Network Latency Average Sample Clauses

Network Latency Average. Network architecture is designed with a network latency objective of less than 12ms as defined as the average roundtrip transmission delay from the gateway router (customer) to the core backbone router over a month period.
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Related to Network Latency Average

  • Mileage Measurement Where required, the mileage measurement for LIS rate elements is determined in the same manner as the mileage measurement for V&H methodology as outlined in NECA Tariff No. 4.

  • Uptime bookinglab shall ensure that the Booking Service will be available, excluding Downtime caused by Scheduled Maintenance, Emergency Maintenance or Force Majeure event, 99.5% of the time in any one calendar month (first day to last day) (the “Service Level”). The Service Level will not apply (and therefore no Service Credits will be applicable) to the extent that any Service Level Failure is caused by: (a) a Penetration Test conducted by Customer without the prior written approval of bookinglab; or (b) Customer’s failure to comply with specific instructions provided by bookinglab; or (c) a failure of the Customer to comply with any Customer responsibility or obligation detailed in a Statement of Work, Order Form or the Master Subscription Agreement; or (d) Customer’s failure to adhere to JRNI’s or bookinglab’s best practice guidelines for the use of the API.

  • FREQUENCY AND CAPACITY LEVELS No restriction on frequency, capacity and aircraft type

  • Originating Switched Access Detail Usage Data A category 1101XX record as defined in the EMI Telcordia Practice BR-010-200- 010.

  • System Availability System Availability percentage is calculated as follows:  Total MinutesintheMonth −Downtime   System Availability%age =  Total MinutesintheMonth *100    System Availability SLA (“SLA”) 99.5% System Availability percentage during each Month for productive versions Credit 2% of Monthly Subscription Fees for each 1% below SLA, not to exceed 100% of Monthly Subscription Fees Excluded Downtime Total Minutes in the Month attributable to: (i) a Scheduled Downtime for which a Regular Maintenance Window is described in Section 4 below, or (ii) any other Scheduled Downtime according to Section 4 for which the customer has been notified at least five (5) business days prior to such Scheduled Downtime or (iii) unavailability caused by factors outside of SAP’s reasonable control, such as unpredictable and unforeseeable events that could not have been avoided even if reasonable care had been exercised. Scheduled Downtime Scheduled Downtime for the applicable Cloud Services to which customer has subscribed is set forth in Section 4 below entitled “Maintenance Windows for Cloud Services”.

  • Data Usage We may use Data for the following purposes (in each case to the extent permitted by law):

  • CAISO Monthly Billed Fuel Cost [for Geysers Main only] The CAISO Monthly Billed Fuel Cost is given by Equation C2-1. CAISO Monthly Billed Fuel Cost Equation C2-1 = Billable MWh ◆ Steam Price ($/MWh) Where: • Steam Price is $16.34/MWh. • For purposes of Equation C2-1, Billable MWh is all Billable MWh Delivered after cumulative Hourly Metered Total Net Generation during the Contract Year from all Units exceeds the Minimum Annual Generation given by Equation C2-2. Equation C2-2 Minimum Annual Generation = (Annual Average Field Capacity ◆ 8760 hours ◆ 0.4) - (A+B+C) Where: • Annual Average Field Capacity is the arithmetic average of the two Field Capacities in MW for each Contract Year, determined as described below. Field Capacity shall be determined for each six-month period from July 1 through December 31 of the preceding calendar year and January 1 through June 30 of the Contract Year. Field Capacity shall be the average of the five highest amounts of net generation (in MWh) simultaneously achieved by all Units during eight-hour periods within the six-month period. The capacity simultaneously achieved by all Units during each eight-hour period shall be the sum of Hourly Metered Total Net Generation for all Units during such eight-hour period, divided by eight hours. Such eight-hour periods shall not overlap or be counted more than once but may be consecutive. Within 30 days after the end of each six-month period, Owner shall provide CAISO and the Responsible Utility with its determination of Field Capacity, including all information necessary to validate that determination. • A is the amount of Energy that cannot be produced (as defined below) due to the curtailment of a Unit during a test of the Facility, a Unit or the steam field agreed to by CAISO and Owner. • B is the amount of Energy that cannot be produced (as defined below) due to the retirement of a Unit or due to a Unit’s Availability remaining at zero after a period of ten Months during which the Unit’s Availability has been zero. • C is the amount of Energy that cannot be produced (as defined below) because a Force Majeure Event reduces a Unit’s Availability to zero for at least thirty (30) days or because a Force Majeure Event reduces a Unit’s Availability for at least one hundred eighty (180) days to a level below the Unit Availability Limit immediately prior to the Force Majeure Event. • The amount of Energy that cannot be produced is the sum, for each Settlement Period during which the condition applicable to A, B or C above exists, of the difference between the Unit Availability Limit immediately prior to the condition and the Unit Availability Limit during the condition.

  • Packet Switching Capability 4.5.1 The packet switching capability network element is defined as the function of routing or forwarding packets, frames, cells or other data units based on address or other routing information contained in the packets, frames, cells or other data units.

  • EPP service availability Refers to the ability of the TLD EPP servers as a group, to respond to commands from the Registry accredited Registrars, who already have credentials to the servers. The response shall include appropriate data from the Registry System. An EPP command with “EPP command RTT” 5 times higher than the corresponding SLR will be considered as unanswered. If 51% or more of the EPP testing probes see the EPP service as unavailable during a given time, the EPP service will be considered unavailable.

  • Terminating Switched Access Detail Usage Data A category 1101XX record as defined in the EMI Telcordia Practice BR-010-200- 010.

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