NI 6614 Specifications

SPECIFICATIONS
NI 6614
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This document lists the specifications of the NI PXIe-6614. The following specifications are
typical at 25 °C, unless otherwise noted.
Digital I/O/PFI
Physical Characteristics
Number of channels.......................................... 40 total, Port 0 (P0.<0..31>), Port 1 (P1.<0..7);
or PFI <0..39>
Ground reference .............................................. GND
Direction control............................................... Each terminal individually programmable as
input or output
Pull-down resistor............................................. 51 kΩ, pulled down to ground
Input voltage protection1 .................................. -3 V to 8 V
Output impedence............................................. 75 Ω
Waveform DIO Functionality
Terminals used .................................................. Port 0 (P0.<0..31>)
Port/sample size ................................................ Up to 32 bits
Waveform generation (DO) FIFO .................... 2,047 samples
Waveform generation (DI) FIFO ...................... 255 samples
DI Sample Clock frequency ............................. 0 to 10 MHz, system and bus activity dependent
DO Sample Clock frequency
Regenerate from FIFO.............................. 0 to 10 MHz
Streaming from memory........................... 0 to 10 MHz, system and bus activity dependent
Data transfers.................................................... DMA (scatter-gather), programmed I/O
Digital line filter settings .................................. 160 ns, 10.24 µs, 5.12 ms, disable
1
Stresses beyond those listed under Input voltage protection may cause permanent damage to the device.
Timing I/O (PFI) Functionality
Terminals used ..................................................PFI <0..39>
Functionality .....................................................Static digital input, static digital output, timing
input, timing output
Timing output sources.......................................Many counter, DI, and DO timing signals
Debounce filter settings ....................................90 ns, 5.12 µs, 2.56 ms, customer interval,
disable; programmable high and low transitions;
selectable per input
Recommended Operation Conditions
Level
Minimum
Maximum
Input High voltage, VIH
2V
5.25 V
Input Low voltage, VIL
0V
0.8 V
Output High current, IOH
—
-6 mA
Output Low current, IOL
—
6 mA
Electrical Characteristic
2
Level
Minimum
Maximum
Positive-going threshold, VT+
—
2.0 V
Negative-going threshold, NT-
0.8 V
—
Delta VT hysteresis, VT+ - VT-
0.5 V
—
IIL input low current (Vin = 0 V)
—
-10 μA
IIH input high current (Vin = 5 V)
—
200 μA
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NI 6614 Specifications
Digital I/O Characteristics
Figure 1. PFI <0..39>/P0/P1: IOH versus VOH
0
–5
I OH (mA)
–10
–15
–20
55 °C; min internal supply voltage
25 °C; typ internal supply voltage
0 °C; max internal supply voltage
–25
–30
2
3
4
5
6
VOH (V)
Figure 2. PFI <0..39>/P0/P1: IOL versus VOL
16
14
12
I OL (mA)
10
8
6
0 °C; max internal supply voltage
25 °C; typ internal supply voltage
55 °C; min internal supply voltage
4
2
0
0.0
0.2
0.4
0.6
1.0
0.8
1.2
VOL (V)
Counters/Timers
Number of counters/timers ............................... 8
Resolution ........................................................ 32 bits
NI 6614 Specifications
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Counter measurements
Measurements supported ..................................Frequency, edge counting, pulse, pulse-width,
semi-period, period, two-edge separation
Table 1. Maximum Source Frequency
Default
Source PFI
Lines *,†
Other PFI
Lines*
PXI
Trigger
PXI
Star
PXI_DSTAR
<A/B>
Frequency measurement
(MHz)
80
50
10
80
100
Edge counting without
prescaling (MHz)
25
25
10
25
25
Edge counting with 2x
prescaling (MHz)
50
50
10
50
50
Edge counting with 8x
prescaling (MHz)
80
50
10
80
100
Applications
*
The maximum source frequency is dependent on the external source used to drive the PFI lines as well
as any cables and accessories used to connect the source to the PXIe-6614. Refer to the NI 6614 User
Manual at ni.com/manuals for more information.
† Default
source PFI lines are PFI 11, PFI 15, PFI 19, PFI 23, PFI 27, PFI 31,PFI 35, and PFI 39.
Table 2. Minimum Pulse Width
Default
Source
PFI Lines
Other PFI
Lines
PXI
Trigger
PXI Star
PXI_DSTAR
<A/B>
6.25
10
50
6.25
5
Pulse, pulse width,
semi-period, period,
two-edge separation
(ns)
20
20
50
20
20
Edge counting without
prescaling (ns)
20
20
50
20
20
Edge counting with 2x
prescaling (ns)
10
10
50
10
10
Edge counting with 8x
prescaling (ns)
6.25
10
50
6.25
5
Applications
Frequency measurement
(ns)
4
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NI 6614 Specifications
Position measurement....................................... x1, x2, x 4 quadrature encoding with Channel Z
reloading; two-pulse encoding
Output applications........................................... Pulse, pulse train with dynamic updates,
frequency division, equivalent time sampling
Internal timebases ............................................. 100 kHz, 20 MHz, 100 MHz
External timebases ............................................ 0 MHz to 25 MHz; 0 MHz to 100 MHz on
PXIe-DSTAR<A,B>
Base clock accuracy.......................................... See the OCXO section
Inputs ................................................................ Gate, Source, HW_Arm, AUX, A, B, Z,
Up_Down, Sample Clock
Routing option for inputs
FIFO.......................................................... 127 samples per counter
Data transfers............................................ Dedicated scatter-gather, DMA controller for
each counter/timer
Frequency Generator
Number of channels.......................................... 1
Base clocks ....................................................... 100 kHz, 10 MHz, 20 MHz
Base clock accuracy.......................................... Refer to the Counter measurements section
Output ............................................................... Any PFI, PXI_TRIG, PXIe-DSTARC
Phase-Lock Loop (PLL)
Number of PLLs ............................................... 1
Reference clock locking frequencies
Reference Signal
PXIe_DSTAR<A,B>
PXI_STAR
PXIe_CLK100
Locking Input Frequency (MHz)
10, 20, 100
10, 20
100
PXI_TRIG <0..7>
10, 20
PFI <0..39>
10, 20
Output of PLL................................................... 100 MHz timebase; other signals derived from
100 MHz timebase including 20 MHz and
100 kHz timebases
NI 6614 Specifications
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OCXO
Nominal Frequency...........................................10 MHz
Warm-up time ...................................................5 minutes (to within 20 ppb of final frequency)
Retrace error1 ....................................................±10 ppb
Short term stability............................................±0.5 ppb per day (after 30 days of operation)
Long term stability............................................±50 ppb per year
System timing slot compatibility ......................Yes2
Base clock accuracy
Condition*
Value (ppb)†
Temperature drift only
±10
Temperature and 1 year drift (excluding retrace error)
±75
*
Within operating temperature range
†
Definition of 1 ppb = 1/109
External Digital Triggers
Source ...............................................................Any PFI, PXIe-DSTAR<A,B>, PXI_TRIG,
PXI_STAR
Polarity..............................................................Software-selectable or most signals
Counter/timer function......................................Gate, Source, HW_Arm, Aux, A, B, Z,
Up_Down, Sample Clock
Digital waveform generation (DO) function ....Start Trigger, Pause Trigger, Sample Clock,
Sample Clock Timebase
Digital waveform acquisition (DI) function .....Start Trigger, Reference Trigger, Pause Trigger,
Sample Clock, Sample Clock Timebase
Device-to-Device Trigger Bus
Input source.......................................................PXI_TRIG <0..7>, PXI_STAR,
PXIe-DSTAR<A,B>
Output destination.............................................PXI_TRIG <0..7>, PXIe_DSTAR<C>
Output selections...............................................10 MHz Clock; frequency generator output;
many internal signals
Debounce filter settings ....................................90 ns, 5.12 µs, 2.56 ms, custom interval, disable;
programmable high and low transitions;
selectable per input
1
2
6
Retrace is the ability of the OCXO to return to its original frequency after being powered off.
Test method: OCXO is turned on for 24 hours, and accuracy is measured. OXCO is turned off for 24 hours,
turned on for 2 hours, and accuracy is measured again. The difference between the two measurements is
the retrace error.
OCXO provides the backplane with an accurate 10 MHz clock. Refer to the NI 6614 User Manual at
ni.com/manuals for more information.
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NI 6614 Specifications
Bus Interface
Form factor ....................................................... x1 PXI Express, single slot,
PXI Express Hardware Specification
Revision 1.0 ECN-1 compliant
Slot compatibility ............................................. x1 and x4 PXI Express, PXI Express hybrid, or
PXI Express System Timing Slot
Calibration1
Recommended warm-up time........................... >30 minutes
Recommended calibration interval ................... 1 year
Power Requirements
+3.3 V ............................................................... 5.9 W maximum
+12 V ................................................................ 15.9 W maximum
Physical Requirements
Weight .............................................................. 180 g
Current Limits
Caution Exceeding the current limits may cause unpredictable behavior by the
device and/or chassis.
+5 V Terminal (at Pin 1 of Figure 3) ................ +4.25 V to +5.10 V, 1 A maximum
Environmental
Maximum altitude............................................. 2,000 m (at 25 °C ambient temperature)
Pollution Degree ............................................... 2
Indoor use only.
1
Refer to the NI 6614 Calibration Procedure at ni.com/manuals for more information about calibrating
your device.
NI 6614 Specifications
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Operating Environment
Ambient temperature range ..............................0 to 55 °C
(Tested in accordance with IEC 60068-2-1 and
IEC 60068-2-2. Meets MIL-PRF-28800F Class
3 low temperature limit and MIL-PRF-28800F
Class 2 high temperature limit)
Relative humidity range....................................10% to 90%, noncondensing
(Tested in accordance with IEC 60068-2-56.)
Storage Environment
Ambient temperature range ..............................-40 to 71 °C
(Tested in accordance with IEC 60068-2-1 and
IEC 60068-2-2. Meets MIL-PRF-28800F Class
3 limits.)
Relative humidity range....................................5% to 95%, noncondensing
(Tested in accordance with IEC 60068-2-56.)
Shock and Vibration
Operational shock .............................................30 g peak, half-since, 11 ms pulse
(Tested in accordance with IEC-60068-2-27.
Meets MIL-PRF-28800F Class 2 limits.)
Random vibration
Operating ..................................................5 Hz to 500 Hz, 0.3 grms
Nonoperating ............................................5 Hz to 500 Hz, 2.4 grms
(Tested in accordance with IEC-60068-2-64.
Nonoperating test profile exceeds the
requirements of MIL-PRF-28800F, Class 3.)
Clean the device with a soft, non-metallic brush. Make sure that the device is
completely dry and free from contaminants before returning it to service.
Note
Safety
This product meets the requirements of the following standards of safety for electrical equipment
for measurement, control, and laboratory use:
•
IEC 61010-1, EN 61010-1
•
UL 61010-1, CSA 61010-1
For UL and other safety certifications, refer to the product label or the Online
Product Certification section.
Note
8
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NI 6614 Specifications
Electromagnetic Compatibility
This product meets the requirements of the following EMC standards for electrical equipment
for measurement, control, and laboratory use:
•
EN 61326-1 (IEC 61326-1): Class A emissions; Basic immunity
•
EN 55011 (CISPR 11): Group 1, Class A emissions
•
EN 55022 (CISPR 22): Class A emissions
•
EN 55024 (CISPR 24): Immunity
•
AS/NZS CISPR 11: Group 1, Class A emissions
•
AS/NZS CISPR 22: Class A emissions
•
FCC 47 CFR Part 15B: Class A emissions
•
ICES-001: Class A emissions
Note In the United States (per FCC 47 CFR), Class A equipment is intended for use
in commercial, light-industrial, and heavy-industrial locations. In Europe, Canada,
Australia and New Zealand (per CISPR 11) Class A equipment is intended for use
only in heavy-industrial locations.
Note Group 1 equipment (per CISPR 11) is any industrial, scientific, or medical
equipment that does not intentionally generates radio frequency energy for the
treatment of material or inspection/analysis purposes.
Note For EMC declarations and certifications, and additional information, refer to
the Online Product Certification section.
CE Compliance
This product meets the essential requirements of applicable European Directives as follows:
•
2006/95/EC; Low-Voltage Directive (safety)
•
2004/108/EC; Electromagnetic Compatibility Directive (EMC)
Online Product Certification
To obtain product certifications and the Declaration of Conformity (DoC) for this product, visit
ni.com/certification, search by model number or product line, and click the appropriate
link in the Certification column.
NI 6614 Specifications
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Environmental Management
NI is committed to designing and manufacturing products in an environmentally responsible
manner. NI recognizes that eliminating certain hazardous substances from our products is
beneficial to the environment and to NI customers.
For additional environmental information, refer to the Minimize Our Environmental Impact web
page at ni.com/environment. This page contains the environmental regulations and
directives with which NI complies, as well as other environmental information not included in
this document.
Waste Electrical and Electronic Equipment (WEEE)
At the end of the product life cycle, all products must be sent to
a WEEE recycling center. For more information about WEEE recycling centers,
National Instruments WEEE initiatives, and compliance with WEEE Directive
2002/96/EC on Waste and Electronic Equipment, visit ni.com/environment/
weee.
EU Customers
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environment/rohs_chinaDŽ (For information about China RoHS compliance,
go to ni.com/environment/rohs_china.)
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NI 6614 Specifications
Pinout Diagram
Figure 3. NI 6614 Pinout
PFI 31/P0.31/CTR 2 SOURCE
D GND
PFI 28/P0.28/CTR 2 OUT
PFI 27/P0.27/CTR 3 SOURCE
D GND
PFI 24/P0.24/CTR 3 OUT
PFI 23/P0.23/CTR 4 SOURCE
D GND
CTR 4 OUT/PFI 20/P0.20
PFI 19/P0.19/CTR 5 SOURCE
D GND
CTR 5 OUT/PFI 16/P0.16
PFI 15/P0.15/CTR 6 SOURCE
PFI 14/P0.14/CTR 6 GATE
D GND
R GND
D GND
PFI 9/P0.9/CTR 7 AUX
CTR 7 OUT/PFI 8/P0.8
PFI 7/P0.7
D GND
PFI 4/P0.4
PFI 3/P0.3
D GND
PFI 0/P0.0
PFI 32/P1.0/CTR 1 OUT
PFI 34/P1.2/CTR 1 GATE
PFI 35/P1.3/CTR 1 SOURCE
PFI 33/PFI1.1/CTR 1 AUX
PFI 36/P1.4/CTR 0 OUT
RESERVED
PFI 38/P1.6/CTR 0 GATE
PFI 39/P1.7/CTR 0 SOURCE
+5 V
34 68
33 67
32 66
31 65
30
29
28
27
26
25
24
23
22
21
20
19
18
17
16
15
14
13
12
11
10
9
8
7
6
5
4
3
2
1
64
63
62
61
60
59
58
57
56
55
54
53
52
51
50
49
48
47
46
45
44
43
42
41
40
39
38
37
36
35
D GND
PFI 30/P0.30/CTR 2 GATE
PFI 29/P0.29/CTR 2 AUX
D GND
PFI 26/P0.26/CTR 3 GATE
PFI 25/P0.25/CTR 3 AUX
D GND
PFI 22/P0.22/CTR 4 GATE
PFI 21/P0.21/CTR 4 AUX
D GND
PFI 18/P0.18/CTR 5 GATE
PFI 17/P0.17/CTR 5 AUX
R GND
D GND
PFI 13/P0.13/CTR 6 AUX
CTR 6 OUT/PFI 12/P0.12
PFI 11/P0.11/CTR 7 SOURCE
PFI 10/P0.10/CTR 7 GATE
D GND
D GND
PFI 6/P0.6
PFI 5/P0.5
D GND
PFI 2/P0.2
PFI 1/P0.1
R GND
D GND
D GND
PFI 37/P1.5/CTR 0 AUX
D GND
RESERVED
RESERVED
D GND
R GND
R GND: Pins are not connected to Ground if using an SH68-68-D1 shielded cable;
Pins are connected to D GND if using an R6868 ribbon cable.
RESERVED: Should not be used as these pins are weakly pulled down to D GND.
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