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BPNGA16NB-TR 데이터시트 PDF




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부품번호 BPNGA16NB-TR 기능
기능 Quad Differential Drivers BDG1A/ BDP1A/ BDGLA/ BPNGA/ BPNPA/ and BPPGA
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BPNGA16NB-TR 데이터시트, 핀배열, 회로
Data Sheet
January 1999
Quad Differential Drivers
BDG1A, BDP1A, BDGLA, BPNGA, BPNPA, and BPPGA
Features
s Pin-equivalent to the general-trade 26LS31 device,
with improved speed, reduced power consumption,
and significantly lower levels of EMI
s Four line drivers per package
s Meets ESDI standards
s 2.0 ns maximum propagation delay
s Single 5.0 V ± 10% supply
s Operating temperature range: 40 °C to +125 °C
(wider than the 41 Series)
s 400 Mbits/s maximum data rate
s Logic to convert TTL input logic levels to differen-
tial, pseudo-ECL output logic levels
s No line loading when VCC = 0 (BDG1A, BDP1A
only)
s High output driver for 50 loads
s <0.2 ns output skew (typical)
s On-chip 220 loads available
s Third-state outputs available
s Surge-protection to ±60 V for 10 ms available
(BPNGA, BPNPA, BPPGA)
s Available in four package types
s ESD performance better than the 41 Series
s Lower power requirement than the 41 Series
Description
These quad differential drivers are TTL input-to-
pseudo-ECL-differential-output used for digital data
transmission over balanced transmission lines. All
devices in this family have four drivers with a single
enable control in a common package. These drivers
are compatible with many receivers, including the
Lucent Technologies Microelectronics Group 41
Series receivers and transceivers. They are pin
equivalent to the general-trade 26LS31, but offer
increased speed, decreased power consumption,
and significantly lower levels of electromagnetic inter-
ference (EMI). They replace the Lucent 41 Series
drivers.
The BDG1A device is the generic driver in this family
and requires the user to supply external resistors on
the circuit board for impedance matching.
The BDGLA is a low-power version of the BDG1A,
reducing the power requirement by more than one
half. The BDGLA features a 3-state output with a typ-
ical third-state level of 0.2 V.
The BDP1A is equivalent to the BDG1A but has
220 termination resistors to ground on each driver
output. This eliminates the need for external pull-
down resistors when driving a 100 impedance line.
The BPNGA and BPNPA are equivalent to the
BDG1A and BDP1A, respectively, except that a light-
ning protection circuit has been added to the driver
outputs. This circuit will absorb large transitions on
the transmission lines without destroying the device.
The BPPGA combines the features of the BPNGA
and BPNPA. Two of the gates have their outputs ter-
minated to ground through 220 resistors while the
two remaining gates require external termination
resistors.
When the BDG1A and the BDP1A devices are pow-
ered down, the output circuit appears as an open cir-
cuit relative to the power supplies; hence, they will
not load the transmission line. For those circuits with
termination resistors, the line will remain impedance
matched when the circuit is powered down. The
BPNGA, BPNPA, BPPGA, and BDGLA will load the
transmission line, because of the protection circuit,
when the circuit is powered down.
The packaging options that are available for these
quad differential line drivers include a 16-pin DIP; a
16-pin, J-lead SOJ; a 16-pin, gull-wing SOIC; and a
16-pin, narrow-body, gull-wing SOIC.




BPNGA16NB-TR pdf, 반도체, 판매, 대치품
Quad Differential Drivers
BDG1A, BDP1A, BDGLA, BPNGA, BPNPA, and BPPGA
Data Sheet
January 1999
Electrical Characteristics (continued)
Table 3. Voltage and Current Characteristics
For the variation in VOH and VOL over the temperature range, see Figures 7 and 8.
TA = –40 °C to +125 °C.*
Parameter
Output Voltages:
Low*
High*:
BDG1A, BDP1A, BPNGA, BPNPA, BPPGA
BDGLA
Differential Voltage (VOH – VOL)
Output Voltages (TA = 0 °C to 85 °C):
Low*
High*:
BDG1A, BDP1A, BPNGA, BPNPA, BPPGA
BDGLA
Differential Voltage (VOH – VOL)
Third State, IOH = –1.0 mA, VCC = 4.5 V:
BDG1A, BDP1A, BPNGA, BPNPA, BPPGA
BDGLA
Input Voltages:
Low, VCC = 5.5 V:
Data Input
Enable Input
High, VCC = 4.5 V
Clamp, VCC = 4.5 V, II = –5.0 mA
Short-circuit Output Current, VCC = 5.5 V
Input Currents, VCC = 5.5 V:
Low, VI = 0.4 V
High, VI = 2.7 V
Reverse, VI = 5.5 V
Output Resistors:
BDP1A, BPNPA, BPPGA§
Symbol
VOL
VOH
VOH
VDIFF
VOL
VOH
VOH
VDIFF
VOZ
VOZ
VIL
VIL
VIH
VIK
IOS
IIL
IIH
IIH
RO
Min
VOH – 1.4
VCC 1.8
VCC 2.5
0.65
VOH – 1.4
VCC 1.5
VCC 2.5
0.8
2.0
–100
Typ
VOH 1.1
VCC 1
VCC 2
1.1
VOH 1.1
VCC 1
VCC 2
1.1
VOL 0.5
0.2
Max
VOH 0.65
VCC 0.8
VCC 1.6
1.4
VOH 0.8
VCC 0.8
VCC 1.6
1.4
VOL 0.2
0.5
— 0.8
— 0.7
——
1.0
——
400
— 20
— 100
220 —
* Values are with terminations as per Figure 4 or equivalent.
† The input levels and difference voltage provide zero noise immunity and should be tested only in a static, noise-free environment.
‡ Test must be performed one lead at a time to prevent damage to the device.
§ See Figure 1 for BPPGA terminations.
Unit
V
V
V
V
V
V
V
V
V
V
V
V
V
V
mA
µA
µA
µA
4 Lucent Technologies Inc.

4페이지










BPNGA16NB-TR 전자부품, 판매, 대치품
Data Sheet
January 1999
Quad Differential Drivers
BDG1A, BDP1A, BDGLA, BPNGA, BPNPA, and BPPGA
Test Conditions
Output Characteristics
Parametric values specified under the Electrical Char-
acteristics and Timing Characteristics sections for the
data transmission driver devices are measured with the
following output load circuits.
DO(+)
200
100
DO(–)
200
Figure 6 illustrates typical driver output characteristics.
Included are load lines for two typical termination con-
figurations.
OUTPUT VOLTAGE (V)
VCC – 2 V
VCC – 1 V
VCC
VOH
10
BDG1A, BPNGA, BDGLA, BPPGA (Gates A & B)
12-2271F
100
DO DO
BDP1A, BPNPA, BPPGA (Gates C & D)
12-2271.bC
Figure 4. Driver Test Circuit
+5 V
Y LOAD
20
VOL
30
π LOAD
40
12-2269F
A. Output Current vs. Output Voltage for Loads
Shown in C and D (BDG1A, BDP1A, BPNGA,
BPNPA, and BPPGA)
OUTPUT VOLTAGE (V)
VCC – 3 V
VCC – 2 V
VCC – 1 V
VCC
VOH
10
110
DUT
110
+60 V
SURGE
10 µs
DURATION
1 ms
REPITITION
+
+60 V
+ SURGE
10 µs
DURATION
1 ms
REPETITION
12-2640.aF
Note: Surges can be applied simultaneously, but never in opposite
polarities.
Y LOAD
20
VOL
30
π LOAD
40
12-2818aC
B. Output Current vs. Output Voltage for Loads
Shown in C and D (BDGLA)
60
DO
60
90
DO
Figure 5. Lightning-Surge Testing Configuration
(BPNGA, BPNPA, and BPPGA)
C. Y Load
12-2270F
DO(+)
200
100
DO(–)
200
Lucent Technologies Inc.
D. π Load
12-2271F
Figure 6. Driver Output Current vs. Voltage
Characteristics
7

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부품번호상세설명 및 기능제조사
BPNGA16NB-TR

Quad Differential Drivers BDG1A/ BDP1A/ BDGLA/ BPNGA/ BPNPA/ and BPPGA

Agere Systems
Agere Systems

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