    OC gate output

    Time accuracy: ±   1 μs. Signals: C, E. CE   External applied voltage    CE: Maximum   300 VDC. C   interval

    Allowable Collector-Emitter Current I_CE: Maximum   200 mA.

    NTP/SNTP

    Time accuracy: 100 μs, standard 10/100BaseT   Ethernet   RJ45 interface/100BaseT   Optical fiber mouth

    PTP (IEEE 1588)

    Time accuracy: 100 ns, standard 10/100BaseT   Ethernet   RJ45 interface/100BaseT   Fiber optic port

    Timekeeping accuracy

    Timekeeping accuracy: 1 μs/hour; for applications requiring higher precision, the crystal oscillator can be replaced.

    Crystal oscillator type (to be specified when placing the order)

    5×10 -8   (1 μs/hour, 24   μs/   Day)    2×10 -11   (1.2ns/   minutes, 1.728 μs/   Day)   Choose between

    Alarm contact type

    Relay dry contact, 2+1   Alarm output (device fault alarm, loss-of-synchronization alarm, and device power-off alarm)   Police ), Contact rating: 10 A (NO) / 250 VAC, 5 A (NO) / 30 VDC, 3 A (NC) / 30 VDC.

     

    Insulation   Can

    Insulation resistance

    The insulation resistance between each conductive circuit and ground is greater than 500 MΩ.

    Dielectric strength

    Circuit with a rated insulation voltage greater than 60 V: 1.5 kV   Power-frequency voltage or  2.1kV  Direct current voltage   For circuits with a rated insulation voltage ≤ 60 V: 500 V   Power-frequency voltage or  710V  Direct current voltage

    Impulse voltage

    Circuit with a rated insulation voltage greater than 60 V: 5 kV

    For circuits with a rated insulation voltage ≤ 60 V: 1 kV

     

     

     

     

     

     

    EMC

    Electrostatic Discharge Immunity

    Air discharge:   ±15 kV; Contact discharge:   ±8kV

    Radiofrequency electromagnetic field radiation   Immunity

    10 V/m; 80 MHz–1 GHz; Modulation: 80% AM

    Electrical Fast Transient Pulse   Group immunity to interference

    ±4 kV, 2.5 kHz (power supply, alarm output) );   ±2 kV, 5 kHz (communication)

    Surge (impulse) immunity degree

    Common-mode: ±4 kV, Differential-mode: ±2 kV

    Power-frequency magnetic field immunity

    Steady magnetic field: 30 A/m; transient magnetic field (3 s): 300 A/m

    Pulse magnetic field immunity

    Magnetic field strength: 300 A/m

    Damped oscillating magnetic field resistance   Disturbance degree

    Magnetic field strength: 30 A/m

    Damped oscillatory wave immunity   degree

    Common-mode: ±2.5 kV; differential-mode: ±1 kV; 1 MHz, 100 kHz

    MTBF

    >350000h

     

  • Product Overview

    With the advancement of network technologies, the demand for time synchronization in systems has become increasingly urgent, and the required precision of time synchronization has also grown ever higher. High,   The card-insertion type DNTS-9, developed by Beijing Zhongxinchuang Technology Co., Ltd., is a A smart, high-precision satellite time‑synchronization device, specifically designed for power systems. An automated time synchronization device that provides a high-precision time reference. From   GPS , Beidou, GLONASS Galileo, 4G, CDMA   Obtain on the system Standard time information, used simultaneously GNSS   Priority can be defined when using a satellite receiver. Level, supports a single receiver /Double-receiver, single-antenna/dual-antenna configuration,   Each receiver can be configured for time synchronization either individually or in combination. Mode; when two receivers and other available… When all time sources have no signal, DNTS -9   Use It uses a built-in temperature-compensated crystal oscillator or a rubidium atomic clock for timekeeping and continuously provides time services to external users. Self-developed all-digital phase-locked loop technology and training It employs an algorithm that delivers higher timing accuracy and more precise time synchronization. The technology, along with the corresponding timing terminal, timing system, and method, as well as approaches for enhancing the performance of clock systems, significantly improves both the accuracy and stability of time dissemination.

    This device employs microcontroller-based control and a hardware–software integrated design, fully leveraging the capabilities of the receiving components. Consequently, the system exhibits high reliability. High in sex,   With features such as extensive functionality, high precision, excellent cost-effectiveness, and ease of operation, it fully meets the time synchronization requirements of power systems.

     

     

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Product Overview

With the advancement of network technologies, the demand for time synchronization in systems has become increasingly urgent, and the required precision of time synchronization has also grown ever higher. High,   The card-insertion type DNTS-9, developed by Beijing Zhongxinchuang Technology Co., Ltd., is a A smart, high-precision satellite time‑synchronization device, specifically designed for power systems. An automated time synchronization device that provides a high-precision time reference. From   GPS , Beidou, GLONASS Galileo, 4G, CDMA   Obtain on the system Standard time information, used simultaneously GNSS   Priority can be defined when using a satellite receiver. Level, supports a single receiver /Double-receiver, single-antenna/dual-antenna configuration,   Each receiver can be configured for time synchronization either individually or in combination. Mode; when two receivers and other available… When all time sources have no signal, DNTS -9   Use It uses a built-in temperature-compensated crystal oscillator or a rubidium atomic clock for timekeeping and continuously provides time services to external users. Self-developed all-digital phase-locked loop technology and training It employs an algorithm that delivers higher timing accuracy and more precise time synchronization. The technology, along with the corresponding timing terminal, timing system, and method, as well as approaches for enhancing the performance of clock systems, significantly improves both the accuracy and stability of time dissemination.

This device employs microcontroller-based control and a hardware–software integrated design, fully leveraging the capabilities of the receiving components. Consequently, the system exhibits high reliability. High in sex,   With features such as extensive functionality, high precision, excellent cost-effectiveness, and ease of operation, it fully meets the time synchronization requirements of power systems.

 

 

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