www.ti.com

 

 

 

 

 

 

Physical Description

 

 

 

Table 5. Bill of Materials

(continued)

 

 

 

VALUE

FOOTPRINT

QTY

PART NUMBER

VENDOR

DIGI-KEY NUMBER

REF DESIGNATOR

NOT

INSTALLED

 

 

 

 

 

 

 

 

 

FERRITE BEADS, CONNECTORS, JUMPERS, JACKS, ICs, ETC.

 

 

Ferrite bead

1206

5

EXC-ML32A680U

Panasonic

P10437CT-ND

FB2, FB3, FB4, FB6,

FB8, FB9,

 

 

 

 

 

 

FB7

FB10

Inductor, SMT, 15-μH, 2.6-A

COIL-CDRH8D43

1

CDRH8D43-150

Sumida

 

L1

 

Inductor, SMT, 5-μH, 2.9-A

COIL-CDRH6D38

1

CDRH6D38-5R0

Sumida

CDRH6D38-5R0NC-ND

L2

 

0.0-Ω, 1/8-W, 5% resistor

805

2

ERJ-6GEY0R00V

Panasonic

P0.0ACT-ND

L3, L4

 

Red test point

Test_point2

8

5000k

Keystone

5000K-ND

TP1, TP4, TP9, TP10

TP3 TP11

 

 

 

 

 

 

 

TP12 TP13

Black test point

Test_point2

4

5001k

Keystone

5000K-ND

TP5 TP6 TP7 TP8

 

40-pin header

20×2×.1

1

HTSW-120-07-L-D

Samtec

 

J4

 

40-pin header smt

20X2_SMT_MMS_

2

MMS-120-02-T-DV

Samtec

 

J5, J6

 

 

SAMTEC

 

 

 

 

 

 

Red banana jacks

BANANA_JACK

5

ST-351A

Allied

N/A

J11, J12, J13, J14,

 

 

 

 

 

 

 

J15

 

Black banana jacks

BANANA_JACK

4

ST-351B

Allied

N/A

J9, J10, J16, J17

 

SMA connectors

SMA_Jack

3

901-144-8RFX

AMP

ARFX1231-ND

J1, J3, J7

J8

3POS_header

3pos_jumper

1

HTSW-150-07-L-S

Samtec

 

JP2(1)

 

6-pin header

6×1×.1

1

HTSW-120-07-L-D

Samtec

 

JP1

 

3-pin power connector

3term_screw_con

0

93F7124

Newark

 

 

J20

Transformer

TC4-1W_

3

TC4-1W

Mini-Circuits

 

T1, T2, T3

 

 

TRANSFORMER

 

 

 

 

 

 

Diode, Schottky, 1-A, 20-V

DIODE-MBRM120

1

MBRM120E

ON Semiconductor

 

D2

 

Diode, Schottky, 3-A, 20-V

DO-214AB(SMC)

1

SS32

Vishay

 

D1

 

Green SM_LED_1206

LED-1206

2

CMD15-21VGC/TR8

Panasonic

L62205CT-ND

D3, D4

 

MOSFET, P-CH, 20-V, 4.7-A,

3-SOT-23

2

SI2323DS

Vishay

 

Q1, Q2

 

39-MΩ

 

 

 

 

 

 

 

TRANS BIAS NPN, 50-V

SOT416

1

DTC114EET1

ON Semiconductor

DTC114EET1OS-ND

Q3

 

Switch

EVQ-PJ

1

EVQ-PJX04M

Panasonic

P8050SCT-ND

S1

 

Switch, 8-Pos, half-pitch SMT

SWITCH_8POS_

1

TDA08H0SK1

ITT

CKN1365-ND

SW1

 

 

SMT

 

 

 

 

 

 

3-circuit jumpers

SJP3_RESISTOR

2

ERJ-3GEY0R00V

Panasonic

P0.0GCT-ND

SJP4(2), SJP5(3)

 

3-circuit jumpers

SJP3_402

2

ERJ-2GE0R00X

Panasonic

P0.0JCT-ND

SJP1(4), SJP2(5)

 

(1)Add jumper for JP2 between pins 1 to 2.

(2)Add jumper for SJP4 between pins 2 and 3 (use a 0-Ωresistor to short pins).

(3)Add jumper for SJP5 between pins 2 and 3 (use a 0-Ωresistor to short pins).

(4)Add jumper for SJP1 between pins 1 and 2 (use a 0-Ωresistor to short pins).

(5)Add jumper for SJP2 between pins 1 and 2 (use a 0-Ωresistor to short pins).

SLWU028B –January 2006 –Revised November 2006

23

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Page 23
Image 23
Texas Instruments 47, 46, 27, 45, ADS5525 manual Bill of Materials

ADS5525, 27, 47, 45, 46 specifications

Texas Instruments is a leader in the field of analog and mixed-signal semiconductors and offers a diverse portfolio of high-performance products. Among its notable offerings are the ADCs (Analog-to-Digital Converters) such as the TI 46, 45, 47, 27, and the ADS5525. These devices are engineered to meet the demanding requirements of various applications, including communications, industrial, and medical systems.

The Texas Instruments 46 series ADCs are recognized for their high speed and precision. They utilize a 14-bit architecture with sampling rates of up to 1.5 GSPS, which makes them ideal for high-frequency applications such as communications and instrumentation. One of the key features is their ability to support a wide input bandwidth, which allows for accurate conversions of high-frequency signals.

The 45 series, similar in architecture, excels in environments where power efficiency is paramount. These ADCs are designed to consume less power while maintaining high performance. They offer a flexible sampling rate, providing options for both lower and higher intensity applications. This versatility is essential for handheld and portable devices where battery life is crucial.

Moving on to the 47 family, these devices focus on achieving high dynamic range and low distortion. Their architecture includes sophisticated digital filter options, enhancing the capability of noise reduction and signal integrity. With an impressive signal-to-noise ratio, the 47 series finds its usage in systems where performance cannot be compromised, such as high-end audio and video applications.

The 27 series ADCs provide an excellent combination of high performance and low latency, making them suitable for real-time analysis in various scenarios. They are equipped with advanced data acquisition features and can communicate seamlessly with modern digital signal processors and microcontrollers.

Finally, the ADS5525 is a standout in the lineup, offering a 12-bit resolution at a maximum sampling rate of 125 MSPS. This device is designed for a range of applications, including medical imaging and ultrasound systems. It boasts features such as an integrated digital filter and multiple power-saving modes, making it versatile and efficient in terms of energy consumption.

In summary, Texas Instruments' ADC lineup, including the 46, 45, 47, 27, and ADS5525, offers numerous features and technologies, catering to a wide range of applications through their respective specifications of speed, power efficiency, dynamic range, and ease of integration. These devices illustrate Texas Instruments' commitment to providing innovative solutions in the analog and mixed-signal domain.