What is E1? How to Use E1
What is E1 The European 30-channel pulse code modulation PCM is abbreviated as E1, with a rate of 2.048Mbit/s. China adopts the European E1 standard. One time-division multiplexed frame of E1 (with
What is E1
The European 30-channel pulse code modulation PCM is abbreviated as E1, with a rate of 2.048Mbit/s. China adopts the European E1 standard.
One time-division multiplexed frame of E1 (with a frame length of T=125us) is divided into 32 equal timeslots, numbered CH0CH31. Among them, timeslot CH0 is used for frame synchronization, timeslot CH16 is used to transmit signaling, and the remaining CH1CH15 and CH17~CH31, totaling 30 timeslots, are used for 30 voice channels. Each timeslot transmits 8 bits, thus totaling 256 bits. 8000 frames are transmitted per second, so the data rate of the PCM primary group E1 is 2.048Mbit/s.
1. One E1 is a 2.048M link, encoded using PCM.
2. The frame length of one E1 is 256 bits, divided into 32 timeslots, with one timeslot being 8 bits.
3. 8k E1 frames pass through the interface per second, i.e., 8K*256=2048kbps.
4. Each timeslot occupies 8 bits in the E1 frame, 8*8k=64k, meaning one E1 contains 32 channels of 64K.
E1 Frame Structure
E1 has three modes: framed, multi-framed, and unframed. In a framed E1, timeslot 0 is used to transmit frame synchronization data, and the remaining 31 timeslots can be used to transmit valid data; in a multi-framed E1, in addition to timeslot 0, timeslot 16 is used to transmit signaling, and only timeslots 1 to 15 and 17 to 31, totaling 30 timeslots, can be used to transmit valid data; in an unframed E1, all 32 timeslots can be used to transmit valid data.
Brief Description of E1 Channel Frame Structure
In the E1 channel, 8 bits form one timeslot (TS), 32 timeslots form one frame (F), and 16 frames form one multiframe (MF). In a frame, TS0 is mainly used to transmit the frame alignment signal (FAS), CRC-4 (cyclic redundancy check), and remote alarm indication; TS16 mainly transmits channel-associated signaling (CAS), multiframe alignment signal, and multiframe remote alarm indication; TS1 to TS15 and TS17 to TS31, totaling 30 timeslots, transmit voice or data information. We refer to TS1 to TS15 and TS17 to TS31 as the "payload," and TS0 and TS16 as the "overhead." If out-of-band common channel signaling (CCS) is adopted, TS16 loses its signaling transmission purpose, and this timeslot can also be used to transmit information signals. In this case, the payload of the frame structure is TS1 to TS31, and the overhead is only TS0.
Introduction to E1 via PCM Coding
From the timeslot characteristics of E1 in PCM coding, E1 is divided into 32 timeslots TS0-TS31. Each timeslot is 64K. Among them, TS0 is occupied by the frame synchronization code, Si, Sa4, Sa5, Sa6, Sa7, and the A bit. If the system uses CRC check, the Si bit position is changed to transmit the CRC check code. TS16 is the signaling timeslot. When signaling (common channel signaling or channel-associated signaling) is used, this timeslot is used to transmit signaling, and users cannot use it to transmit data. Therefore, the 2M PCM code types are:
① PCM30: PCM30 has 30 user-available timeslots, TS1-TS15,
TS17-TS31. TS16 transmits signaling, without CRC check.
② PCM31: PCM31 has 31 user-available timeslots, TS1-TS15,
TS16-TS31. TS16 does not transmit signaling, without CRC check.
③ PCM30C: PCM30C has 30 user-available timeslots, TS1-TS15,
TS17-TS31. TS16 transmits signaling, with CRC check.
④ PCM31C: PCM31C has 31 user-available timeslots, TS1-TS15,
TS16-TS31. TS16 does not transmit signaling, with CRC check.
CE1 divides the 2M transmission into 30 timeslots of 64K, generally written as n×64.
You can use several of these timeslots, i.e., only utilize n channels of 64K, and it must be connected to CE1/PRI.
CE1----can carry data on up to 31 channels; timeslots 1----31; timeslot 0 transmits synchronization.
Interface Impedance
The impedance of the G.703 unbalanced interface is 75 ohm, and the impedance of the balanced interface is 120 ohm. There are three methods for using E1:
1. Use the entire 2M as one link, such as DDN 2M.
2. Use the 2M as several 64k channels or combinations thereof, such as 128K, 256K, etc. This is CE1.
3. When used as a digital trunk for a voice switch, this is also the most original use of E1, which is to use one E1 as 32 channels of 64K. However, timeslot 0 and timeslot 16 are used for signaling, so one E1 can transmit 30 voice channels. PRI is one of the most common access methods, with the standard name being PRA signaling.
Use a WAN interface card such as the 2611, connected to the E1 line via a V.35-G.703 converter. This cost should be lower than an E1 card. Currently, DDN 2M rate lines are usually extended to the user side via HDSL lines.
E1 can also be provided by an optical terminal at the user side, with the fiber extended from the transmission equipment.
Usage Precautions
When interconnecting E1 interfaces, both sides must not have signal loss/frame slip/multiframe slip/slip alarm on their E1, but both sides must be completely consistent in E1 interface parameters, because inconsistencies in certain characteristic parameters will not cause any alarm on the indicator lights or alarm console, but will cause data channel disconnection/errors/slips/out-of-synchronization. These characteristic parameters mainly include: impedance/frame structure/CRC4 check. Impedance has two types: 75ohm and 120ohm. Frame structures include PCM31/PCM30/unframed. In Raytrans PCM optical terminals, PCM31 and PCM30 are described as CCS and CAS respectively. When interconnecting, the network management personnel should be informed to select CCS. Whether to perform CRC check can be flexibly selected; the key is that both sides must be consistent, so as to ensure the normal operation of the physical layer.
